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WO2018198741A1 - Dispositif et procédé pour monter un boîtier sur une borne de fil électrique équipé d'une borne - Google Patents

Dispositif et procédé pour monter un boîtier sur une borne de fil électrique équipé d'une borne Download PDF

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Publication number
WO2018198741A1
WO2018198741A1 PCT/JP2018/014898 JP2018014898W WO2018198741A1 WO 2018198741 A1 WO2018198741 A1 WO 2018198741A1 JP 2018014898 W JP2018014898 W JP 2018014898W WO 2018198741 A1 WO2018198741 A1 WO 2018198741A1
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WO
WIPO (PCT)
Prior art keywords
terminal
case
electric wire
recess
terminals
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
Application number
PCT/JP2018/014898
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English (en)
Japanese (ja)
Inventor
力 荻野
純一 白川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sumitomo Wiring Systems Ltd
Original Assignee
Sumitomo Wiring Systems Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Sumitomo Wiring Systems Ltd filed Critical Sumitomo Wiring Systems Ltd
Priority to CN201880026810.0A priority Critical patent/CN110546829B/zh
Publication of WO2018198741A1 publication Critical patent/WO2018198741A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/502Bases; Cases composed of different pieces
    • H01R13/506Bases; Cases composed of different pieces assembled by snap action of the parts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R43/00Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
    • H01R43/20Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for assembling or disassembling contact members with insulating base, case or sleeve

Definitions

  • This invention relates to a technique for attaching a case to a terminal of an electric wire with terminal.
  • Patent Document 1 discloses a twisted cable including a plurality of insulated wires twisted together and an insulating secondary coating formed by extrusion molding around the plurality of insulated wires.
  • the twisted cable is connected to the electrical device that is the connection destination via a terminal attached to the end of the insulated wire.
  • the terminal is connected to an electrical device as a connection destination in a form accommodated in a dielectric case formed of resin or the like.
  • an object of the present invention is to make it possible to easily attach a case to a terminal of a terminal-attached electric wire.
  • the first aspect is a case for a terminal of a terminal-attached electric wire in which a case including a storage case in which a terminal receiving recess having an opening on the outer periphery is formed is assembled to the terminal of the terminal-attached electric wire
  • a mounting device which is supported so as to be movable between a set position and a retracted position, and has a terminal set recess capable of setting a terminal from the opposite side of the retracted position, and the set part at the set position
  • An electric wire moving mechanism with a terminal that moves toward the terminal set concave portion of the set portion located at the set position, and a housing case is moved toward the set portion from the side opposite to the retracted position, While the part is moved toward the retracted position, and a housing case pushing mechanism for accommodating the supported terminal in the terminal support portion in the accommodating case.
  • a second aspect is a case mounting device for a terminal of a terminal-equipped electric wire according to the first aspect, wherein the terminal accommodating recess is configured to accommodate a plurality of terminals in a parallel state, and the terminal set recess is A plurality of terminals can be set in a parallel state, and the terminal support portion supports the plurality of terminals set in the terminal setting recess in a parallel state from the retracted position side in a parallel state, and moves the electric wire with the terminal The mechanism moves a plurality of electric wires with terminals toward the terminal set concave portion of the set portion in a state where the terminals at the end portions thereof are arranged in parallel.
  • a 3rd aspect is a case mounting apparatus to the terminal of the electric wire with a terminal which concerns on the 1st or 2nd aspect, Comprising: A terminal is turned to the said terminal set recessed part in the both sides of the said set part located in the said setting position. And a set guide portion having a guide surface for guiding.
  • a 4th aspect is a case mounting apparatus to the terminal of the electric wire with a terminal which concerns on any one 1st to 3rd aspect, Comprising: The accommodation case support which supports the accommodating case with which the terminal of the electric wire with a terminal was mounted
  • a 5th aspect is a case mounting apparatus to the terminal of the electric wire with a terminal which concerns on any one aspect from 1st to 4th, Comprising: Before a terminal is set to the said terminal set recessed part, an electric wire with a terminal A posture aligning mechanism for aligning the posture with respect to the electric wire with the terminal sandwiched from the periphery is further provided.
  • a 6th aspect uses the case mounting apparatus to the terminal of the electric wire with a terminal which concerns on any one aspect from the 1st to the 5th,
  • the terminal of the said set part which positions the terminal of an electric wire with a terminal in the said setting position Set in the set recess from the side opposite to the retracted position, and move the storage case toward the set part from the side opposite to the retracted position by the storage case pushing mechanism, so that the set part is directed to the retracted position.
  • the terminal supported by the terminal support portion is housed in the housing case while being moved.
  • the terminal of the terminal-attached electric wire is set by the terminal-attached electric wire moving mechanism in the terminal set recess of the set portion located at the set position from the opposite side to the retracted position, and the storage case pushing mechanism
  • the terminal-attached electric wire moving mechanism By moving the storage case from the side opposite to the retracted position toward the set unit, the terminal supported by the terminal support unit can be stored in the storage case while moving the set unit toward the retracted position. it can.
  • a case can be easily attached to a terminal of an electric wire with a terminal.
  • the terminal is accommodated in the terminal set recess, and when the accommodating case is moved, the set portion moves toward the retracted position, and the terminal supported by the terminal support portion is detached from the terminal set recess and accommodated. Housed in a case. For this reason, a terminal can be accommodated in an accommodation case with the correct posture as much as possible.
  • the terminals of the end portions of the plurality of electric wires with terminals can be accommodated in the accommodating case in a parallel state.
  • the terminal can be more reliably set in the terminal setting recess.
  • the combined case in the case where the case has a combined structure of the storage case and the combined case, after the terminal is stored in the storage case, the combined case can be easily combined with the storage case storing the terminal. .
  • the terminal of the electric wire with terminal is sandwiched from the surroundings so as to align the posture with respect to the electric wire, so that the terminal can be set in the terminal set recess more reliably.
  • the case can be easily attached to the terminal of the electric wire with terminal.
  • the terminal is accommodated in the terminal set recess, and when the accommodating case is moved, the set portion moves toward the retracted position, and the terminal supported by the terminal support portion is detached from the terminal set recess and accommodated. Housed in a case. For this reason, a terminal can be accommodated in an accommodation case with the correct posture as much as possible.
  • FIG. 1 is a schematic sectional view showing a terminal-attached electric wire 10.
  • the electric wire with terminal 10 includes an electric wire 11 and a terminal 20.
  • the electric wire 11 is, for example, a twisted electric wire for a vehicle that is a part of a wire harness mounted on a vehicle such as an automobile.
  • the electric wire 11 includes a twisted portion 12 as a central portion, a braid 14 that covers the outer periphery of the twisted portion 12, and a sheath 16 that covers the outer periphery of the braid 14.
