WO2021038359A1 - 液圧制御ユニット、ブレーキシステム及び鞍乗型車両 - Google Patents
液圧制御ユニット、ブレーキシステム及び鞍乗型車両 Download PDFInfo
- Publication number
- WO2021038359A1 WO2021038359A1 PCT/IB2020/057683 IB2020057683W WO2021038359A1 WO 2021038359 A1 WO2021038359 A1 WO 2021038359A1 IB 2020057683 W IB2020057683 W IB 2020057683W WO 2021038359 A1 WO2021038359 A1 WO 2021038359A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- control unit
- hydraulic pressure
- pressure control
- main body
- lid
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T8/00—Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force
- B60T8/17—Using electrical or electronic regulation means to control braking
- B60T8/1701—Braking or traction control means specially adapted for particular types of vehicles
- B60T8/1706—Braking or traction control means specially adapted for particular types of vehicles for single-track vehicles, e.g. motorcycles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T13/00—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems
- B60T13/10—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with fluid assistance, drive, or release
- B60T13/12—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with fluid assistance, drive, or release the fluid being liquid
- B60T13/14—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with fluid assistance, drive, or release the fluid being liquid using accumulators or reservoirs fed by pumps
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T13/00—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems
- B60T13/10—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with fluid assistance, drive, or release
- B60T13/66—Electrical control in fluid-pressure brake systems
- B60T13/662—Electrical control in fluid-pressure brake systems characterised by specified functions of the control system components
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T13/00—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems
- B60T13/10—Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with fluid assistance, drive, or release
- B60T13/66—Electrical control in fluid-pressure brake systems
- B60T13/68—Electrical control in fluid-pressure brake systems by electrically-controlled valves
- B60T13/686—Electrical control in fluid-pressure brake systems by electrically-controlled valves in hydraulic systems or parts thereof
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T17/00—Component parts, details, or accessories of power brake systems not covered by groups B60T8/00, B60T13/00 or B60T15/00, or presenting other characteristic features
- B60T17/18—Safety devices; Monitoring
- B60T17/22—Devices for monitoring or checking brake systems; Signal devices
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T8/00—Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force
- B60T8/32—Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to a speed condition, e.g. acceleration or deceleration
- B60T8/321—Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to a speed condition, e.g. acceleration or deceleration deceleration
- B60T8/3225—Systems specially adapted for single-track vehicles, e.g. motorcycles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62L—BRAKES SPECIALLY ADAPTED FOR CYCLES
- B62L3/00—Brake-actuating mechanisms; Arrangements thereof
- B62L3/02—Brake-actuating mechanisms; Arrangements thereof for control by a hand lever
- B62L3/023—Brake-actuating mechanisms; Arrangements thereof for control by a hand lever acting on fluid pressure systems
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60T—VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
- B60T2270/00—Further aspects of brake control systems not otherwise provided for
- B60T2270/10—ABS control systems
Definitions
- the present invention relates to a hydraulic control unit of a brake system mounted on a saddle-mounted vehicle, a brake system including the hydraulic control unit, and a saddle-mounted type equipped with the brake system. Regarding the vehicle.
- a brake system that controls the braking force of the wheels by controlling the hydraulic pressure of the brake liquid.
- a braking system includes a hydraulic pressure control unit.
- the hydraulic pressure control unit consists of a substrate on which a brake liquid flow path is formed, a circuit board that controls the drive of the hydraulic pressure adjusting pulp that opens and closes the brake liquid flow path, and a circuit board. It is equipped with a housing in which it is stored.
- the eight winging is provided with a main body connected to the substrate and a lid. An opening is formed in the main body in a region facing the circuit board in order to house the circuit board in the housing. Then, this opening of the main body is covered with a lid.
- a structure for fixing the lid to the main body is provided so as to project outward from the outer peripheral portion of the main body and the lid (patented). Reference 1).
- Patent Document 1 Japanese Unexamined Patent Publication No. 2 0 1 7 --0 0 7 4 6 1 [Overview of the Invention]
- a saddle-mounted vehicle which is a type of vehicle, has a lower degree of freedom in component layout and a lower degree of freedom in mounting a hydraulic pressure control unit than a vehicle such as a motorcycle. ..
- the hydraulic pressure control unit mounted on the saddle-mounted vehicle ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the present invention has been made against the background of the above-mentioned problems, and an object of the present invention is to obtain a hydraulic pressure control unit that can be miniaturized as compared with a conventional hydraulic pressure control unit. Another object of the present invention is to obtain a brake system provided with such a hydraulic pressure control unit. Another object of the present invention is to obtain a saddle-type vehicle equipped with such a brake system.
- the hydraulic pressure control unit is a hydraulic pressure control unit of a plex system mounted on a saddle-mounted vehicle, and a flow path for brake liquid is formed.
- a substrate, a circuit board for controlling the drive of the hydraulic pressure adjusting pulp for opening and closing the flow path, and eight ugings connected to the substrate and accommodating the circuit board are provided, and the eight ugings are provided on the substrate.
- the main body is provided with a lid fixing portion for fixing the lid
- the lid fixing portion includes an engaged portion held by one of the main body and the lid, and the main body. It is held by the other of the portion and the lid and has an engagement that engages with the engaged portion.
- the brake system according to the present invention includes the hydraulic pressure control unit according to the present invention.
- the saddle-mounted vehicle according to the present invention is provided with the brake system according to the present invention.
- the lid fixing portion for fixing the lid to the main body is surrounded by the main body and the lid. ⁇ 02 821/038359 ⁇ (: 17132020/057683
- the hydraulic pressure control unit according to the present invention is the conventional one. It can be made smaller than the hydraulic pressure control unit.
- FIG. 1 is a diagram showing a schematic configuration of a bicycle equipped with a brake system according to an embodiment of the present invention.
- FIG. 2 is a diagram showing a schematic configuration of a brake system according to an embodiment of the present invention.
- FIG. 3 is a side view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention.
- FIG. 4 is a view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention observed from above.
- FIG. 5 is a side view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention.
- FIG. 6 is a side view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention.
- FIG. 7 is a diagram for explaining a state before the coil unit and the main body of the housing are connected to the substrate in the hydraulic pressure control unit according to the embodiment of the present invention.
- FIG. 8 is a diagram for explaining a process of supporting a coil unit on a platform in the hydraulic pressure control unit according to the embodiment of the present invention.
- a bicycle for example, a two-wheeled vehicle, a three-wheeled vehicle, etc.
- the present invention may be adopted for a saddle-mounted vehicle other than a bicycle. Good.
- the other straddle-type vehicles other than bicycles if example embodiment, the engine and the electric motor - evening motorcycle according to at least one drive source of, motor tricycle, and Pa 'formic -, and the like.
- a bicycle is a general vehicle that can move on the road by the pedaling force applied to the pedals. ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- Means 4 bicycles (this includes ordinary bicycles, electrically power assisted bicycles, electric bicycles, etc. Also, motorcycles or tricycles mean so-called motorcycles, and motorcycles include talented bicycles and scooters. , Electric scooters, etc. are included.
- the configurations, operations, etc. described below are examples, and the hydraulic pressure control unit, brake stem, and saddle-mounted vehicle according to the present invention have such configurations, operations, etc. Not limited to certain cases.
- the hydraulic pressure control unit according to the present invention is a pumpless type is described, but even if the hydraulic pressure control unit according to the present invention is provided with a pump that assists the flow of the brake liquid. Good.
- the brake system according to the present invention executes anti-cook brake control only for the braking force generated on the front wheels is described, but the brake system according to the present invention is the rear wheels.
- the anti-cack brake control may be executed only for the braking force generated in the front wheels, and the anti-cuck brake control may be executed for both the braking force generated in the front wheels and the braking force generated in the rear wheels. There may be.
