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WO2020052012A1 - Procédé de construction pour machine à extraction continue ayant un dispositif fournissant en continu un support de toit provisoire - Google Patents

Procédé de construction pour machine à extraction continue ayant un dispositif fournissant en continu un support de toit provisoire Download PDF

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Publication number
WO2020052012A1
WO2020052012A1 PCT/CN2018/112378 CN2018112378W WO2020052012A1 WO 2020052012 A1 WO2020052012 A1 WO 2020052012A1 CN 2018112378 W CN2018112378 W CN 2018112378W WO 2020052012 A1 WO2020052012 A1 WO 2020052012A1
Authority
WO
WIPO (PCT)
Prior art keywords
continuous
roof
height adjustment
roadway
mining machine
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/CN2018/112378
Other languages
English (en)
Chinese (zh)
Inventor
张农
谢正正
魏群
周俊瑶
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.)
China University of Mining and Technology CUMT
China University of Mining and Technology Beijing CUMTB
Original Assignee
China University of Mining and Technology CUMT
China University of Mining and Technology Beijing CUMTB
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 China University of Mining and Technology CUMT, China University of Mining and Technology Beijing CUMTB filed Critical China University of Mining and Technology CUMT
Priority to US17/257,239 priority Critical patent/US20210270134A1/en
Publication of WO2020052012A1 publication Critical patent/WO2020052012A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C35/00Details of, or accessories for, machines for slitting or completely freeing the mineral from the seam, not provided for in groups E21C25/00 - E21C33/00, E21C37/00 or E21C39/00
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/08Advancing mechanisms
    • E21D23/081Advancing mechanisms forming parts of the roof supports
    • E21D23/087Advancing mechanisms forming parts of the roof supports acting directly on the walls of the seam
    • E21D23/088Advancing mechanisms forming parts of the roof supports acting directly on the walls of the seam by means of wheels, rollers, caterpillars, belts or worm screws
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C25/00Cutting machines, i.e. for making slits approximately parallel or perpendicular to the seam
    • E21C25/06Machines slitting solely by one or more cutting rods or cutting drums which rotate, move through the seam, and may or may not reciprocate
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C25/00Cutting machines, i.e. for making slits approximately parallel or perpendicular to the seam
    • E21C25/06Machines slitting solely by one or more cutting rods or cutting drums which rotate, move through the seam, and may or may not reciprocate
    • E21C25/10Rods; Drums
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C25/00Cutting machines, i.e. for making slits approximately parallel or perpendicular to the seam
    • E21C25/68Machines for making slits combined with equipment for removing, e.g. by loading, material won by other means
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C27/00Machines which completely free the mineral from the seam
    • E21C27/20Mineral freed by means not involving slitting
    • E21C27/24Mineral freed by means not involving slitting by milling means acting on the full working face, i.e. the rotary axis of the tool carrier being substantially parallel to the working face
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C35/00Details of, or accessories for, machines for slitting or completely freeing the mineral from the seam, not provided for in groups E21C25/00 - E21C33/00, E21C37/00 or E21C39/00
    • E21C35/302Measuring, signaling or indicating specially adapted for machines for slitting or completely freeing the mineral
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/006Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor provided with essential hydraulic devices
    • E21D23/0073Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor provided with essential hydraulic devices with advancing shifting devices connected therewith
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/04Structural features of the supporting construction, e.g. linking members between adjacent frames or sets of props; Means for counteracting lateral sliding on inclined floor
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/04Structural features of the supporting construction, e.g. linking members between adjacent frames or sets of props; Means for counteracting lateral sliding on inclined floor
    • E21D23/06Special mine caps or special tops of pit-props for permitting step-by-step movement
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/12Control, e.g. using remote control
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/0004Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor along the working face
    • E21D23/0017Pile type supports
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D23/00Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor
    • E21D23/0052Mine roof supports for step- by- step movement, e.g. in combination with provisions for shifting of conveyors, mining machines, or guides therefor with advancing shifting devices connected therewith

Definitions

  • the invention relates to a continuous mining machine, in particular to a construction method of a continuous mining machine having a continuous temporary roof protection device.