  • the twisted portion 12 has a configuration in which a plurality (two in this case) of insulated wires 13 are twisted together.
  • the insulated wire 13 has a core wire 13a that is a linear conductor and an insulating coating 13b that covers the periphery of the core wire 13a.
  • the insulating coating 13 b is a primary coating that individually covers each of the core wires 13 a inside the sheath 16.
  • the core wire 13a is constituted by, for example, a stranded wire in which a plurality of conductive strands are twisted together. However, the core wire may be a single wire.
  • the two insulated wires 13 are twisted together while drawing a coaxial spiral.
  • the center line of the electric wire 11 is a spiral axis along which each of the insulated electric wires 13 extends.
  • a terminal 20 is crimped to each end of the two insulated wires 13.
  • the braid 14 is a shield layer that covers the outer periphery of the twisted portion 12.
  • the braid 14 is formed by knitting metal wires such as copper and copper alloy so as to form a cylindrical shape.
  • the braid 14 has a cylindrical shape that covers the twisted portion 12 on the inner peripheral side of the sheath 16. However, when exposed from the sheath, the braid 14 can be deformed to expand its diameter by widening between the meshes.
  • the sheath 16 is an insulator formed by extruding resin on the outer periphery of the braid 14.
  • the sheath 16 is a portion that keeps the braid 14 in a cylindrical shape while maintaining the bundle of the plurality of insulated wires 13 on the outer periphery of the braid 14.
  • the electric wire 11 as described above can be applied as a cable for high-speed communication conforming to the Ethernet (registered trademark) standard.
  • the electric wire 11 has the above configuration.
  • only one electric wire may be included, or three or more electric wires may be included.
  • a plurality of electric wires may not be twisted together in the central portion but may be bundled in a parallel state.
  • An insulating layer may be interposed between the twisted portion 12 and the braid 14.
  • the electric wire may be a so-called coaxial cable in which an inner insulating layer is formed around a central conductor, a braid is formed around the central conductor, and a sheath is formed around the inner insulating layer.
  • one insulation coating may be formed around one core wire.
  • the sheath 16 is partially peeled off at the end of the electric wire 11, and the two insulated electric wires 13 are exposed. Furthermore, the insulation coating 13b is stripped off at each end of the two insulated wires 13, and the core wire 13a is exposed.
  • the terminal 20 is formed by appropriately pressing a metal plate material such as copper or copper alloy. A plating layer of tin, nickel, or the like may be formed on the surface of the terminal 20.
  • the terminal 20 is formed in a shape in which the mating connection portion 22 and the wire connection portion 24 are connected in a straight line.
  • the counterpart connection part 22 is a part connected to a counterpart terminal or the like.
  • the other party connection part 22 is formed in the shape of a box shape as a whole, what is called a female terminal.
  • a mating terminal (so-called male terminal) having a pin-shaped or tab-shaped connecting section is inserted and connected to the mating connection section 22.
  • the other party connection part 22 may be formed in the shape of a pin shape or a tab shape, what is called a male terminal.
  • the male terminal also has a box portion formed at the base end portion of a pin shape or tab shape.
  • the wire connecting portion 24 is a portion that is crimped to the end of the insulated wire 13 and connected to the insulated wire 13.
  • the electric wire connecting portion 24 includes a core wire barrel portion 25 and a covering barrel portion 26.
  • coated barrel part 26 may be abbreviate
  • the core wire barrel portion 25 is formed in a shape in which a pair of core wire crimping pieces rises from both side portions of the bottom plate portion. Bend. Thereby, the core wire barrel part 25 is crimped to the exposed core wire 13a.
  • the covering barrel portion 26 is formed in a shape in which a pair of covering pressure-bonding pieces rises from both side portions of the bottom plate portion, and the pair of covering pressure-bonding pieces are disposed in the state where the end portions of the insulating coating 13b are disposed therein. It is bent in the direction. Thereby, the coating
  • the terminal 20 is crimped to each end of the two insulated wires 13.
  • the two terminals are accommodated in a dielectric case 30 made of resin or the like.
  • the dielectric case 30 partitions the two terminals 20 so as not to be in direct contact with each other and covers the outer periphery of the terminals 20 with a substance having a dielectric constant larger than that of air.
  • Two openings corresponding to the two terminals 20 are formed on the distal end side of the dielectric case 30, and the other two terminals are inserted into the two openings and connected to the corresponding terminals 20. be able to.
  • the outer conductor terminal 40 is formed by appropriately pressing a metal plate material such as copper or copper alloy. A plating layer such as tin or nickel may be formed on the surface of the outer conductor terminal 40.
  • the outer conductor terminal 40 is formed in a shape in which a dielectric case housing part 42 and a braided crimping part 44 are connected in a straight line.
  • the dielectric case housing portion 42 is formed in a box shape and can accommodate the outer periphery of the dielectric case 30 inside.
  • the braided crimping portion 44 extends from one end portion of the dielectric case housing portion 42 toward the end portion of the sheath 16.
  • the braid crimping portion 44 is formed, for example, in a shape in which a pair of braid crimping pieces rises from both side portions of the bottom plate portion.
  • the braid 14 exposed from the end portion of the sheath 16 of the braid 14 (hereinafter, also referred to as an exposed braid 14 a) is reversed so as to cover the end portion of the sheath 16.
  • the outer periphery of the sheath 16 is covered with a metal sleeve 18, and the exposed braid 14 a is covered with the outer periphery of the metal sleeve 18.
  • the metal sleeve 18 may be omitted.
  • the exposed braid 14a covering the end portion of the sheath 16, the metal sleeve 18 and the outer periphery thereof is disposed in the braided crimping portion 44, and in this state, the pair of braided crimping pieces are bent inward.
  • compression-bonding part 44 is crimped
  • the outer conductor terminal 40 may be omitted.
  • FIG. 2 is a schematic perspective view showing an example of the dielectric case 30, and FIG. 3 is a schematic exploded perspective view of the dielectric case 30.
  • the dielectric case 30 is an example of a case, and includes a storage case 32 and a combined case 36.
  • the housing case 32 is a member made of a dielectric material such as resin, and has a structure in which a terminal housing recess 32a having an opening on the outer periphery is formed. More specifically, the storage case 32 includes a bottom 33, a pair of side walls 34a, and a partition 34b.
  • the bottom 33 is formed in a rectangular plate shape.
  • the longitudinal dimension of the bottom 33 is set to be equal to or larger than the terminal 20 and the length dimension.
  • the width direction dimension of the bottom 33 is set to be larger than the dimension obtained by multiplying the width dimension of the terminal 20 by the accommodated number of terminals 20.