- FIG. 1 is a diagram showing a schematic configuration of a bicycle equipped with a brake system according to an embodiment of the present invention.
- Fig. 1 shows the case where the bicycle 200 is a two-wheeled vehicle, the bicycle 200 may be another bicycle such as a tricycle.
- the bicycle 2 0 0 has a frame 2 10 0, a swivel part 2 3 0, a saddle 2 1 8 and a pedal 2 1 9 and a rear wheel. It is equipped with 2 2 0 and a rear wheel braking unit 260. ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the frame 2 1 0 is, for example, a head tube 2 1 1 that pivotally supports the steering column 2 3 1 of the turning saddle 6 2 3 0, and a top tube 2 that is connected to the head tube 2 1 1. 1 2 and down tube 2 1 3 and seat tube 2 1 4 and seat tube 2 which are connected to top tube 2 1 2 and down tube 2 1 3 and hold saddle 2 1 8
- the turning section 2 3 0 has a steering column 2 3 1 and a steering column 2 3 2 held by the steering column 2 3 1 and an eight held by the eight dollar stem 2 3 2.
- the braking operation ⁇ 6 2 4 0 attached to the Andrper 2 3 3 and the 8th Dolper 2 3 3 and the front fork 2 1 6 connected to the steering column 2 3 1 and the front fork 2 1 6
- the front wheels 2 1 7 which are held rotatably and the front wheel braking part 250 are included.
- Front forks 2 1 6 are provided on both sides of the front wheels 2 1 7. One end of the front fork 2 1 6 is connected to the steering column 2 3 1 and the other end is connected to the center of rotation of the front wheel 2 1 7.
- the braking operation unit 240 includes a mechanism used as an operation unit of the front wheel braking unit 250 and a mechanism used as an operation unit of the rear wheel braking unit 2600.
- the mechanism used as the operation part of the front wheel braking part 250 is arranged on the right end side of the handlebar 2 3 3
- the mechanism used as the operation part of the rear wheel braking part 2 6 0 is the 8nd wheel 2 It is arranged on the left end side of 3 3.
- the hydraulic pressure control unit 1 is connected to the front fork 2 1 6 of the swivel part 2 30.
- the hydraulic pressure control unit 1 is a unit responsible for controlling the hydraulic pressure of the brake liquid of the front wheel braking unit 250.
- the rear wheel braking part 260 may be a type of braking part that generates a wire by increasing the hydraulic pressure of the break liquid, or a type that mechanically generates a braking force. It may be a braking part (for example, a braking force 6 or the like of an evening brake that generates a braking force by generating tension in a wire).
- a power supply unit 2 70 which is a power source for the hydraulic pressure control unit 1, is attached to the down tube 2 1 3 of the frame 2 10 0.
- the power supply unit 270 may be a battery or a generator.
- Generators include, for example, those that generate electricity when the bicycle runs 200 (for example, drive a hub dynamo that generates electricity by the rotation of the front wheels 2 1 7 or the rear wheels 2 2 0, the front wheels 2 1 7 or the rear wheels 2 20 0.
- Source electric motors that generate regenerated electricity, etc.), solar power generators, etc. are included.
- the bicycle 2 0 0 includes at least the braking operation unit 240, the front wheel braking unit 250, the hydraulic pressure control unit 1, and the power supply unit 2 70.
- the brake system 100 is installed.
- the brake system 1 0 ⁇ can execute anti-cook brake control by controlling the hydraulic pressure of the brake liquid of the front wheel braking force 5 2 5 0 by the hydraulic pressure control unit 1.
- FIG. 2 is a diagram showing a schematic configuration of a brake system according to an embodiment of the present invention.
- the hydraulic pressure control unit 1 includes a substrate 10.
- the base 10 is formed with a master cylinder port 1 1, a wheel cylinder port 1 2, and a flow path 1 3 that communicates the master cylinder port 1 1 and the wheel cylinder port 1 2.
- Flow path 1 3 is a flow path for the brake liquid.
- the flow path 1 3 includes a first flow path 14 and a second flow path 15 and a third flow path 16 and a fourth flow path 17 7.
- the master cylinder port 1 1 and the wheel cylinder port 1 2 communicate with each other via the first flow path 1 4 and the second flow path 15 5.
- the end on the inlet side of the third flow path 16 is connected to the middle part of the second flow path 15.
- the braking operation unit 2 4 0 is connected to the master cylinder port 1 1 via the liquid pipe 1 0 1.
- the master cylinder 2 4 2 includes the brake reporter 2 4 1 and the master cylinder 2 4 2 and the reserver 2 4 3.
- the master cylinder 2 4 2 is equipped with a user's operation of the brake fluid 2 4 1 (a piston part that moves in conjunction with this (not shown), via the liquid pipe 110 1 and the master cylinder port 1 1). It is connected to the inlet side of the first flow path 1 4.
- the movement of the piston cylinder 6 (thus, the hydraulic fluid pressure of the brake fluid in the first flow path 14 increases or decreases. Also, the reservoir.
- the brake fluid of the master cylinder 2 4 2 is stored in the valve 2 4 3.
- the front wheel braking part 250 is connected to the wheel cylinder pole 1 2 via a liquid pipe 1 0 2.
- the front wheel braking part 2 5 0 includes the wheel cylinder 2 5 1 and ⁇ -evening 2 5 2.
- the wheel cylinder 2 5 1 is attached to the lower end of the front fork 2 1 6.
- the wheel cylinder 2 5 1 is provided with a piston part (not shown) that moves in conjunction with the hydraulic pressure of the liquid pipe 102, via the liquid pipe 1 0 2 and the wheel cylinder ball 1 2. , It is connected to the outlet side of the second flow path 15 5.
- ⁇ -Evening 2 5 2 is held by the front wheels 2 1 7 and rotates with the front wheels 2 1 7. Due to the movement of the piston part, the brake pad (not shown) is pressed against ⁇ -evening 2 5 2, and the front wheels 2 1 7 are braked.
- the hydraulic pressure control unit 1 is provided with a hydraulic pressure adjusting valve 20 that opens and closes the flow path 13 3.
- the hydraulic control unit 1 includes, as the fluid pressure adjusting pulp 2 0, and includes the inlet path 'pulp 2 1, and the outlet valve 2 2.
- Inlet Pas' pulp 2 1, and the outlet side of the first flow path 1 4 is provided between the inlet side of the second flow path 1 5, a first flow path 1 4 and the second flow path 1 5 Open and close the flow of brake liquid between.
- the outlet valve 2 2 is provided between the outlet side of the third flow path 1 6 and the inlet side of the fourth flow path 1 7, and is between the third flow path 1 6 and the fourth flow path 1 7. Open and close the circulation of the valve liquid.
- the hydraulic pressure of the brake liquid is controlled by the opening and closing operations of the inlet pulp 2 1 and the outlet pulp 2 2.
- the hydraulic pressure control unit 1 includes a coil 6 1 for driving the inlet pulp 2 1 and a coil 6 3 for driving the outlet pulp 2 2.
- the inlet path 'Lube 2 1 opens the flow of the brake fluid in both directions. Then, when the coil 6 1 is energized, the inlet pulp 2 1 is closed. ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the outlet pulp 2 2 stops and blocks the flow of brake liquid. That is, in this embodiment, the inlet path 'Lube 2 1, in the non-energized time of opening of the solenoid valve. Also, for example, when the coil 6 3 is not energized, the outlet pulp 2 2 blocks the flow of the brake fluid. Then, when the coil 6 3 is energized, the outlet pulp 2 2 is in an open state to release the flow of the brake fluid in both directions. That is, in the present embodiment, the outlet pulp 22 is a solenoid valve that is closed when no power is applied.
- the hydraulic pressure control unit 1 includes an accumulator 2 3.