  • Bolt support has many advantages such as safety, flexibility, and high efficiency. It is a support method widely used in coal mine roadways in China. With the continuous improvement of the level of mechanization, automation, and intelligence, the efficiency of comprehensive mining has gradually increased. In contrast, it is affected by the current supporting technology, etc., and the speed of the tunneling has increased slowly, which has caused the mining imbalance in coal production. Under the existing conditions of bolt support technology, increasing the speed of excavation is of great significance for alleviating the contradiction of mining replacement and improving the overall production efficiency of the mine.
  • Cantilever type roadheader supporting single-type anchor drilling rig and continuous mining machine with anchor drilling rig are the two most common types of tunneling supporting technology. Under the conditions of the conventional supporting technology of the single cantilever type drilling machine and the single-type anchor drilling rig, the cutting machine is required to stop and retreat after cutting a certain amount of footage. The single-bored drilling rig enters the working surface to support the operation; Under the conditions of the anchor drilling vehicle boring process, the continuous mining machine needs to exit or go to another roadway after cutting a certain footage, and the anchor drilling vehicle enters the working surface to carry out the support operation.
  • An important feature of the above two supporting technologies is that the anchor support operation is located at the front of the cutting equipment, which results in that the cutting operation and the anchor support cannot be performed in parallel.
  • the invention aims to solve the problem that the anchor support operation must be carried out in the front of the tunneling equipment, thereby causing the anchor support operation and the cutting operation to be unable to be carried out in parallel to affect the tunneling efficiency, and provides a connection with a continuous temporary roof protection device. Construction method of mining machine.
  • a construction method of a continuous miner with a continuous temporary roof protection device including a continuous miner.
  • the continuous miner includes a host unit, a loading device, a horizontal-axis cutting drum, a transport device, and a crawler walking device.
  • the transverse-axis cutting drum is hinged to the front of the main unit, the front of the transport device is connected to the loading device, and the transport device is fixedly connected to the main unit.
  • the crawler running device is hydraulically driven and fixed to the main unit.
  • the continuous miner also includes a continuous temporary roof protection device, the loading device and the horizontal axis cutting drum are located in front of the continuous temporary roof protection device, the continuous temporary roof protection device includes rolling A protective roof, the rolling protective roof is fixed on the main unit of the continuous mining machine through a front pillar structure and a rear pillar structure;
  • the rolling top cover includes a frame body, a closed track ring, a first roller, a second roller, and an elastic supporting structure.
  • the first roller and the second roller are hinged to two ends of the frame, respectively, and the closure
  • a track ring is sleeved on the first roller and the second roller and is in rolling connection with the first roller and the second roller.
  • a plurality of guide cylinders are fixed on the inner side of the frame body, and the guide cylinders are in contact with the elasticity. Support structure connection, the elastic support structure and the closed track ring rolling connection;
  • the front pillar structure includes a front square inner sleeve, a front square outer sleeve, and a front height adjustment oil cylinder.
  • the bottom of the front square outer sleeve is fixed to the main unit of the continuous mining machine by bolts.
  • the front square inner sleeve The cylinder is embedded in the front square outer sleeve, the bottom of the cylinder body of the front height adjustment cylinder is hinged with the front square outer sleeve, and the piston rod of the front height adjustment cylinder and the front square inner sleeve are hinged. Hinged, the upper end of the front square inner sleeve is hinged with the frame body;
  • the rear pillar structure includes a rear square inner sleeve, a rear square outer sleeve, and a rear height adjustment cylinder.
  • the bottom of the rear square outer sleeve is fixed to the main unit of the continuous mining machine by bolts, and the rear square inner sleeve
  • the cylinder is embedded in the rear square outer sleeve, the bottom of the cylinder body of the rear height adjustment cylinder is hinged with the rear square outer sleeve, and the piston rod of the rear height adjustment cylinder and the rear square inner sleeve are hinged. Hinged, the waist-shaped hole structure at the upper end of the rear square inner sleeve and the frame body are connected slidingly and rotationally through a pin;
  • An accumulator is connected to the oil inlet bypass of the rodless cavity of the front height adjustment cylinder and the oil inlet bypass of the rodless cavity of the rear height adjustment cylinder, and two oil inlets of the front height adjustment cylinder
  • a directional valve is connected through a hydraulic lock, and two oil inlets of the rear height adjustment cylinder are connected to the directional valve through another hydraulic lock.