  • Side wall portions 34 a project from both side portions of the bottom portion 33 so as to project toward one main surface side of the bottom portion 33. Further, a partition portion 34 b is projected from the center portion in the width direction of the bottom portion 33 so as to protrude toward the one main surface side of the bottom portion 33.
  • the height dimension of the pair of side wall parts 34a and the partition part 34b is set to be equal to or larger than the height dimension of the terminal 20.
  • the terminal 20 can be accommodated in one main surface side of the bottom 33, between the one side wall 34a and the partition 34b, and between the other side wall 34a and the partition 34b.
  • Terminal receiving recesses 32a are formed in parallel.
  • the two terminal accommodating recesses 32a are opened on the opposite side to the bottom 33 which is a part of the outer periphery of the accommodating case 32, and the two terminals 20 are accommodated in parallel in the two terminal accommodating recesses 32a through the openings. Is done.
  • a terminal fixing protrusion that can be locked in a recess formed in the mating connection portion 22 of the terminal 20 or a recess between the mating connection portion 22 and the core wire barrel portion 25.
  • a portion 32b is formed, and the terminal 20 is positioned in the terminal receiving recess 32a by the terminal fixing projection 32b.
  • a recess 34h is formed in the intermediate portion in the extending direction of the pair of side wall portions 34a.
  • a locking projection 33p is formed that protrudes outward from both sides of the bottom 33.
  • the locking projection 33p is formed in a shape that sequentially protrudes toward the one main surface of the bottom 33 toward the outside of the bottom 33.
  • the combined case 36 is a member formed of a dielectric material such as a resin, and is combined so as to cover the storage case 32 to close the opening of the terminal storage recess 32a. More specifically, the united case 36 includes a ceiling portion 37 and a pair of side pieces 38.
  • the ceiling portion 37 is formed in a rectangular plate shape like the bottom portion 33.
  • a pair of side pieces 38 project from the central part of both sides of the ceiling part 37 toward the one main surface side of the ceiling part 37.
  • the side piece 38 is formed in a rectangular plate shape that fits into a recess 34h formed in the side wall 34a.
  • a locking recess 38h into which the locking protrusion 33p is fitted is formed in the side piece 38.
  • the insulated wire 13 extending from the pair of terminals 20 extends outward from the two openings on one side of the dielectric case 30. Further, the two openings on the other side of the dielectric case 30 are opened outward, and other terminals can be connected to the internal terminals 20 through the openings.
  • FIG. 4 is a schematic diagram showing the overall configuration of the case mounting device 50.
  • the case mounting device 50 includes an electric wire end conveyance mechanism 52, a posture alignment mechanism 60, a storage case mounting mechanism 70, and a combined case mounting mechanism 100.
  • the electric wire end conveyance mechanism 52 conveys both ends of the electric wire with terminal 10 along the conveyance direction P.
  • the posture alignment mechanism 60, the housing case mounting mechanism 70, and the united case mounting mechanism 100 are provided in this order from the upstream side toward the downstream side along the transport direction P.
  • a pre-processing mechanism 130 including a mechanism for peeling off the insulation coating 13b at the end of the insulated wire 13 and a mechanism for crimping the terminal 20 to the end of the insulated wire 13 are provided on the upstream side of the posture aligning mechanism 60. Yes. For this reason, in the both ends of the electric wire 10 with a terminal conveyed with respect to the attitude
  • the end of the terminal-attached electric wire 10 on which the insulation coating 13b is peeled off and the terminal 20 is crimped manually may be set in the electric wire end portion transport mechanism 52.
  • the skin 16 can be peeled, the braid 14 can be reversed, and the like can be performed manually.
  • a post-processing mechanism 132 including a terminal crimping device for crimping the outer conductor terminal 40 to the outside of the dielectric case 30 is provided on the downstream side of the united case mounting mechanism 100.
  • the pretreatment mechanism 130 may be omitted, and the outer conductor terminal 40 may be crimped manually.
  • the wire end transport mechanism 52 includes a wire end gripper 54, a wire end advancing / retreating drive unit 56, a wire end lifting / lowering drive unit 57, and a wire end transporting drive unit 58.
  • the wire end gripping portion 54 is configured by an electromagnetic chuck using a solenoid or a chuck using an air cylinder, and includes a pair of gripping pieces 54a that can be opened and closed. Then, by moving the pair of gripping pieces 54a in the closing direction, the end portion of the sheath 16 of the terminal-attached electric wire 10 and the portion closer to the center in the extending direction than the portion where the exposed braid 14a is inverted are gripped. .
  • the wire end advancing / retreating drive unit 56 is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and the wire end holding unit 54 is replaced with a posture aligning mechanism 60, a storage case mounting mechanism 70, and a combined case mounting mechanism. Move forward and backward with respect to 100. That is, an attitude aligning mechanism 60, a storage case mounting mechanism 70, and a combined case mounting mechanism 100 are provided on one side of the wire end transport mechanism 52, and the wire end advancing / retreating drive unit 56 is connected to the wire end gripping portion 54.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • the advanced position is moved forward to the posture aligning mechanism 60, the storage case mounting mechanism 70, and the combined case mounting mechanism 100.
  • the end portions of the terminal-attached electric wires 10 gripped by the wire end gripping portion 54 are the posture alignment mechanism 60, the housing case mounting mechanism 70, and the combined case mounting mechanism. It can be moved along the transport direction P without interfering with 100.
  • the end portions of the terminal-attached electric wires 10 gripped by the wire end gripping portion 54 are the posture alignment mechanism 60, the housing case mounting mechanism 70, and the combined case mounting mechanism. 100 is sent to a processable position.
  • the wire end lifting / lowering drive unit 57 is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and drives the wire end gripping unit 54 to move up and down.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • the wire end conveyance drive unit 58 includes a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, a feed mechanism that circulates and moves an annular belt or an annular chain, and the like. It is moved intermittently along the conveyance direction P together with the elevation drive unit 57.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • a feed mechanism that circulates and moves an annular belt or an annular chain, and the like. It is moved intermittently along the conveyance direction P together with the elevation drive unit 57.
  • the two wire end gripping portions 54 are supported on the movable base 59 via the wire end advancing / retreating drive portion 56. And the edge part of the both sides of one electric wire 10 with a terminal can be sequentially conveyed intermittently along the conveyance direction P in the state hold
  • the two wire end gripping portions 54 are supported on the movable table 59 at intervals corresponding to the intervals between the processing positions in the posture alignment mechanism 60, the housing case mounting mechanism 70, and the combined case mounting mechanism 100. .