- the accumulator 2 3 is connected to the outlet side of each of the 4th flow bars 1 7 and stores the brake liquid that has passed through the outlet pulp 2 2.
- the hydraulic pressure control unit 1 is provided with a hydraulic pressure sensor 1 0 3 for detecting the hydraulic pressure of the brake liquid of the wheel cylinder 2 5 1.
- the hydraulic pressure sensor 103 is provided in the second flow path 15 or the third flow path 1 6.
- the hydraulic pressure control unit 1 includes a control unit 30. Signals from various sensors such as a hydraulic pressure sensor 103 and a wheel speed sensor (not shown) for detecting the rotational speed of the front wheels 2 17 are input to the control unit 30. In addition, each part of the ⁇ ⁇ part 30 may be arranged together or dispersedly.
- the control unit 30 may be configured to include, for example, a microcomputer, a microphone ⁇ processor unit, etc., or may be configured to include an updatable one such as firmware, etc. It may be configured to include a program firmware or the like executed by the command of.
- the ⁇ ⁇ 6 3 0 controls the energization of the coil 6 1 and the coil 6 3.
- the control wheel 5 30 controls the drive (opening / closing operation) of the inlet pulp 21 by controlling the energization of the coil 61.
- the control unit 30 controls the drive (opening / closing operation) of the outlet pulp 2 2 by controlling the energization of the coil 63. That is, the control unit 30 controls the opening / closing operation of the inlet pulp 2 1 and the outlet pulp 2 2 to control the hydraulic pressure of the brake fluid of the wheel cylinder 2 5 1, that is, the braking force of the front wheels 2 1 7. To do.
- At least the configuration for controlling the energization of the coil 61 and the coil 63 is configured by the circuit board 31 described later. That is, the circuit board 3 1 controls the drive of the inlet pulp 2 1 and the outlet pulp 2 2 by controlling the energization of the coil 6 1 and the coil 6 3.
- the control unit 30 receives a signal from the wheel speed sensor (not shown) when the front wheels 2 1 7 are being braked by the operation of the brake killer 2 4 1 by the user. When it is determined that the front wheels 2 1 7 are locked or there is a possibility of locking, anti-cook brake control is started.
- the control unit 3 0 When the anti-cook brake control is started, the control unit 3 0 energizes the coil 6 1 and closes the inlet pulp 2 1 and from the master cylinder 2 4 2 to the wheel cylinder 2 5 By blocking the flow of the brake liquid to 1, the pressure increase of the brake liquid in the wheel cylinder 2 5 1 is suppressed.
- the control unit 30 energizes the coil 6 3 to open the outlet pulp 2 2 and allows the brake fluid to flow from the wheel cylinder 2 5 1 to the accumulator 2 3 to enable the wheel cylinder. 2 5 1 Depressurize the brake fluid. As a result, the front wheels 2 1 7 are unlocked or avoided.
- the control unit 3 from the fluid pressure sensor 1 0 third signal, Hui - when Rushirinda 2 5 1 Pureki liquid is semi-sectional to have been reduced to a predetermined value, the outlet path 'pulp by the coil 6 3 deenergized 2 2 is closed, the coil 6 1 is de-energized for a short time, and the inlet pulp 2 1 is opened to increase the pressure of the brake fluid of the wheel cylinder 2 5 1.
- the control unit 30 may increase or decrease the depressurization of the brake liquid of the wheel cylinder 2 5 1 only once, or may repeat it a plurality of times.
- the hydraulic pressure control unit 1 includes a base 10 and a housing 40 connected to the base 10. In the following, the configuration of the hydraulic pressure control unit 1 will be described while observing the hydraulic pressure control unit 1 in the state where the housing 40 is arranged above the substrate 10.
- FIG. 3 is a side view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention.
- Fig. 3 is a diagram of the hydraulic pressure control unit 1 observed in the eight directions of the arrow in Fig. 4, and the hydraulic pressure control unit 1 is removed by deleting the part on the front side in the eight directions of the arrow in Eight Uzing 40. It is a figure which observed.
- Fig. 3 is a side view of the inside of the hydraulic pressure control unit 1 with the eight Uzing 40 placed above the base 10.
- FIG. 4 shows a pair of connection portions 80. Of these, Fig. 3 omits the illustration of the connection portion 80 shown on the right side of the page in Fig. 4.
- FIG. 3 shows a cross section of one of a plurality of lid fixing rods 650 and a part of the circuit board 31.
- FIG. 4 is a view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention observed from above.
- FIG. 4 is a view of the hydraulic pressure control unit 1 with the lid 48 of the eight-using 40 and the circuit board 3 1 removed, observed from above.
- FIG. 5 is a side view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention.
- Fig. 5 is a diagram of the hydraulic pressure control unit 1 observed in the direction of the arrow in Fig. 4, and the hydraulic pressure control unit 1 is removed by deleting the part on the front side in the direction of the arrow in 8 Uzing 40. It is a figure which observed. That is, Fig. 5 is a side view of the inside of the hydraulic pressure control unit 1 with the housing 40 placed above the base 10.
- the lid fixing part located in front of the coil unit 60 in the direction of the arrow in Fig. 4 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- connection part 80 The illustration of 50 and the connection part 80 is omitted.
- FIG. 6 is a side view of the inside of the hydraulic pressure control unit according to the embodiment of the present invention.
- Fig. 6 is a diagram in which the connection portion 80 of the hydraulic pressure control unit 1 is observed in the direction of the arrow in Fig. 4. That is, FIG. 6 is a side view of the inside of the hydraulic pressure control unit 1 with the housing 40 arranged above the substrate 10.
- the hydraulic pressure control unit 1 includes a substrate 10 and a housing 40, a coil unit 60, and a circuit board 31.
- the base 10 is, for example, a substantially rectangular parallelepiped member made of an aluminum alloy as a material.
- a housing 40 is connected to the top surface 18 of the substrate 10.
- the eight winging 40 is connected to the upper surface 18 of the substrate 10 by adhesion.
- the airtightness between the substrate 10 and the housing 40 can be improved by connecting the substrate 10 and the eight aging 40 by adhesion.
- Each surface of the substrate 10 may be flat, may include a curved portion, or may include a step.
- Eight Uzing 40 has a box shape, for example, a substantially rectangular parallelepiped.
- the eight ugly 40 is formed by the meaning of the moon. That is, the housing 40 is an oil-forming product.
- the coil unit 60 and the circuit board 3 1 are housed inside the 8 aging 40.
- the housing 40 according to the present embodiment includes a main body 41 and a lid 48.
- the lower surface 4 2 of the main body 5 4 1 is connected to the upper surface 1 8 of the base 10 (this is connected by adhesion.
- the main body 4 1 has an opening in the area facing the circuit board 3 1 Part 4 3 3 is formed. In the present embodiment, the opening 4 3 3 is formed on the upper surface portion 4 3 of the main body 4 1.
- the lid 4 8 is the opening of the main body 4 1. It is a member that covers the part 4 3 3. In the present embodiment, the lid 4 8 is connected to the main body 4 1 by adhesion. Specifically, the lower surface of the lid 4 8 is the main body 4 1. Opening on top surface 4 3 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the coil unit 60 is provided with a coil for driving the night pressure adjusting pulp 20. That is, the coil unit 60 includes a coil 6 1 and a coil 6 3. In addition, the coil unit 60 is provided with a coil eight aging 6 5 that holds the coil 6 1 and the coil 6 3. In the present embodiment, the coil housing 6 5 has an upper surface portion 6 6 arranged above the coil 6 1 and the coil 6 3 and a lower surface portion 6 7 arranged below the coil 6 1 and the coil 6 3. It is provided with a side surface portion 6 8 for connecting the upper surface portion 6 6 and the lower surface portion 6 7.