  • a pressure gauge is provided between the directional valve and the hydraulic lock. And relief valves;
  • the horizontal axis cutting drum is adjustable in length and its maximum length is the same as the width WO of the construction roadway, and the total width of the loading device is smaller than the width WO of the construction roadway;
  • the construction method includes the following steps:
  • step b calculate the pressure Pc of the front height adjustment cylinder and the rear height adjustment cylinder according to the following formulas, the formula is:
  • R is the cylinder diameter of the front height adjustment cylinder or the rear height adjustment cylinder
  • L is the length of the contact surface between the rolling top guard and the roof
  • WO is the width of the construction roadway
  • step c According to the pressure result calculated in step c, perform pressure setting of the front height adjustment cylinder and the rear height adjustment cylinder, that is, with the assistance of a pressure gauge, adjust the overflow pressure value of the relief valve to the pressure value calculated in step c;
  • the horizontal axis cutting drum of the mining machine cuts the coal, and the loading device shovels the coal rock cut by the horizontal axis cutting drum and transports the coal rock to the rear through the transportation device;
  • the continuous mining machine moves forward the corresponding cutting distance by a crawler walking device, and the rolling top protection of the continuous temporary roof protection device continues to support the roof of the construction roadway;
  • the continuous mining machine will continue to cut the next cycle of coal.
  • the workers will use the anchor drilling rig to perform anchor support behind the continuous mining machine;
  • step b after cutting the preset distance, that is, re-determine the support strength Pr of the continuous temporary roof protection device according to the rock mass of the roadway to be constructed, and the continuous mining machine will move forward along the preset roadway. Until the tunneling work is completed.
  • the total width of the loading device is 200 mm smaller than the width WO of the construction roadway.
  • the step b includes:
  • the support strength of the continuous temporary roof protection device Pr 0.02MPa; when the roadway roof The qualitative characteristics of the hardness and integrity of the rock mass are hard rock and the rock mass is more complete or the qualitative feature is hard rock and the rock mass is intact, and the rock mass quality index BQ is 451 to 550.
  • Support strength Pr 0.05MPa; when the qualitative characteristics of the hardness and integrity of the roof rock mass of the roadway are hard rock and the rock mass is broken, hard rock and the rock mass is complete or soft rock and the rock mass is complete, and the rock
  • the preset distance in step i is 50m.
  • the elastic supporting structure includes a supporting roller, a fork frame and a butterfly spring group, the supporting roller is in rolling connection with the closed track ring, and the supporting roller is connected with all
  • the fork-shaped frame is hinged, a lower limit cylinder is provided at the lower portion of the fork-shaped frame, a central cylinder is provided at the center of the limit cylinder, and the limit cylinder of the fork-shaped frame is sleeved on the outside of the guide cylinder and forks
  • a shape frame is in contact with the butterfly spring group, the central cylinder of the fork frame is inserted into the center hole of the butterfly spring group and the butterfly spring group is placed in the guide cylinder, and the closed track ring is Parts in contact with the roof of the roadway.
  • the closed track ring is hinged from a plurality of tracks.
  • the track includes a track shoe base, hard rubber, and a chain rail.
  • the hard rubber is fixed on the track shoe base.
  • the chain track is connected to the track shoe base, and each of the track tracks is hinged by a chain track.
  • the hard rubber is adhered to the track shoe base body by epoxy resin, and the hard rubber is fixed to the track shoe base body by hexagon socket screws.
  • the rolling top cover includes a tensioning mechanism, and the tensioning mechanism is used to push the first roller to realize the tension of the closed track ring.
  • the continuous temporary roof protection device can continuously maintain the roof. Therefore, the anchor drilling rig does not need to enter the front to stop the continuous mining machine and retreat continuously.
  • the temporary roof protection device performs effective temporary support for the roof after cutting, and performs anchor support operations at the rear of the cutting equipment, realizing parallel operations of cutting and support, and improving tunneling efficiency.
  • the construction method sets different support strengths according to the rigidity, integrity and quality indicators of the roof rock, and completes the effective support of the continuous temporary roof protection device to the roof to prevent the insufficient support strength from leading to the anchor rod of the subsequent bolt rig. Support operations cannot be performed effectively.
  • the rolling roof protection method of the construction method of the present invention can realize continuous support of the continuous mining machine to the exposed roof after cutting, preventing damage to the roof caused by repeated loading and unloading of the roof when the continuous mining machine is displaced, and anchor support.