  • one end of the terminal-attached electric wire 10 held by one electric wire end holding portion 54 is being processed by any one of the posture alignment mechanism 60, the housing case mounting mechanism 70, and the united case mounting mechanism 100.
  • the other end of the terminal-attached electric wire 10 held by the other electric wire end holding portion 54 can be processed.
  • the end of the terminal-attached electric wire 10 conveyed by the electric wire end conveyance mechanism 52 is processed through the posture alignment mechanism 60, the housing case mounting mechanism 70, and the united case mounting mechanism 100 in this order.
  • the posture alignment mechanism 60 is configured to align the terminals 20 with predetermined indications suitable for being accommodated in the accommodation case 32.
  • the storage case mounting mechanism 70 is configured so that the storage case 32 can be mounted on the terminal 20.
  • the united case mounting mechanism 100 is configured such that the united case 36 can be united with the housing case 32 that houses the terminals 20.
  • Each part of the wire end part conveying mechanism 52, the posture aligning mechanism 60, the housing case mounting mechanism 70, the combined case mounting mechanism 100 and the like includes a CPU, a ROM, a RAM, and the like, and a software program stored in advance and a predetermined setting.
  • the operation is controlled by a control unit 51 configured by a microcomputer that executes arithmetic processing according to the value.
  • FIG. 5 is a schematic perspective view showing the posture alignment mechanism 60
  • FIGS. 6 to 10 are explanatory views showing the operation of the posture alignment mechanism 60. 6 to 10, the positional relationship of each part when viewed along the axial direction of the end portion of the terminal-attached electric wire 10 is shown on the upper side, and the positional relationship of each part in plan view is shown on the lower side.
  • the posture aligning mechanism 60 is a mechanism for aligning the posture of the electric wire 11 with the terminal 20 of the terminal-attached electric wire 10 sandwiched from the periphery before the terminal 20 is set in the terminal setting recess 72a described later in the housing case mounting mechanism 70.
  • a lower support part 62, an upper presser part 64, a pair of side presser parts 66, and an intermediate insertion part 68 are provided.
  • the two terminals 20 are sandwiched between the lower support portion 62 and the upper presser portion 64. To regulate their vertical position.
  • the pair of side pressing portions 66 press the two terminals 20 arranged in parallel from both sides to restrict the positions on both sides.
  • the intermediate insertion portion 68 is inserted between the two terminals 20, and the position is regulated so that a gap with a predetermined interval is provided between the two terminals 20. Thereby, the two terminals 20 are aligned so as to be arranged in parallel with each other at a predetermined interval.
  • the positions of the wire end holding portion 54 and the terminal-attached electric wire 10 are the positions of the wire end holding portion 54 that sends the terminal-attached electric wire 10 toward the posture alignment mechanism 60 and the wire ends.
  • the position of the terminal-attached electric wire 10 held by the part holding part 54 will be described as a reference.
  • the lower support portion 62 is provided at a position below the two terminals 20 at the end of the terminal-attached electric wire 10 sent by the electric wire end portion conveyance mechanism 52.
  • An upward portion of the lower support portion 62 is formed at an edge portion along the horizontal direction orthogonal to the axial direction of the end portion of the terminal-attached electric wire 10.
  • the two terminals 20 are sent onto the lower support portion 62 by the wire end portion transport mechanism 52, the two terminals 20 are moved downward by driving the wire end portion raising / lowering drive portion 57 and are disposed along the upper edge portion of the lower support portion 62. .
  • the upper presser part 64 is provided above the lower support part 62, and includes an upper presser piece 64a and a lift drive part 64b.
  • the raising / lowering drive part 64b is comprised by linear actuators, such as an air cylinder, a hydraulic cylinder, or a linear motor, and raises / lowers the upper holding piece 64a above the lower support part 62. As shown in FIG.
  • the upper presser piece 64a is supported in a posture facing downward from the lift drive unit 64b.
  • a downward edge portion of the upper holding piece 64 a is formed at an edge portion along a horizontal direction orthogonal to the axial direction of the end portion of the terminal-attached electric wire 10, and is opposed to the upper edge portion of the lower support portion 62. Is provided.
  • the pair of side pressing portions 66 are provided on both sides of the lower support portion 62.
  • the side pressing portion 66 includes a side pressing piece 66a and a width direction driving portion 66b.
  • the width direction drive unit 66b is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and reciprocally drives the side presser piece 66a toward the inside and outside above the lower support portion 62.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • the side presser piece 66a is supported in a posture facing the upper space of the lower support part 62 from the width direction driving part 66b.
  • the edge part which faces the upper space of the lower support part 62 among the side pressing pieces 66a is formed at an edge part along the vertical direction (gravity direction) orthogonal to the axial direction of the end part of the terminal-attached electric wire 10. .
  • the pair of side pressing pieces 66 a are provided to face each other with the upper space of the lower support portion 62 interposed therebetween.
  • the intermediate insertion portion 68 is provided at a lower position between the two terminals 20 at the end portion of the terminal-attached electric wire 10 held by the electric wire end portion holding portion 54.
  • the intermediate insertion part 68 includes an insertion piece 68a and a lift drive part 68b.
  • the elevating drive unit 68b is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and drives the insertion piece 68a forward and backward between the two terminals 20.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • the insertion piece 68a is supported in an upward posture from the elevation drive unit 68b.
  • the distal end portion of the insertion piece 68a is formed in a shape that gradually becomes narrower toward the distal end side.
  • the intermediate part inserted between the terminals 20 in the insertion piece 68a is set to be the same as the holding interval between the two terminals 20 in the terminal set recess 72a.
  • the insertion piece 68a is driven to advance between the two terminals 20 by driving the elevating drive part 68b with the two terminals 20 disposed on the lower support part 62, the insertion piece 68a becomes two terminals. 20. Thereby, a gap corresponding to the width of the intermediate portion of the insertion piece 68a is formed between the two terminals 20.
  • the insertion piece 68a may be configured to be inserted between the two terminals 20 from above.
  • the lower support 62 and the upper pressing piece 64a, the side pressing piece 66a, and the insertion piece 68a are arranged at different positions. For this reason, the lower support part 62 and the upper pressing piece 64a, and the side pressing piece 66a can hold the terminal 20 without interfering with each other.
  • the insertion piece 68a, the lower support portion 62, the upper pressing piece 64a, and the side pressing piece 66a are provided in this order from the proximal end side to the distal end side of the terminal 20. This positional relationship is arbitrary and is not limited to the above example.
  • the upper presser piece 64a is in the raised position, the pair of side presser pieces 66a are in positions separated from each other, and the insertion piece 68a is in the position retracted downward. is there.