- a notch 660 is formed at the corner portion near the loading platform 90 described later. Then, the side surface portion 6 8 of the coil eight winging 6 5 connects the portion where the notch 6 6 ⁇ is not opened in the upper surface portion 6 6 and the lower surface portion 1 ⁇ 6 7.
- This coil unit 60 is connected to the upper surface 18 of the substrate 10.
- the coil unit 60 is connected to the upper surface 18 of the substrate 10 by adhesion.
- An opening 4 2 3 is formed on the lower surface 4 2 of 4 1 at a position facing the coil unit 60. Further, the coil unit 60 passes through the opening 4 2 3 of the lower surface of the main body 4 1. Then, the lower surface portion 6 7 of the coil housing 6 5 is connected to the upper surface 18 of the substrate 10 by adhesion.
- Each board 3 1 is roostered above the coil unit 60.
- Each board 3 1 is electrically connected to the connection terminal 6 2 of the coil 6 1 and the connection terminal 6 4 of the coil 6 3.
- the circuit board 3 1 is configured to be able to control the energization of the coil 6 1 and the coil 6 3.
- the hydraulic pressure control wholesale unit 1 As shown in FIGS. 3 to 5, the hydraulic pressure control wholesale unit 1 according to the present embodiment is provided with at least one arm 70 made of a month to be planted. .. In this embodiment, an example including two arms 70 is shown. These arms
- One end of 7 0 is the first surface of the housing 40, which is one of the surface of the main body of the housing 40.
- the hydraulic pressure control unit 1 according to the present embodiment can fix the coil unit 60 to the substrate 10 by adhesion without using bolts as fastening members (that is, boltless).
- the hydraulic pressure control unit 1 according to the embodiment since the coil unit 60 can be fixed to the base 10 without bolts, it is not necessary to secure a space for placing the bolts in the coil unit 60, and the coil unit 60 can be miniaturized, and the hydraulic pressure control unit 1 can be miniaturized.
- the rock of arm 70 is housed in housing 40. Therefore, the reaction force of the arm 70 also acts as a force for separating the housing 40 and the base 10 at the connection point between the housing 40 and the base 10. Therefore, when the arm 70 is adopted, there may be a concern that the adhesive point between the 8 Uzing 40 and the base 10 will peel off and the airtightness between the 8 Uzing 40 and the base 10 will decrease. Absent. However, the arm 70 according to the form of this implementation is formed to the effect of a tree month. Therefore, due to the creep phenomenon, the carp by the arm 70 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the pressing force of the unit 60 decreases with the passage of time.
- the progress of the creep phenomenon is also affected by the ambient temperature, so if the temperature inside the housing 40 rises due to the heat generated by the circuit board 31, coil 61, and coil 63 3, the creep phenomenon is promoted.
- the pressing force of the coil unit 60 by the arm 70 tends to decrease. Therefore, in the hydraulic pressure control unit 1 according to the present embodiment, after a certain period of time has elapsed, the pressing force of the coil unit 60 by the arm 70 is 8 ugly 40 and the base 10 The size is reduced so that peeling does not occur at the bonding points between the two. Therefore, in the hydraulic pressure control unit 1 according to the present embodiment, it is possible to prevent the adhesive portion between the housing 40 and the base 10 from peeling off, and the airtightness between the housing 40 and the base 10 is lowered. It can also be suppressed.
- the holding location of the arm 70 in the housing 40 is not limited to the first side surface portion 4 4 3 and the second side surface portion 4 4 of the main body 4 1.
- the 3rd side surface 4 4 ⁇ and the 4th side surface 4 4 ⁇ 1 which are the side surfaces connecting the 1st side surface 4 4 3 and the 2nd side surface 4 4
- One end of the 70 may be held.
- one end of the arm 70 may be held by the lower surface portion 4 2 of the main body portion 4 1.
- the arm 70 is arranged between the coil unit 60 and each substrate 3 1. Then, the upper surface 7 2 of the arm 70 is ⁇ around 5 times with respect to the lower surface 3 2 of each substrate 3 1. In other words, in the observation direction perpendicular to the alignment direction of the coil unit 60, the arm 70, and the circuit board 3 1, the surface of the arm 70 facing the circuit board 3 1 is the circuit board 3 1. It is sloppy with respect to the surface facing the arm 70. By making the arm 70 into such a shape 1 dog, the arm 70 and the circuit board are compared with the case where the upper surface 7 2 of the arm 70 and the lower surface 3 2 of each board 3 1 are parallel to each other.
- the upper surface 7 2 of the arm 70 is an inclined surface having a linear side view, but it may be an inclined surface having a curved side view, and an inclined surface having a stepped side view. It may be. If the upper surface 7 2 of the arm 70 is tilted with respect to the lower surface 3 2 of the circuit board 3 1, the area for mounting electronic components and the like on the circuit board 3 1 can be expanded.
- Fig. 5 (as shown in this figure, the axis 7 4 of the arm 70 is the lower surface 3 2 of each substrate 3 1 at times 5
- the shaft 7 4 of the arm 70 is the upper surface 6 6 3 of the upper surface 6 6 of the coil eight winging 6 5 (in other words, the coil unit 60, the arm 7 In the observation direction perpendicular to the alignment direction of 0 and the circuit board 3 1, the axis 7 4 of the arm 70 is the surface facing the coil unit 6 0 on each board 3 1 and the coil unit 60 0. It is tilted with respect to the surface facing the circuit board 3 1 in the arm 70.
- the axis 7 4 of the arm 70 is at the same distance from the upper surface 7 2 and the lower surface 7 3 of the arm 70. It is a virtual line that runs from one end to the other.
- the lower surface 7 3 of the arm 70 can be moved with respect to the upper surface 6 6 3 of the upper surface 6 6 of the coil housing 6 5.
- A-The lower surface 7 3 of the arm 70 0 is attached to the upper surface 6 6 3 of the coil housing 6 5 ⁇ by rolling, the lower surface 7 3 of the arm 70 0 and the upper surface 6 of the coil eight aging 6 5 Compared to the case where the upper surface 6 6 3 of 6 is parallel, the space between the arm 70 and the coil unit 60 is larger, and the storage area for the stored items can be expanded within the housing 40. ..
- the arm 70 and the main body 41 of the housing 40 are integrally formed to the effect of a tree month. Therefore, the hydraulic pressure control unit 1 according to the embodiment can eliminate the step of assembling the arm 70 to the main body 41, and the assembly man-hours can be reduced.
- FIG. 4 (as shown (this, the two arms 70 are the coils at the center 6 9 of the coil unit 60 (at a point-symmetrical position with respect to the coil)). It is angential to the unit 60.
- the plurality of arms 70 in the observation direction parallel to the arrangement direction of the coil unit 60 and the arms 70. At least two are point-symmetrical to the center 6 9 of the coil unit 60 and are tangential to the coil unit 60. Therefore, the load from the arm 70 to the coil unit 60 is applied.
- the spatial variation of the base 10 is reduced, and the certainty of adhesion between the substrate 10 and the coil unit 60 is improved.
- the hydraulic pressure control unit 1 has a lid fixing portion 5 0 for fixing the lid 4 8 to the main body 4 1 of the housing 40. It has at least one.
- an example including two lid fixing portions 50 is shown.
- the lid fixing portion 50 is provided inside the space surrounded by the main body portion 41 and the lid 48.
- the lid fixing portion 50 includes an engaged portion 5 1 and an engaging portion 5 5 that is engaged with the engaged portion 51.
- the engaged portion 5 1 is held by one of the main body portion 4 1 and the lid 48 8.
- the engaging portion 5 5 is held by the other of the main body portion 4 1 and the lid 48 8.