  • the operation can be carried out at the rear of the continuous mining machine, creating conditions for parallel operation of cutting and support, high driving efficiency, and reducing the impact of anchor support on cutting.
  • the closed track ring of the present invention is in rolling contact with the elastic supporting structure, the first roller and the second roller.
  • the compression amounts of the butterfly spring groups of the plurality of elastic supporting structures are different, thereby enabling the closed track ring to achieve good contact with the uneven roadway roof, having a large contact surface with the roadway roof, and high safety.
  • pressure oil can be introduced into the rodless cavity of the front height adjustment cylinder and the rear height adjustment cylinder through the reversing valve.
  • the front height adjustment cylinder and the rear height adjustment cylinder drive the rolling top to load the top plate, and the reversing valve
  • the pressure oil in the accumulator causes the front height adjustment cylinder and the rear height adjustment cylinder to be loaded, thereby ensuring the continuous protection of the rolling top guard against the top plate. High efficiency reduces labor intensity.
  • FIG. 1 is a side view of the working state of the continuous mining machine in a driving tunnel of the present invention.
  • Fig. 2 is a plan view of a continuous miner according to the present invention.
  • Fig. 3 is a perspective view of a continuous miner according to the present invention.
  • FIG. 4 is a schematic structural diagram of a continuous temporary roof protecting device of the present invention.
  • FIG. 5 is a schematic structural diagram of a rolling top cover according to the present invention.
  • Fig. 6 is a partial cross-sectional view of a rolling top cover according to the present invention.
  • FIG. 7 is a schematic structural diagram of a fork-shaped frame of the present invention.
  • FIG. 8 is a schematic structural view of a track of the present invention.
  • FIG. 9 is a schematic structural diagram of a front pillar structure of the present invention.
  • FIG. 10 is a schematic structural diagram of a rear pillar structure of the present invention.
  • Fig. 11 is a schematic diagram of the hydraulic principle of the present invention.
  • FIGS. 1 to 11 The specific embodiments of the present invention are further described below with reference to FIGS. 1 to 11:
  • This embodiment aims to solve the problem that the anchor support operation must be carried out in front of the boring equipment, which causes the anchor support operation and the cutting operation to be unable to be carried out in parallel to affect the tunneling efficiency.
  • a continuous temporary roof protection device is provided Construction method of continuous mining machine. details as follows:
  • FIG. 1 the marks in FIG. 1 are specifically expressed as: roadway floor 1, driving face 2, unsupported roadway roof 3 after cutting, roadway roof 4 which has been supported, roof bolt 5, and continuous mining machine 6 .
  • a continuous mining machine construction method with a continuous temporary roof protection device includes a continuous mining machine 6, FIG. 2 is a top view of the continuous mining machine 6, see FIG. 2 and FIG. 3, the continuous mining machine 6 includes a main engine unit , Loading device 61, horizontal-axis cutting roller 62, transportation device 63, and crawler running device 64; the horizontal-axis cutting roller 62 is hinged to the front portion of the main frame of the main unit, and the front portion of the transportation device 63 is The loading device 61 is connected and the transportation device 63 is fixedly connected to the main frame of the main unit.
  • the crawler running device 64 is hydraulically driven and fixed at the bottom of the main frame.
  • the main frame includes a main frame, a hydraulic system, and an electronic control system.
  • the system and electronic control system are fixed on the main frame and used to drive the continuous mining machine.
  • the specific structure adopts the driving structure of the existing continuous mining machine.
  • the continuous mining machine 6 further includes a continuous temporary roof protection device.
  • the loading device 61 and the horizontal axis cutting drum 62 are located in front of the continuous temporary roof protection device.
  • Rolling protective top A which is fixed to the main frame of the main unit of the continuous mining machine 6 through a front pillar structure B and a rear pillar structure C; when the cutting operation of the horizontal axis cutting drum 62 is continuous, Temporary roof protection device can continuously maintain the roof to achieve effective temporary support for the exposed roof after cutting.
  • Anchor support work is performed at the rear of the cutting equipment. It is not necessary to make the drilling equipment enter the front of the anchor drilling rig. Stop and retreat to achieve parallel operation of cutting and support, thereby improving the efficiency of tunneling.
  • the rolling top cover A includes a frame body A2, a closed track ring A3, a first roller A10, a second roller A1, and an elastic supporting structure.