  • either one end of the terminal-attached electric wire 10 is sent to the posture alignment mechanism 60. That is, the two terminals 20 at the end of the terminal-attached electric wire 10 held by the electric wire end holding portion 54 are sent toward the lower support portion 62 by driving the electric wire end portion advance / retreat driving portion 56.
  • the two terminals 20 may be displaced or inclined in the vertical direction and the horizontal direction.
  • the upper presser piece 64a is moved downward by driving the elevating drive unit 64b. Then, the two terminals 20 are sandwiched between the lower support portion 62 and the upper presser piece 64a. Thereby, the vertical position of the two terminals 20 is aligned to some extent.
  • the pair of side pressing pieces 66a move closer by driving the width direction driving unit 66b.
  • the outward portions of the two terminals 20 are pushed inward.
  • the two terminals 20 are brought closer to some extent.
  • the insertion piece 68 a is driven to advance between the two terminals 20 by driving the elevating drive unit 68 b. Then, a gap corresponding to the width of the insertion piece 68 a is formed between the two terminals 20. Thereby, the two terminals 20 are arranged in parallel in a state where they are aligned along the axial direction of the end portion of the electric wire 11.
  • the upper presser piece 64a is moved upward, the pair of side presser pieces 66a are moved away from each other, and the insertion piece 68a is further retracted.
  • the two terminal 20 can be taken out from the lower support part 62 by the electric wire end part conveyance mechanism 52, and can be sent toward the next storage case mounting mechanism 70.
  • the insulated wire 13 itself extending toward the terminal 20 is plastically deformed so that the two terminals 20 are arranged in parallel as described above, the upper pressing piece 64a and the pair of side pressing pieces Even in a state where the 66a and the insertion piece 68a are retracted, the two terminals 20 are kept in a state where they are arranged in parallel so as to be aligned to some extent along the axial direction of the end of the electric wire 11.
  • the advancement order of the upper pressing piece 64a, the pair of side pressing pieces 66a, and the insertion piece 68a is arbitrary, and the terminal 20 may be pressed in any order. Further, at least one of the upper pressing piece 64a, the pair of side pressing pieces 66a, and the insertion piece 68a may be omitted. Further, it is not essential that the posture alignment mechanism 60 is provided.
  • FIG. 11 is a schematic perspective view showing the storage case mounting mechanism 70
  • FIGS. 12 to 18 are explanatory views showing the operation of the storage case mounting mechanism 70. 12 to 18, the positional relationship of each part when viewed along the axial direction of the end portion of the terminal-attached electric wire 10 is shown on the upper side, and the positional relationship of each part in plan view is shown on the lower side.
  • the electric wire end-conveying mechanism 52 attaches the end of the electric wire with terminal 10 to the housing case. Send to mechanism 70.
  • the positions of the wire end gripping portion 54 and the wire 11 are the positions of the wire end gripping portion 54 that sends the end of the terminal-attached wire 10 toward the housing case mounting mechanism 70 and the positions.
  • the position of the terminal-attached electric wire 10 held by the electric wire end holding portion 54 will be described as a reference.
  • the housing case mounting mechanism 70 is a mechanism for mounting the housing case 32 to the terminal 20 at the end of the terminal-attached electric wire 10, and includes a set portion 72, a set portion support portion 76, and a housing case pushing mechanism 80.
  • the storage case 32 is pushed toward the set portion 72 by the storage case push-in mechanism 80 with the terminal 20 set in the set portion 72.
  • the set portion 72 is retracted while leaving the terminal 20 in a predetermined position, and the terminal 20 set in the set portion 72 is accommodated in the accommodating case 32 in an almost as-is posture.
  • the storage case mounting mechanism 70 further includes a side guide mechanism 90 and a terminal pressing mechanism 94.
  • the side guide mechanism 90 guides the terminal 20 when the terminal 20 is set on the setting portion 72.
  • the terminal pressing mechanism 94 presses the terminal 20 so that the terminal 20 is reliably set by the setting unit 72.
  • the set unit 72 is provided at a position below the two terminals 20 at the end of the terminal-attached electric wire 10 sent by the electric wire end conveyance mechanism 52.
  • the set part 72 is supported so as to be movable between a set position and a retracted position, and is configured such that the terminal 20 can be set from the side opposite to the retracted position.
  • the set part 72 includes a set bottom part 73, a pair of side wall parts 74, and a partition part 75.
  • the set bottom 73 is formed in a square plate shape.
  • the longitudinal dimension of the set bottom 73 is set to be equal to or larger than the length of the terminal 20, and the width dimension of the set bottom 73 is obtained by multiplying the width of the terminal 20 by the number of terminals 20 accommodated. It is set larger than the dimension.
  • the shape and size of the set bottom 73 in plan view are preferably the same as the shape and size of the bottom 33 of the housing case 32.
  • Side wall portions 74 project from both side portions of the set bottom portion 73 so as to protrude to one main surface side (upper side) of the set bottom portion 73.
  • a partition portion 75 projects from the center portion in the width direction of the set bottom portion 73 so as to protrude toward the one main surface side of the set bottom portion 73.
  • the height dimension of the pair of side wall parts 74 and the partition part 75 is set to a dimension that can support the terminal 20 at a fixed position.
  • the terminal 20 can be accommodated in one main surface side of the set bottom portion 73, between the one side wall portion 74 and the partition portion 75, and between the other side wall portion 74 and the partition portion 75.
  • a terminal set recess 72a is formed.
  • the two terminal set recesses 72a are opened on the upper side opposite to the set bottom 73, and the two terminals 20 are accommodated in parallel in the two terminal set recesses 72a through the upper openings.
  • the setting posture and interval of the terminal 20 in the length dimension 2a of the two terminals 20 are set to be the same as the setting posture and interval of the terminal 20 in the housing case 32.
  • the inner surfaces of the pair of side wall portions 74 are gradually inclined outward toward the upper side.
  • the upper portion of the partition portion 75 is gradually formed thinner toward the upper side.
  • a recess 72 h is formed in the intermediate portion in the extending direction of the pair of side wall portions 74 and the intermediate portion in the extending direction of the partition portion 75.
  • the set portion 72 is recessed downward from above at a portion where the concave portion 72h is formed.
  • the set part 72 is supported by a set part support part 76 so as to be movable between a set position and a retracted position. More specifically, the set part support part 76 is formed in a rectangular parallelepiped box shape.
  • the internal space of the set portion support portion 76 is formed as a rectangular parallelepiped space having a size that can be moved while keeping the set bottom portion 73 in a horizontal posture.
  • an opening 76h is formed in which the pair of side wall portions 74 and the partition portion 75 can be disposed so as to be able to advance and retreat.
  • a horizontally long plate-like terminal support portion 77 is provided so as to pass through both sides of the recess portion 72h.