- the engaged portion 5 1 is held by the main body portion 41 and the engaged portion 5 5 is held by the lid 48 8.
- the one with the higher rigidity is designated as the engaged portion 51, and the one with the lower rigidity is engaged.
- the joint part is 5 5.
- the structure for fixing the lid to the main body is provided so as to protrude from the outer periphery of the main body and the lid or 5 to the outside, so it is difficult to reduce the size.
- the lid fixing portion 50 is provided inside the space surrounded by the main body portion 41 and the lid 48. Therefore, the lid fixing portion 50 does not protrude outward from the outer peripheral portions of the main body portion 41 and the lid 48. Therefore, by fixing the lid 48 to the main body 41 using the lid fixing portion 50, the hydraulic pressure control unit 1 can be made smaller than the conventional hydraulic pressure control unit.
- the lid fixing portion 50 cannot be seen from the outside of the hydraulic pressure control unit 1, so that the design of the hydraulic pressure control unit 1 can be improved. Further, the hydraulic pressure control uni according to the present embodiment. ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the lid 4 8 can be fixed to the main body 4 1 without bolts, the assembly man-hours can be reduced compared to the case where the lid 4 8 is fixed to the main body 4 1 with bolts.
- the engaged portion 5 1 and the engaging portion 5 5 of the lid fixing portion 50 As a specific structure of the engaged portion 5 1 and the engaging portion 5 5 of the lid fixing portion 50, various structures adopted in the conventional snap fitting structure can be adopted. However, in the present embodiment, the engaged portion 51 and the engaged portion 5 5 have the following structure.
- the engaged portion 51 has a cylindrical shape such as a substantially cylindrical shape.
- the engaging portion 5 5 has a columnar shape such as a substantially cylindrical shape.
- the engaging portion 5 5 extends inward of the engaged portion 5 1 and engages with the engaged portion 5 1 from the inside. Specifically, on the inner peripheral side of the engaged portion 51, a convex portion 5 2 protruding inward is provided. On the other hand, for example, the tip portion of the engaging portion 5 5 is provided with a convex portion 5 6 protruding outward from the engaging portion 5 5.
- the engaging portion 5 5 is engaged with the engaged portion 5 1 from the inside by engaging the convex portion 5 6 with the convex portion 5 2 of the engaged portion 5 1.
- a hole 3 3 is formed in the circuit board 3 1, and the lid fixing portion 50 penetrates the hole 3 3 in the circuit board 3 1. If the lid fixing part 5 0 does not penetrate the hole 3 3 of the circuit board 3 1, the lid fixing part 50 will be placed on the outer peripheral side of the circuit board 3 1. Therefore, by penetrating the hole 3 3 of the circuit board 3 1 through the lid fixing portion 50, the hydraulic pressure control unit 1 can be operated as compared with the case where the lid fixing portion 50 is arranged on the outer peripheral side of the circuit board 3 1. It can be miniaturized.
- the hole 3 3 of the circuit board 3 1 is a position reference hole of the circuit board 3 1.
- the position reference hole is a hole that serves as a reference position when mounting electronic components on the circuit board 31 and is a hole that is always formed on the circuit board 31.
- the 18-way board 3 1 can be miniaturized, and the hydraulic pressure control unit 1 can be miniaturized.
- the engaging portion 5 5 of the lid fixing portion 50 penetrates through the hole 3 3 of the circuit board 3 1.
- the engaging portion 5 5 can be formed thinner than the engaged portion 5 1. For this reason, by configuring the engaging portion 5 5 to penetrate the hole 3 3 of the circuit board 3 1, the engaged portion 6 5 1 penetrates the hole 3 3 of the circuit board 3 1 as compared with the configuration of the hole. Since 3 3 can be formed small, the circuit board 3 1 can be miniaturized, and the hydraulic pressure control unit 1 can be miniaturized.
- the engaged portion 5 1 and the engaged portion 5 5 are elastically deformed.
- the engaged portion 5 1 (this is formed with a slit 5 3 extending from the tip to the base side held by the main body portion 41.
- the engaged portion 5 1 is formed. It is divided into two columnar slits.
- the engaged portion 5 1 may be divided into three or more pillar-shaped portions.
- the engagement ⁇ ⁇ 5 5 is formed with a slit 5 7 extending from the tip to the base side held by the lid 48 8 so that the engagement ⁇ ⁇ 5 5 has two columnar ⁇ ⁇ .
- the hydraulic pressure control unit 1 can be easily assembled. If the engaged portion 5 1 or the engaged portion 5 5 is elastically deformed, the engaged portion 5 1 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the engaging portion 5 5 can be engaged with the engaged portion 5 1 while absorbing the assembly error, and the hydraulic pressure control unit 1 can be easily assembled.
- the configuration in which both the engaged portion 5 1 and the engaging portion 5 5 are elastically deformed is larger than the case in which the engaged portion 5 1 or the engaging portion 5 5 is elastically deformed. The assembly error can be absorbed, and the hydraulic pressure control unit 1 can be assembled more easily.
- the engaged portion 5 1 of the lid fixing portion 50 and the main body portion 41 of the housing 40 are integrally formed of resin. Therefore, the hydraulic pressure control unit 1 according to the present embodiment can eliminate the step of assembling the engaged portion 51 to the main body portion 41, and can reduce the assembly man-hours. In the case where the engaged portion 5 1 is held by the lid 4 8, the hydraulic pressure control unit 1 can be formed by making the engaged portion 5 1 and the lid 4 8 integrally formed of resin. The assembly man-hours can be reduced. Further, in the present embodiment, the engaging portion 5 5 of the lid fixing portion 50 and the lid 48 of the housing 40 are integrally formed of resin.
- the hydraulic pressure control unit 1 can eliminate the step of assembling the engaging portion 5 5 to the lid 48, and can reduce the number of assembly steps.
- the hydraulic pressure control unit 1 is formed by forming the engaging portion 5 5 and the main body 4 1 as an integrally formed product. The assembly man-hours can be reduced.
- the hydraulic pressure control unit 1 includes a plurality of lid fixing portions 50. Therefore, in the present implementation form, the lid 48 is fixed to the main body 41 at two or more places. Therefore, when the lid 4 8 is fixed to the main body 4 1 by the lid fixing portion 50, the position of the lid 4 8 can be positioned with respect to the main body 4 1. Therefore, by providing a plurality of lid fixing portions 50, the hydraulic pressure control unit 1 can be easily assembled.
- the hydraulic pressure control unit 1 is provided with a plurality of lid fixing portions 50, and cannot be fixed to the main body 3 4 1 if the lid 4 8 is in the wrong direction. ing.
- the hydraulic pressure control unit 1 it is possible to prevent the lid 48 from being erroneously attached, and the hydraulic pressure control unit 1 can be easily assembled.
- housing 4 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the virtual axis parallel to the penetrating direction of the opening 4 3 3 of the main body 4 1 of 0 is defined as the virtual axis 5 8.
- the virtual axis 5 8 is defined in this way, when the lid 4 8 is rotated 180 ° from the regular mounting position with the virtual axis 5 8 as the center of rotation, at least one of the multiple lid fixing portions 50
- One engaging portion 6 5 5 is configured so as not to engage with any of the engaged portions 5 1 of the plurality of lid fixing portions 50.
- Such a configuration can be realized, for example, by arranging at least two of the plurality of lid fixing portions 50 at positions that are not point-symmetrical about the virtual axis 58. Further, for example, such a configuration can be realized by making the sizes of the engaged ⁇ ⁇ 5 1 and the engaging portion 5 5 different in at least two of the plurality of lid fixing ⁇ 650.
- the hydraulic pressure control unit 1 includes at least one connecting portion 80 that connects the base 10 and the housing 40.