  • the first roller A10 and the second roller A1 They are hinged to the two ends of the frame A2, respectively, and can be rotated relative to the frame A2.
  • the closed track ring A3 is sleeved on the first roller A10 and the second roller A1 and is connected with the first roller A10 and The second roller A1 is rollingly connected. Referring to FIG.
  • a plurality of guide cylinders A8 are fixed to the inside of the frame A2 (the frame A2 includes a long hollow shell and is used to connect with the front pillar structure B and the rear pillar structure C
  • the triangular-shaped bracket, the left and right ends of the elongated hollow casing are hinged to the first roller A10 and the second roller A1, the top of the elongated hollow casing is an opening, and the guide tube A8 is fixed in the elongated hollow casing.
  • the front and back side walls of the long hollow shell are fixed with triangle-like brackets for connection with the front pillar structure B and the rear pillar structure C, and the specific structure is shown in FIG. 4).
  • the guide cylinder A8 is connected to the elastic supporting structure, and the elastic supporting structure is connected to the closing Connecting ring rolling track A3; A3 i.e. a closed loop with the elastic crawler Supporting structure, a first rolling contact between the roller and the second roller A10 A1.
  • the first roller A10 and the second roller A1 of the rolling protection top A can rotate freely.
  • the front pillar structure B includes a front square inner sleeve B1, a front square outer sleeve B2, and a front height adjustment cylinder B3.
  • the bottom of the front square outer sleeve B2 is fixed to the main unit of the continuous mining machine 6 by bolts.
  • one end of the front square inner sleeve B1 is embedded in the front square outer sleeve B2, the front square inner sleeve B1 can slide in the front square outer sleeve B2, and the front height is adjusted
  • the bottom of the cylinder block of the oil cylinder B3 is hinged to the front square outer sleeve B2 through a pin, and the top of the cylinder block of the front height adjustment cylinder B3 extends into the interior of the front square inner sleeve B1 and the front height adjustment cylinder B3
  • the piston rod is hinged to the front square inner sleeve B1 through a pin, and the upper end of the front square inner sleeve B1 is hinged to the frame A2 through a pin; the articulation method is shown in FIG.
  • the front height adjustment cylinder B3 It is a double-acting cylinder.
  • the lower oil port of the front height adjustment cylinder B3 has a rod cavity extending from the bottom of the front square outer sleeve B1 through a pipe and is connected with pressure oil.
  • the upper oil port of the front height adjustment cylinder B3 has a rod cavity through the pipe. Protrude from the bottom of the front square inner sleeve B2 and the bottom of the front square outer sleeve B1 in order, and connect Connected with pressure oil.
  • the rear pillar structure C includes a rear square inner sleeve C1, a rear square outer sleeve C2, and a rear height adjustment cylinder C3.
  • the bottom of the rear square outer sleeve C2 is fixed to the main unit of the continuous mining machine 6 by bolts.
  • one end of the rear square inner sleeve C1 is embedded in the rear square outer sleeve C2, and the rear square inner sleeve C1 can slide in the rear square outer sleeve C2.
  • the rear height is adjusted
  • the bottom of the cylinder body of the oil cylinder C3 is hinged to the rear square outer sleeve C2 through a pin, and the top of the cylinder body of the rear height adjustment oil cylinder C3 projects into the inside of the rear square inner sleeve C1 and the rear height adjustment oil cylinder.
  • the piston rod of C3 is hinged to the rear square inner sleeve C1 through a pin, and the waist-shaped hole structure C11 at the upper end of the rear square inner sleeve C1 and the frame A2 are slidingly and rotationally connected by a pin;
  • the The rear height adjustment cylinder C3 is a double-acting cylinder, and the waist-shaped hole structure C11 gives a certain reserved space for the absorption difference. Therefore, when the roof is uneven, the rolling top A can be inclined at an angle in the front and rear direction. Without destroying the front and rear pillar structures.