  • the terminal support portion 77 supports the terminal 20 supported by the terminal setting recess 72a from the retracted position side in a state where the set portion 72 is located at the set position.
  • the two terminals 20 set in parallel in the two terminal setting recesses 72a are supported from the retracted position side while being kept in parallel.
  • the set portion 72 is supported so that the set bottom portion 73 can move forward and backward relative to the set portion support portion 76 so that the set bottom portion 73 is moved between a position close to the upper side in the set portion support portion 76 and a position close to the bottom side.
  • the pair of side wall parts 74 and the partition part 75 protrude above the set part support part 76 through the opening 76h.
  • the terminal support 77 is positioned above the set bottom 73 through the recess 72h.
  • the terminal support part 77 is located above or above the recess 72h.
  • the two terminals 20 can be set in the terminal set recessed part 72a from the upper side opposite to the retracted position. In this state, the two terminals 20 are on the terminal support 77.
  • the wire end gripping portion 54 of the wire end transport mechanism 52 grips the end portion of the terminal-attached electric wire 10
  • the wire end gripping portion 54 is lowered by driving the wire end lifting / lowering drive portion 57.
  • the terminal 20 of the terminal-attached electric wire 10 moves toward the terminal setting recess 72a of the setting portion 72 located at the setting position.
  • the electric wire edge part holding part 54 and the electric wire edge part raising / lowering drive part 57 of the electric wire edge part conveyance mechanism 52 function as an electric wire moving mechanism with a terminal.
  • the housing case mounting mechanism 70 is provided with a biasing portion 78 that biases the set portion 72 toward the set position.
  • a biasing portion 78 that biases the set portion 72 toward the set position.
  • a coil spring is disposed in a compressed state between the set bottom portion 73 and the bottom portion of the set portion support portion 76 in the set portion support portion 76.
  • the urging portion 78 may be a leaf spring or the like.
  • the storage case pushing mechanism 80 moves the storage case 32 from the side opposite to the retracted position toward the set portion 72, and moves the set portion 72 to the retracted position, while moving the terminal 20 supported by the terminal support portion 77. It is configured to be accommodated in the accommodation case 32.
  • the storage case push-in mechanism 80 includes a storage case holding portion 82, a lift drive portion 83, and an advance / retreat drive portion 84.
  • the storage case holding part 82 is configured to hold the storage case 32 in a detachable manner.
  • the storage case holding portion 82 is configured to be able to suck and hold the outward surface of the bottom 33 of the storage case 32 by sucking air.
  • the storage case holding section may be configured to detachably hold the storage case with an electromagnetic chuck using a solenoid or a chuck using an air cylinder.
  • the elevating drive unit 83 is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and a storage case holding unit 82 is supported at the lower end of the elevating drive unit 83.
  • the lifting / lowering drive unit 83 drives the storage case holding unit 82 to move up and down.
  • the advancing / retreating drive unit 84 is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and the storage case holding unit 82 is moved back and forth along the axial direction of the end portion of the terminal-attached electric wire 10 together with the elevating drive unit 83. Move.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • a case feeding mechanism for supplying the housing cases 32 side by side is provided at the end on the opposite side of the set portion 72 with respect to the advance / retreat drive portion 84, and is driven by the advance / retreat drive portion 84.
  • the storage case holding section 82 holds the storage case holding section 82 in a state where the storage case holding section 82 is moved to the back end of the advance / retreat drive section 84.
  • the elevating drive unit 83 lowers the storage case holding part 82 in a state where the storage case holding part 82 is moved to the front side of the advance / retreat drive part 84 and above the set part 72 by driving the advance / retreat drive part 84. Let Then, the storage case 32 pushes the set part 72 toward the retracted position.
  • the set portion 72 sinks into the retracted position while the terminal 20 remains on the terminal support portion 77.
  • the accommodation case 32 moves so as to be pushed in place of the set portion 72 where the set portion 72 was present, and the terminal 20 on the terminal support portion 77 is moved to the terminal accommodation recess 32a of the accommodation case 32. Housed inside.
  • the side guide mechanism 90 is provided on both sides of the set part 72.
  • the side guide mechanism 90 includes a pair of set guide portions 90a and a pair of width direction drive portions 90b.
  • the width direction drive unit 90b is configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and reciprocates the set guide unit 90a toward the inside and outside of the side of the set unit 72.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor
  • the set guide portion 90a is supported in a posture facing the set portion 72 side from the width direction driving portion 90b.
  • the edge part which faces the set part 72 side among the set guide parts 90a is formed in the guide part 90g which is directed outward sequentially toward the vertical direction (gravity direction) upper side orthogonal to the axial direction of the end part of the terminal-attached electric wire 10. Has been.
  • the tip portions of the pair of set guide portions 90a are disposed in the terminal set recesses 72a of the set portion 72 located at the set position.
  • the guide portion 90g is disposed so as to sequentially go outward toward the upper side above the terminal set recess 72a.
  • the terminal 20 is guided toward the terminal setting recess 72a of the setting portion 72 by the guide portion 90g.
  • the terminal pressing mechanism 94 is configured to be able to push the terminal 20 toward the back of the terminal setting recess 72a of the setting portion 72 located at the setting position.
  • the terminal presser mechanism 94 includes a set presser piece 94a and an elevating drive unit 94b.
  • the elevating drive unit 94b is constituted by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and drives the set presser piece 94a up and down above the set unit 72.
  • the elevating drive unit 94b is configured to be able to advance and retreat by the advance / retreat drive unit 84, so that the housing case holding unit 82 and the set presser piece 94a can selectively move to a position above the set unit 72. It has become.
  • the set presser piece 94a is supported in a posture facing downward from the lift drive unit 94b.
  • the downward edge of the set presser piece 94a is formed at the edge along the horizontal direction perpendicular to the axial direction of the end of the terminal-attached electric wire 10, and can be arranged facing the set part 72. It is configured.
  • the two terminals 20 are pushed into the set portion 72. It has become.
  • the set presser piece 94a is moved downward in a state in which the set presser piece 94a is disposed in a position different from the set guide portion 90a in the terminal set concave portion 72a of the set portion 72 in the extending direction of the terminal 20.
  • the terminal 20 can be pushed in without interfering with the set guide portion 90a.
  • the set portion 72 exists at the set position by the biasing force of the biasing portion 78.
  • the set guide portion 90 a is present at a position partially entering the recess 72 h of the set portion 72.
  • the storage case holding part 82 and the set presser piece 94a are present at positions away from the set part 72 upward.
  • the wire end gripping portion 54 of the wire end transport mechanism 52 gripping the end of the terminal-attached electric wire 10
  • the wire end gripping portion 54 is lowered by driving the wire end lifting / lowering drive portion 57.