- the eight aging 40 includes a main body 41 and a lid 48. Therefore, in the present embodiment, the connecting portion 80 connects the substrate 10 and the main body portion 41 of the eight aging 40.
- the connection portion 80 includes a recess 81 formed in the substrate 10.
- the main body 4 1 of the eight aging 40 is connected to the upper surface 18 of the substrate 10.
- the recess 8 1 is formed so as to be recessed downward from the upper surface 18 of the substrate 10.
- the connection portion 80 is held by the main body portion 4 1 of the eight aging 40, and the lower end portion 8 3 is provided with a pin 8 2 press-fitted into the recess 8 1. That is, the lower end 8 3 of the pin 8 2 held by the main body 4 1 of the eight aging 40 is press-fitted into the recess 8 1 of the base 10 to press the base 10 and the main body 4 of the eight aging 40 It is configured to be connected to 1.
- connection sugar formation between a substrate and a housing in a conventional hydraulic pressure control unit a connection using a bolt, which is a fastening member, is known.
- the bolt includes a male screw forming portion on which a male screw is formed and a head to which a tool is connected. Then, when the width in the axial direction and the incense direction of the bolt is taken as the width, the width of the head 1 ⁇ is larger than the width of the male screw forming portion. For this reason, it is difficult to miniaturize the conventional hydraulic pressure control unit because it is necessary to secure a large head arrangement space for bolts connecting the housing and the base.
- the present embodiment ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the hydraulic pressure control unit 1 according to 21 is the main body 4 of the base 10 and the housing 40 without using bolts (without bolts).
- the present embodiment (the hydraulic pressure control unit 1 involved can be miniaturized as compared with the conventional hydraulic pressure control unit.
- the substrate 10 and the main body 41 of the housing 40 are adhered to each other. Therefore, in the hydraulic pressure control unit 1 according to the present embodiment, when a force that separates the main body 4 1 of the eight aging 40 from the substrate 10 acts, the force is transferred to the connecting portion 80. It can also be received by the adhesive force of the adhesive that adheres the base 10 and the main body 4 1 of the eight aging 40. For this reason, when the base 10 and the main body 4 1 of the housing 40 are bonded, the connection part is compared with the configuration in which the base 10 and the main body 4 1 of the housing 40 are not bonded.
- the pin 8 2 of 80 can be made thinner, and the hydraulic pressure control unit 1 can be made smaller.
- the hydraulic pressure control unit 1 includes a plurality of connection portions 80. Therefore, in the present embodiment, the main body 4 1 of the 8 Uzing 40 is fixed to the substrate 10 at two or more points. Therefore, when the main body 4 1 of the eight-using 40 is connected to the base 10 by the connecting portion 80, the position of the main body 4 1 of the housing 40 can be positioned with respect to the base 10. Therefore, by providing a plurality of connection portions 80, the hydraulic pressure control unit 1 can be easily assembled.
- the material of the pin 8 2 is not particularly limited, and the pin 8 2 may be formed of a tree month or the pin 8 2 may be formed of a metal.
- the pin 8 2 made by Kizuki the man-hours for assembling the hydraulic pressure control unit 1 can be reduced by making it an integrally formed product with the housing 40.
- the metal pin 8 2 does not cause the creep phenomenon, so if the pin 8 2 is made of metal, the force to connect the main body 4 1 of the housing 40 and the base 10 at the connection 80 is strong. It can be suppressed from decreasing with the passage of time.
- Hydraulic pressure control unit ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the pin 8 2 does not come off from the main body 4 1 after the assembly of the 22 ⁇ 1 is completed.
- the pin 8 2 may be configured so that the pin 8 2 can be pulled into the main body 4 1. Between the step of the main body 5 4 1 and the base 10 (If this pin 8 2 is sandwiched, the pin 8 2 will come off from the main body 4 1 after the assembly of the hydraulic pressure control unit 1 is completed.
- the pin 8 2 is fixed to the main body of the housing 40 by molding.
- the pin 8 2 is made of Kizuki. It is fixed by molding in the holding ⁇ 5 4 1 of the main body ⁇ 5 4 1. That is, the holding part 4 5 is the part where the pin 8 2 is molded.
- the pin 8 2 is molded by molding the housing 40 0.
- the pin 8 2 can be held by the main body 4 1 when the main body 6 4 1 is formed. Therefore, the pin 8 2 is molded into the main body of the 8 aging 4 0.
- the man-hours for assembling the hydraulic pressure control unit 1 can be reduced.
- the pin 8 2 has at least a protruding portion 8 5 in the portion molded in the main body 6 4 1 of the eight aging 40 on the pin 8 2.
- the protrusion 8 5 protrudes in a direction that is not parallel to the direction in which the pin 8 2 is press-fitted into the recess 81 1.
- the pin 8 2 is pushed downward and press-fitted into the recess 81 1. Therefore, in the present embodiment, the protruding portion 85 protrudes in the lateral direction.
- the end portion of the pin 8 2 opposite to the end portion on the side pressed into the recess 8 1 of the pin 8 2 is the upper end of the pin 8 2 5 8 4 Protrudes from the holding sword 6 4 5 which is the part that molds the pin 8 2 in the main body 4 1 of the housing 40.
- the pin 8 2 can be pressed directly into the recess 8 1 and the hydraulic pressure control unit 1 can be easily assembled.
- the pin 8 2 has a plate shape.
- the pin 8 2 can be elastically deformed, so that the pin 8 2 can be press-fitted into the recess 8 1 while absorbing the assembly error of each component of the hydraulic pressure control unit 1. Therefore, by making the pin 8 2 into a plate shape, the hydraulic pressure control unit 1 can be assembled. ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the hydraulic pressure control unit 1 includes at least one loading platform 90 held in the housing 40.
- the housing 40 includes the main body ⁇ 4 1 and the lid 48 8.
- the loading platform 90 is held by the main body of the eight-using 40.
- At least a part of the platform 90 is arranged below a part of the coil housing 65 of the coil unit 60.
- the platform 90 holds a part of the coil eight winging 65 of the coil unit 60 in the state before the coil unit 60 and the main body 4 1 of the housing 40 are connected to the base 10. It is something to do. Therefore, if the platform 90 can support the coil unit 60, even if at least one part of the platform 90 is located below the upper surface of the coil eight winging 65, other than the upper surface ⁇ 6 6. Good.
- a step is provided on the side surface 6 8 of the coil eight winging 6 5, and at least a part of the platform 90 is placed under the step 5 of the side surface 5 6 8 of the coil housing 65.
- the pedestal 90 supports the stepped portion of the side surface 6 8 of the coil 8 winging 6 5.
- the platform 90 can support the coil unit 60.
- the platform 90 is from the coil housing 65 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- the main body of housing 40 is 6 4 1 (it may be held.
- Part of the platform 90 is a coil unit.
- the pedestal 90 0 in the state before the main body 4 1 of the coil unit 60 and the eight aging 40 is connected to the base 10 Can support the coil unit 60
- FIG. 7 is a diagram for explaining a state before the coil unit and the main body of the eight-using are connected to the substrate in the hydraulic pressure control unit according to the embodiment of the present invention.
- the pedestal 90 is the upper surface portion 6 of the coil housing 6 5.
- the support portion 91 which forms at least a part of the portion located below 6, supports the lower surface 6 6 of the upper surface portion 6 6 of the coil housing 6 5 from below.
- the entire portion of the loading platform 90 is arranged below the upper surface portion 6 6 of the coil housing 65. For this reason, the lower end 9 2 of the loading platform 90 is held by the main body 4 1 of the housing 40, and the upper end 9 3 is the support 91.
- the conventional hydraulic pressure control unit has a configuration in which a coil unit is attached to a substrate and then eight ugings are attached to the substrate.
- the gap between the coil unit and the eight aging must be reduced.