  • the inlet bypass of the rodless cavity of the front height adjustment cylinder B3 and the inlet bypass of the rodless cavity of the rear height adjustment cylinder C3 are both connected with an accumulator B6, and the front height adjustment
  • the two oil inlets of the oil cylinder B3 are connected to a directional valve B4 through a hydraulic lock B5, and the two oil inlets of the rear height adjustment oil cylinder C3 are connected to the directional valve B4 through another hydraulic lock B5;
  • Pressure oil is passed to the rodless cavity or rod cavity of the front height adjustment cylinder B3 through the reversing valve B4, and pressure oil is passed to the rodless cavity or rod cavity of the rear height adjustment cylinder C3, thereby realizing the front height adjustment cylinder B3 Load and unload with the rear height adjustment cylinder C3;
  • the directional valve B4 does not pass pressure oil to the front height adjustment cylinder B3 and the rear height adjustment cylinder C3, the pressure oil in the accumulator B6 makes the front height adjustment cylinder B3 and The rear height adjustment cylinder
  • the horizontal-axis cutting drum 62 is adjustable in length and its maximum length is the same as the width WO of the construction roadway.
  • the total width of the loading device 61 is 200 mm smaller than the width WO of the construction roadway.
  • the construction method includes the following steps:
  • R is the bore diameter of the front height adjustment cylinder B3 or the rear height adjustment cylinder C3
  • L is the length of the contact surface between the rolling top A and the roof
  • WO is the width of the construction roadway
  • the horizontal-axis cutting drum 62 of the continuous mining machine 6 performs coal cutting, and the loading device 61 shovels the coal and rock cut by the horizontal-axis cutting drum 62 and conveys the coal and rock to the rear through the transporting device 63;
  • the continuous mining machine 6 forwards the corresponding cutting distance by a track walking device 64, and the rolling top A of the continuous temporary roof protection device continues to support the roof of the construction roadway;
  • the continuous mining machine 6 continues to cut the next cycle of coal.
  • the workers use anchor bolt rigs to perform anchor support behind the continuous mining machine 6; thereby achieving simultaneous operation of coal cutting and support , Drastically increased the speed of tunneling;
  • step i Return to step b after cutting the preset distance, that is, re-determine the support strength Pr of the continuous temporary roof protection device according to the rock mass of the roadway to be constructed, and the continuous mining machine 6 will work forward along the direction of the preset roadway. Work until the tunneling work is completed.
  • the preset distance in step i is 50m.
  • the step b includes:
  • a continuous temporary roof protection device is provided on the continuous mining machine 6. While the continuous mining machine cuts, the continuous temporary roof protection device can continuously maintain the roof, so the anchor drilling rig does not need to enter the continuous mining machine 6.
  • the front part causes the continuous mining machine 6 to stop and retreat.
  • the continuous temporary roof protection device provides effective temporary support for the roof after cutting.
  • the anchor support operation is performed at the rear of the cutting equipment to achieve cutting and support. It is an important prerequisite for protecting parallel operations and improving tunneling efficiency.
  • the construction method used in this embodiment sets different support strengths according to the rigidity, integrity and quality indicators of the roof rock, and completes the effective support of the continuous temporary roof protection device to the roof, preventing the insufficient strength of the support from leading to the back anchor The anchor support operation of the rod rig cannot be performed effectively.
  • the elastic supporting structure includes a supporting roller A6, a fork frame A5, and a butterfly spring group A7, and the supporting roller A6 passes through the elongated hollow casing of the frame body A2.
  • the top part is thus in a rolling connection with the closed crawler ring A3, the support roller A6 is hinged to the fork frame A5, and the support roller A6 can rotate freely. See FIG.
  • the lower portion of the fork frame A5 is provided with a limited position A cylinder A11, a central cylinder A12 is provided at the center position of the limiting cylinder A11, a limiting cylinder A11 of the fork A5 is sleeved on the outside of the guiding cylinder A8, and a fork A5 and the butterfly spring group A7 contact, the central cylinder A12 of the fork frame A5 is inserted into the center hole of the butterfly spring group A7 and the butterfly spring group A7 is placed in the guide cylinder A8, and the closed crawler ring A3 is the same as The parts in contact with the roof of the roadway.
  • the closed track ring A3 is in rolling contact with the elastic supporting structure, the first roller A10, and the second roller A1.
  • a plurality of butterfly spring groups A7 of the elastic supporting structure have different compression amounts. , So that the closed track ring A3 can achieve good contact with the uneven roadway roof.
  • the closed track ring A3 is articulated by a plurality of tracks A4.
  • the track A4 includes a track shoe base A13, a hard rubber A14, and a chain rail A16, and the hard rubber A14 is fixed to the vehicle.