  • the two terminals 20 of the electric wire with terminal 10 move toward the terminal set recess 72a of the set portion 72 located at the set position in a parallel state, and the pair of terminals 20 are in a parallel state as shown in FIG.
  • the terminal 20 may be in a state of floating from the bottom of the terminal set recess 72a.
  • the set presser piece 94 a is moved above the set part 72 by the advance / retreat drive unit 84, and the set presser piece 94 a is lowered by driving the elevating drive unit 94 b. Then, the set presser piece 94a pushes the two terminals 20 toward the set unit 72 in a parallel state. Thereby, the two terminals 20 are set in the back of the terminal setting recessed part 72a.
  • the set presser piece 94 a is lifted by driving the elevating drive unit 94 b, and the pair of set guide portions 90 a is separated outward from the set unit 72 by driving the width direction driving unit 90 b. Move to position.
  • the storage case holding part 82 is moved to a position above the set part 72 by the advance / retreat drive part 84, and the storage case 32 held by the storage case holding part 82 is moved above the set part 72. To be located. In this state, the opening of the terminal set recess 72a of the housing case 32 is downward.
  • the storage case holding portion 82 is lowered by driving the elevating drive portion 83.
  • the pair of side wall parts 34 a and the partition part 34 b of the housing case 32 press the pair of side wall parts 74 and the partition part 75 of the set part 72.
  • the set part 72 sinks from the set position to the retracted position against the urging force of the urging part 78.
  • the two terminals 20 are kept in parallel by the set part 72.
  • the housing case 32 moves downward, and the two terminals 20 enter the two terminal housing recesses 32a of the housing case 32 while being kept in parallel. For this reason, the two terminals 20 are accommodated in the two terminal accommodating recesses 32a of the accommodating case 32 in a predetermined parallel state.
  • the storage case holding portion 82 is raised by driving the elevating drive portion 83.
  • the wire end gripping portion 54 that grips the end of the terminal-attached electric wire 10 is raised.
  • the housing case 32 moves above the set portion 72 while the two terminals 20 are housed in the housing case 32.
  • the set part 72 is returned from the retracted position to the set position by the urging force of the urging part 78.
  • the holding case holding part 82 is released from being held by the holding case holding part 82, and the end of the terminal-attached electric wire 10 held by the electric wire end holding part 54 is moved to the next united case by the electric wire end carrying mechanism 52. It is sent to the mounting mechanism 100. Since the housing case 32 exists on the two terminals 20, if the end portion of the terminal-attached electric wire 10 is gripped and moved, the housing case 32 together with the two terminals 20 is moved to the next united case mounting mechanism 100. Move to. The end portion of the terminal-attached electric wire 10 may move in a state in which the terminal 20 is fitted in the housing case 32 and is difficult to remove.
  • FIG. 19 is a schematic perspective view showing the united case mounting mechanism 100
  • FIGS. 20 to 23 are explanatory views showing the operation of the united case mounting mechanism 100.
  • FIG. 20 to 23 show the positional relationship of each part when viewed along the axial direction of the end part of the terminal-attached electric wire 10.
  • the electric wire end portion conveyance mechanism 52 faces the united case attachment mechanism 100. send.
  • the positions of the wire end gripping portion 54 and the wire 11 are the positions of the wire end gripping portion 54 that sends the end of the terminal-attached electric wire 10 toward the united case mounting mechanism 100 and the positions.
  • the position of the terminal-attached electric wire 10 held by the electric wire end holding portion 54 will be described as a reference.
  • the united case mounting mechanism 100 is a mechanism for uniting the united case 36 with the housing case 32 while the terminal 20 is stored in the united case 32, and includes the unit case supporting part 102 and the uniting push-in mechanism 106. .
  • the housing case support portion 102 is configured to be able to support the housing case 32 attached to the terminal 20 at the end of the terminal-attached electric wire 10.
  • the storage case support 102 is disposed above the storage case 32 attached to the terminal 20 at the end of the terminal-attached electric wire 10 sent by the electric wire end transport mechanism 52.
  • the housing case support unit 102 includes a pair of case gripping units 103 and an opening / closing drive unit 104 that drives the pair of case gripping units 103 to approach and separate from each other.
  • the opening / closing drive unit 104 is configured by an electromagnetic chuck using a solenoid, a chuck using an air cylinder, or the like, and configured to be able to open and close the pair of case gripping units 103.
  • the pair of case gripping portions 103 are supported so as to be capable of opening and closing in a downward posture with respect to the opening and closing drive portion 104.
  • a holding recess 103 a that is recessed in an L shape is formed on the inward portion of the lower end portion of the case holding portion 103.
  • the accommodation case support 102 can be held between both sides of the pair of gripping recesses 103a facing inwardly facing each other.
  • the upward surface of the housing case 32, that is, the outward surface of the bottom 33 can be pressed by the downward surface of the pair of gripping recesses 103 a.
  • the housing case 32 attached to the terminal 20 can be supported.
  • the union pushing mechanism 106 is configured to push the union case 36 toward the housing case 32 from the opposite side of the housing case support portion 102 so that the union case 36 is combined with the housing case 32.
  • the uniting push-in mechanism 106 includes a united case holding unit 107 and a lift drive unit 108.
  • the united case holding unit 107 is configured to hold the united case 36 in a detachable manner.
  • the united case holding unit 107 is configured to suck and hold the outward surface of the ceiling part 37 of the united case 36 by sucking air.
  • the united case holding part may be configured to hold the housing case detachably by an electromagnetic chuck using a solenoid or a chuck using an air cylinder.
  • the elevating drive unit 108 is constituted by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and a combined case holding unit 107 is supported on the upper end of the elevating drive unit 108.
  • the raising / lowering driving unit 108 drives the united case holding unit 107 to move up and down below the housing case support unit 102.
  • the united case 36 is sequentially supplied to the united case holding unit 107.
  • the united case 36 may be supplied by a supply mechanism including a gripping unit that grips the united case 36 and a drive unit configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor.
  • a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor.
  • the united case holding unit 107 and the lifting / lowering driving unit 108 are moved to the sequential supply position of the united case 36 by a driving unit configured by a linear actuator such as an air cylinder, a hydraulic cylinder, or a linear motor, and the united case
  • maintain 36 may be sufficient.
  • the pair of case gripping portions 103 are in an open state, and the united case holding portion 107 is in a lowered state.
  • the wire end gripping portion 54 of the wire end transport mechanism 52 moves toward the pair of case gripping portions 103 and grips the end of the terminal-attached electric wire 10 and is attached to the terminal 20 at the end.