- the coil unit when the gap between the coil unit and the eight woosing becomes small, when the coil unit is displaced from the specified position and attached to the substrate, the coil unit is mounted on the substrate. It interferes with the lower part of the eight wing, making assembly difficult.
- the connection terminal of the coil may be bent due to the interference between the upper part of the coil unit and the lower part of the housing.
- the hydraulic pressure control unit 1 supports both the coil unit 60 and the main body of the housing 40 by supporting the coil unit 60 on the mounting table 90. , Can be positioned relative to the substrate 10. Therefore, the hydraulic pressure control unit 1 according to the present embodiment includes the coil unit 60 and the housing.
- the hydraulic pressure control unit 1 concerned can prevent the upper part 6 of the coil unit 60 from interfering with the lower part of the main body member ⁇ 4 1 of the housing 40, so that the coil 6 It is also possible to prevent the connection terminal 6 2 of 1 and the connection terminal 6 4 of coil 6 3 from being bent.
- the length 1_ 3 and the length 1_ 13 Is defined as follows.
- the length 1_ 3 is from the connection point between the main body 6 4 1 of the eight aging 40 and the upper surface 1 8 of the base 10 to the part supported by the support 9 1 of the pedestal 90 in the coil housing 65. Is the length in the vertical direction.
- the lower surface 6 6 of the upper surface 6 6 of the coil housing 6 5 is supported by the support 91 of the pedestal 90.
- the length 3 is the upper surface portion 6 6 of the coil eight wing 6 5 from the connection point between the main body portion 4 1 of the eight aging 40 and the upper surface portion 1 8 of the base 10. It is the length in the vertical direction up to the lower surface of 6 6 coils.
- the length 1_ ⁇ is the length in the vertical direction from the connection point between the main body 41 of the housing 40 and the upper surface 18 of the base 10 to the support 91 of the platform 90.
- the loading platform 90 is arranged below the upper surface portion 6 6 of the coil housing 6 5, and the lower end portion 9 2 is 8 ugly 4 It is held by the main body 4 1 of 0, and the upper end 9 3 and the support 9 1 ⁇ 0 2021/038359 ⁇ (: 17132020/057683)
- a part of the cradle 90 is above the upper surface 6 6 of the coil eight winging 6 5 (if this is provided, the cradle
- the _ ⁇ 6 of 90 is between the upper surface 6 6 of the coil 8 wing 6 5 and the main body 4 1 of the 8 aging 40 (this is to be arranged in the lateral direction (the gap formed).
- the entire part of the loading platform 90 under the upper surface 6 6 of the coil eight winging 6 5, the upper surface of the coil housing 6 5 and the main body of the housing 40 6 6 It is not necessary to place a part of the pedestal 90 in the gap formed in the lateral direction between the pedestal 90 and 4 1.
- the entire portion of the pedestal 90 is used for the upper surface of the coil housing 6 5 6 6 6
- the gap formed in the lateral direction between the eight roosters 40 and the main body 41 can be reduced, and the hydraulic pressure control unit 1 can be miniaturized.
- the hydraulic pressure control unit 1 is provided with a plurality of mounting stands 90.
- the vicinity of the position where the coil unit 60 is the center of gravity in a plan view is supported by the mount 90.
- the mount 90 When trying to reduce the size of the hydraulic pressure control unit 1, it may be difficult to secure a space supported by the pedestal 90 near the position that is the center of gravity of the coil unit 60 in a plan view. is there.
- the coil unit 60 when the coil unit 60 is supported by a plurality of cradle 90s, the plurality of cradle 90s can be placed in the vacant space without supporting the vicinity of the position where the coil unit 60 is the center of gravity in a plan view. By bringing them into contact with each other, the coil unit 60 can be supported. Therefore, the hydraulic pressure control unit 1 can be miniaturized by providing a plurality of mounting stands 90.
- the main body 4 1 of the 8 Uzing 40 and the loading platform 90 are integrally formed of resin. Therefore, in the hydraulic pressure control unit 1 according to the present embodiment, the step of assembling the loading platform 90 to the main body 41 can be eliminated, and the assembly man-hours can be reduced.
- the arm 70 is provided. Therefore, as shown in FIG. 7, in the state before the coil unit 60 and the main body 4 1 of the housing 40 are connected to the base 10, the coil housing 6 5 is placed on the arm 70 and the pedestal 90 0. It is sandwiched by and. Therefore, by providing the arm 70, the coil unit 60 can be stably held in the main body of the housing 40
- the main body 41 of the housing 40, the loading platform 90, and the arm 70 are integrally formed of resin. The process of assembling the pedestal 90 and the arm 70 on the main body 4 1 of the 8 aging 40 can be eliminated, and the assembly man-hours can be reduced.
- FIG. 8 is a diagram for explaining a process of supporting the coil unit on the platform in the hydraulic pressure control unit according to the embodiment of the present invention.
- the platform 90 in the present embodiment, is elastically deformable up to a position outside the coil unit 60 when the inside of the hydraulic pressure control unit 1 is observed from above. It has become.
- a notch 6 6 is formed on the upper surface portion 6 6 of the coil eight aging 6 5 of the coil unit 60.
- the loading platform 90 has a structure that can be elastically deformed up to a position outside the notch 660 when the inside of the hydraulic pressure control unit 1 is observed from above. By configuring the platform 90 in this way, the degree of freedom in designing the hydraulic pressure control unit 1 is improved.
- the pedestal 90 can be elastically deformed to the position on the outside of the coil unit 60 when the inside of the hydraulic pressure control unit 1 is observed from above, the pedestal 90
- the coil unit 60 can be raised from below, and the coil unit 60 can be supported on the platform 90.
- the coil unit 6 0 is passed through the opening 4 2 3 formed in the lower surface portion 4 2 of the main body 4 1 of the housing 40 from below, and the coil unit 6 is passed.
- a pedestal 90 is tangentially wormed on the edge of the 28th. Then, the loading platform 90 elastically deforms outward as the coil unit 60 rises. Then, when the coil unit 60 rises further (it rises and the upper surface portion 6 6 of the coil eight winging 6 5 goes above the support portion 9 1 of the mounting base 90, the mounting base 90 returns to its original shape. , The support 9 1 of the pedestal 90 is located below the lower surface 4 2 of the main body 41. This allows the coil unit 60 to be supported by the pedestal 90.
- the loading platform 90 can be elastically deformed to a position outside the coil unit 60, the coil unit 6 can be elastically deformed from both above and below the loading platform 90. Since 0 can be supported by the platform 90, the degree of freedom in designing the hydraulic pressure control unit 1 is increased.
- the pedestal 90 is shaped as shown in Fig. 5. Is preferable. Specifically, the width of the loading platform 90 decreases from the lower end 92 to the middle part 94 as it goes upward, and increases as it goes upward from the middle part 94 and the upper end part. It is preferable that the width of 9 3 is wider than the width of 9 4 in the middle.
- the width decreases from the lower end 9 2 to the middle portion 94 4 toward the upper side, so that it is easily deformed elastically and is below the loading platform 90. It is easy to support the coil unit 60 on the platform 90.
- the width increases from the middle part 94 to the upper side, and the width of the upper end part 9 3 is wider than the width of the middle part 94.
- the area that supports the coil housing 6 5 can be increased by the platform 90. Therefore, in the mounting table 90 configured in this way, the stability when the coil unit 60 is supported by the mounting table 90 is improved. Therefore, by using the loading platform 90 configured in this way, the hydraulic pressure control unit 1 can be easily assembled.
- the hydraulic pressure control unit 1 is provided with an accumulator 2 3 for storing the brake fluid at the time of pressure reduction in the anti-cook brake control, and the brake fluid in the accumulator 2 3 is provided.