  • the storage case 32 thus moved is moved to the pair of case gripping portions 103.
  • the united case holding unit 107 is raised by driving the elevating drive unit 108, the united case 36 held by the united case holding unit 107 is pushed toward the housing case 32. Thereby, the united case 36 is united with the storage case 32 in a state where the terminal 20 is stored in the storage case 32.
  • the pair of case gripping portions 103 are opened by driving the opening / closing driving portion 104 and the united case holding portion 107 is lowered by driving the lifting / lowering driving portion 108.
  • the combined housing case 32 and merged case 36 are attached to the terminal 20.
  • the wire end part conveyance mechanism 52 sends this to the next step.
  • the united case mounting mechanism 100 may be omitted.
  • the electric wire end portion conveying mechanism 52 as the electric wire moving mechanism with terminal is used.
  • the terminal 20 of the terminal-attached electric wire 10 is set in the terminal set recess 72a of the set portion 72 located at the set position from the side opposite to the retracted position, and the storage case pushing mechanism 80 moves the storage case 32 to the retracted position. It is moved from the opposite side toward the set part 72.
  • the terminal 20 supported on the terminal support part 77 can be accommodated in the terminal accommodating recess 32 a of the accommodating case 32 while the set part 72 is pushed and moved to the retracted position by the accommodating case 32.
  • the storage case 32 can be easily and automatically attached to the terminal 20 of the terminal-attached electric wire 10.
  • the terminal 20 is accommodated in the terminal set recess 72a, and when the accommodating case 32 is moved, the set part 72 moves to the retracted position, and the terminal 20 supported on the terminal support part 77 is the terminal. It is detached from the set recess 72a and accommodated in the accommodating case 32. For this reason, the terminal 20 can be housed in the housing case 32 with the correct posture as much as possible without tilting.
  • a plurality (two in this case) of terminals 20 can be accommodated in the accommodation case 32 in a parallel state as accurately as possible.
  • housing case 32 may be mounted on one terminal or three or more terminals.
  • the terminal 20 is more reliably connected to the terminal set recessed part 72a. Can be set.
  • a storage case support portion 102 that supports the storage case 32
  • a combination push-in mechanism 106 that combines the storage case 32 by pressing the combined case 36 toward the storage case 32 from the opposite side of the storage case support portion 102.
  • a united case mounting mechanism 100 is provided. Therefore, when the dielectric case 30 has a combined structure of the storage case 32 and the combined case 36, after the terminal 20 is stored in the storage case 32, the combined case 36 is easily placed in the storage case 32 that stores the terminal 20. Can be combined.
  • the terminal 20 is further provided with the posture alignment mechanism 60 that aligns the posture with respect to the electric wire 11 by sandwiching the terminal 20 from the periphery before the terminal 20 is set in the terminal setting concave portion 72a, the terminal 20 is more reliably set in the terminal setting concave portion 72a. can do.

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Manufacturing Of Electrical Connectors (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Abstract

Le but de la présente invention est de permettre de monter facilement un boîtier sur une borne d'un fil électrique équipé d'une borne. Ce dispositif de montage d'un boîtier sur une borne d'un fil électrique équipé d'une borne comprend : une section de fixation (72) qui est supportée de façon mobile entre une position de fixation et une position rétractée et qui comprend un évidement de fixation de borne (72a) dans laquelle il est possible de fixer une borne (20); une section de sollicitation pour solliciter la section de fixation (72) vers la position de fixation; une section de support de borne (77) qui supporte, à partir du côté de position rétractée, la borne (20) supportée par l'évidement de fixation de borne (72a) lorsque la section de fixation (72) est positionnée dans la position de fixation; un mécanisme de déplacement de fil électrique équipé d'une borne (par exemple, un mécanisme de transport de borne de fil électrique) qui amène la borne (20) à se déplacer vers l'évidement de fixation de borne (72a); et un mécanisme d'enfoncement de boîtier de logement (80) qui déplace un boîtier de logement (32) vers la section de fixation (72) et amène la borne (20) supportée par la section de support de borne (77) à loger à l'intérieur du boîtier de logement (32) tout en déplaçant la section de fixation (72) vers la position rétractée.
PCT/JP2018/014898 2017-04-25 2018-04-09 Dispositif et procédé pour monter un boîtier sur une borne de fil électrique équipé d'une borne Ceased WO2018198741A1 (fr)

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JP2017085875A JP6729477B2 (ja) 2017-04-25 2017-04-25 端子付電線の端子へのケース装着装置及び端子付電線の端子へのケース装着方法
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Publication number Priority date Publication date Assignee Title
EP3739698A1 (fr) * 2019-05-14 2020-11-18 Cemra Procédé et dispositif d'insertion de cosses montées en extrémité de fils torsadés entre eux
DE102022101417A1 (de) 2022-01-21 2023-07-27 Aptiv Technologies Limited Verfahren zum Vorkonfektionieren

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JP6840709B2 (ja) * 2018-10-24 2021-03-10 矢崎総業株式会社 芯線変形治具及び芯線変形方法
CN119108875B (zh) * 2024-09-09 2025-10-03 江苏富联通讯技术股份有限公司 一种5g通讯模组通信端子插接治具及其使用方法

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JPS60102257A (ja) * 1983-11-09 1985-06-06 Honda Motor Co Ltd 高圧凝固鋳造装置
JP2003508880A (ja) * 1999-08-24 2003-03-04 ヘイコ,インコーポレイテッド カシメ部を覆ったプレモールド

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JPS60102257U (ja) * 1983-12-15 1985-07-12 トヨタ自動車株式会社 被塗装物の保持装置
JP3808850B2 (ja) * 2003-07-22 2006-08-16 日本圧着端子製造株式会社 同軸ケーブル用コネクタの結線装置
CN204905640U (zh) * 2015-08-11 2015-12-23 广东美嘉欣玩具有限公司 一种冲压电池触片的装置

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Publication number Priority date Publication date Assignee Title
JPS60102257A (ja) * 1983-11-09 1985-06-06 Honda Motor Co Ltd 高圧凝固鋳造装置
JP2003508880A (ja) * 1999-08-24 2003-03-04 ヘイコ,インコーポレイテッド カシメ部を覆ったプレモールド

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3739698A1 (fr) * 2019-05-14 2020-11-18 Cemra Procédé et dispositif d'insertion de cosses montées en extrémité de fils torsadés entre eux
DE102022101417A1 (de) 2022-01-21 2023-07-27 Aptiv Technologies Limited Verfahren zum Vorkonfektionieren

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JP2018185917A (ja) 2018-11-22
JP6729477B2 (ja) 2020-07-22
CN110546829B (zh) 2021-02-19

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