- the pumpless hydraulic pressure control unit It is configured to discharge to the outside. It is desired that the pumpless hydraulic pressure control unit be miniaturized. Therefore, it is preferable to carry out the present embodiment (the hydraulic pressure control unit 1 concerned is implemented as a pumpless hydraulic pressure control unit.
- the hydraulic pressure control unit 1 is, for example, the hydraulic pressure control unit 1 of the break system 100 mounted on a saddle-mounted vehicle such as a bicycle 200.
- the hydraulic pressure control unit 1 includes a substrate 10 and a circuit board 31 and an eight-using 40.
- a flow path 13 of the brake liquid is formed on the substrate 10.
- the circuit board 3 1 controls the drive of the hydraulic pressure adjusting pulp 20 that opens and closes the flow path 13.
- Eight Uzing 40 is connected to the base 10 and houses the circuit board 31.
- the eight-using 40 includes a main body 41, a lid 48, and a lid fixing portion 50.
- the lid fixing portion 50 is connected to the substrate 10 and an opening 4 3 3 is formed in a region facing the circuit board 3 1.
- the lid 4 8 covers the opening 4 3 3 and is adhered to the main body 4 1.
- the lid fixing portion 50 is provided inside the space surrounded by the main body 4 1 and the lid 4 8, and fixes the lid 4 8 to the main body 4 1.
- the lid fixing portion 50 is held by the engaged portion 5 1 held by one of the main body 4 1 and the lid 4 8 and the other of the main body 4 1 and the lid 4 8 and engaged. It is provided with an engaging portion 5 5 that engages the portion 5 1.
- the lid fixing portion 50 is provided inside the space surrounded by the main body portion 41 and the lid 48 8. Therefore, the lid fixing portion 50 does not protrude outward from the outer peripheral portions of the main body portion 41 and the lid 48. Therefore, by fixing the lid 48 to the main body 41 using the lid fixing portion 50, the hydraulic pressure control unit 1 can be made smaller than the conventional hydraulic pressure control unit.
- 1 Hydraulic pressure control unit 10 Base, 1 1 Master cylinder bore, 1 2 Wheel cylinder bowl, 1 3 Channel, 1 4 1st channel, 1 5 2nd channel, 1 6 3rd stream road, 1 7 fourth channel, 1 8 top, 2 0 the fluid pressure adjusting pulp, 2 1 inlet pulp, 2 2 outlet Pas' pulp, 2 3 accumulator - evening, 3 0 controller, 3 1 circuit board, 3 2 Bottom surface, 3 3 holes, 40 housing, 4 1 body, 4 2 bottom surface, 4 2 3 opening, 4 3 top surface, 4 3 ⁇ opening, 4 4 3 1st side surface, 4 4 4 ⁇ 2nd Side surface part, 4 4 ⁇ 3rd side surface part, 4 4 ⁇ ) 4th side surface part, 4 5 holding part, 4 8 lid, 50 lid fixing part, 5 1 engaged part, 5 2 convex part, 5 3 slit , 5 5 Engagement, 5 6 Convex, 5 7 Slit, 5 8 Virtual Axis, 60 Coil Unit, 6 1 Coil, 6 2 Connection Terminal, 6 3 Coil,
- 6 5 Coil 8 Uging, 6 6 Top surface, 6 6 3 Top surface, 6 6 ⁇ Bottom surface, 6 6 ⁇ Notch, 6 7 Bottom surface, 6 8 Side surface, 6 9 Center, 70 Arm, 7 1 Projection , 7 2 top, 7 3 bottom, 7 4 axes, 80 connections, 8 1 recesses, 8 2 pins, 8 3 bottoms, 8 4 tops, 8 5 protrusions, 8 6 through holes, 90 mounts , 9 1 support, 9 2 lower end, 9 3 upper end, 9 4 middle part, 100 plex system, 100 1 liquid pipe, 100 2 liquid pipe, 100 3 hydraulic pressure sensor, 2 0 0 Bicycle, 2 1 0 Frame, 2 1 1 1 Head Tube, 2 1 2 Top Tube, 2 1 3 Down Tube, 2 1 4 Seat Chupe, 2 1 5 Stay, 2 1 6 Front Fork, 2 1 7 Front Wheel, 2 1 8 saddle, 2 1 9 pedal, 2 2 0 rear wheel, 2 3 0 swivel part, 2 3 1 steering column, 2 3 2 handle stem, 2 3 3 hand loop
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Transportation (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- Regulating Braking Force (AREA)
- Connection Of Plates (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US17/636,951 US12509033B2 (en) | 2019-08-29 | 2020-08-14 | Hydraulic pressure control unit, brake system, and straddle-type vehicle |
| JP2021542303A JP7303886B2 (ja) | 2019-08-29 | 2020-08-14 | 液圧制御ユニット、ブレーキシステム及び鞍乗型車両 |
| CN202080060440.XA CN114258371B (zh) | 2019-08-29 | 2020-08-14 | 液压控制单元、制动系统及跨乘型车辆 |
| DE112020004110.7T DE112020004110T5 (de) | 2019-08-29 | 2020-08-14 | Hydrauliksteuereinheit, Bremssystem und Fahrzeug vom Satteltyp |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2019156226A JP2021031000A (ja) | 2019-08-29 | 2019-08-29 | 液圧制御ユニット、ブレーキシステム及び鞍乗型車両 |
| JP2019-156226 | 2019-08-29 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2021038359A1 true WO2021038359A1 (ja) | 2021-03-04 |
Family
ID=72356214
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IB2020/057683 Ceased WO2021038359A1 (ja) | 2019-08-29 | 2020-08-14 | 液圧制御ユニット、ブレーキシステム及び鞍乗型車両 |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US12509033B2 (ja) |
| JP (2) | JP2021031000A (ja) |
| CN (1) | CN114258371B (ja) |
| DE (1) | DE112020004110T5 (ja) |
| WO (1) | WO2021038359A1 (ja) |
Families Citing this family (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2021031002A (ja) * | 2019-08-29 | 2021-03-01 | ロベルト・ボッシュ・ゲゼルシャフト・ミト・ベシュレンクテル・ハフツングRobert Bosch Gmbh | 液圧制御ユニット、ブレーキシステム及び鞍乗型車両 |
| DE102021204017A1 (de) * | 2021-04-22 | 2022-10-27 | Robert Bosch Gesellschaft mit beschränkter Haftung | Verfahren und Einrichtung zum Steuern des Betriebs einer hydraulischen Bremsanlage, hydraulische Bremsanlage sowie Fahrzeug |
| JPWO2023161756A1 (ja) * | 2022-02-28 | 2023-08-31 | ||
| WO2025243105A1 (ja) * | 2024-05-20 | 2025-11-27 | ロベルト•ボッシュ•ゲゼルシャフト•ミト•ベシュレンクテル•ハフツング | 液圧制御ユニット、鞍乗型車両、及び液圧制御ユニットの製造方法 |
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- 2020-08-14 JP JP2021542303A patent/JP7303886B2/ja active Active
- 2020-08-14 CN CN202080060440.XA patent/CN114258371B/zh active Active
- 2020-08-14 US US17/636,951 patent/US12509033B2/en active Active
- 2020-08-14 DE DE112020004110.7T patent/DE112020004110T5/de active Pending
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Also Published As
| Publication number | Publication date |
|---|---|
| DE112020004110T5 (de) | 2022-06-02 |
| US12509033B2 (en) | 2025-12-30 |
| US20220274567A1 (en) | 2022-09-01 |
| JP2021031000A (ja) | 2021-03-01 |
| JPWO2021038359A1 (ja) | 2021-03-04 |
| CN114258371A (zh) | 2022-03-29 |
| JP7303886B2 (ja) | 2023-07-05 |
| CN114258371B (zh) | 2023-12-08 |
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