  • the chain rail A16 is connected to the track shoe base A13, and each of the track A4 is hinged through a chain track A16.
  • the hard rubber A14 is bonded to the track shoe base A13 by an epoxy resin, and the hard rubber A14 is fixed to the track shoe base A13 by an Allen screw A15.
  • the rolling top cover A includes a tensioning mechanism A9 (a tensioner commonly used in the prior art can be adopted), and the tensioning mechanism A9 is disposed in the long hollow shell of the frame A2
  • the tensioning mechanism A9 is used to push the first roller A10 to realize the tensioning of the closed track ring A3.
  • the first roller A10 is connected to one end of the frame body A2 through 360 degrees, and the first roller A10 is horizontally slidably connected to one end of the frame body A2. It has a certain horizontal sliding space, and provides a tensioning stroke for the tensioning mechanism A9. .
  • the front height adjusting cylinder B3 drives the front square inner sleeve B1 under the action of pressure oil.
  • the front square inner sleeve B1 pushes the frame A2 in the rolling top A, and the front square The sleeve B1 is hinged to the frame A2;
  • the rear height adjustment cylinder C3 drives the rear square inner sleeve C1 under the action of pressure oil, and the rear square inner sleeve C1 pushes the frame A2 in the rolling top A and the rear square inner sleeve
  • the cylinder C1 and the frame A2 are horizontally slidably connected and rotatable.
  • the first roller A10 and the second roller A1 articulated on the frame A2 are driven by the continuous mining machine 6 to drive the closed crawler ring A3 along the roadway roof.
  • the closed crawler ring A3 and the elastic supporting structure, the first roller A10, and the second roller The rolling contact between A1, the butterfly spring group A7 of the multiple elastic supporting structures has different compression amounts, so that the closed crawler ring A3 can achieve good contact with the uneven roadway roof; finally, temporary support for the roadway roof is realized.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Geology (AREA)
  • Mechanical Engineering (AREA)
  • Architecture (AREA)
  • Structural Engineering (AREA)
  • Earth Drilling (AREA)
  • Excavating Of Shafts Or Tunnels (AREA)

Abstract

La présente invention concerne un procédé de construction pour une machine à extraction continue ayant un dispositif fournissant en continu un support de toit provisoire. La présente invention comprend une machine à extraction continue (6). La machine à extraction continue (6) comprend en outre un dispositif fournissant en continu un support de toit provisoire. Le dispositif fournissant en continu un support de toit provisoire comprend une partie de protection de toit roulant (A). La partie de protection de toit roulant (A) est fixée sur un bâti de machine principal de la machine à extraction continue par l'intermédiaire d'une structure de colonne avant (B) et d'une structure de colonne arrière (C). Pendant que la machine à extraction continue procède à la découpe, le dispositif de protection de toit temporaire continu effectue un maintien de charge continu sur un toit (3). Après la découpe, le dispositif fournissant en continu un support de toit provisoire fournit un support temporaire efficace au toit, et effectue des opérations de support d'un boulon d'ancrage (5) sur une partie arrière d'un dispositif de coupe, ce qui permet d'obtenir des performances simultanées d'opérations de coupe et de support, et d'améliorer l'efficacité de forage en tunnel. Dans le procédé de construction, différentes intensités de support sont conçues en fonction des indicateurs de dureté, de complétude et de qualité de roche sur un toit de mine, de telle sorte que le dispositif fournissant en continu un support de toit provisoire est apte à supporter efficacement le toit.
PCT/CN2018/112378 2018-09-11 2018-10-29 Procédé de construction pour machine à extraction continue ayant un dispositif fournissant en continu un support de toit provisoire Ceased WO2020052012A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US17/257,239 US20210270134A1 (en) 2018-09-11 2018-10-29 Construction method for continuous mining machine having device continuously providing provisional roof support

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201811058806.0 2018-09-11
CN201811058806.0A CN109209373B (zh) 2018-09-11 2018-09-11 一种具有连续式临时护顶装置的连采机的施工方法

Publications (1)

Publication Number Publication Date
WO2020052012A1 true WO2020052012A1 (fr) 2020-03-19

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Country Link
US (1) US20210270134A1 (fr)
CN (1) CN109209373B (fr)
WO (1) WO2020052012A1 (fr)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112360455A (zh) * 2020-11-25 2021-02-12 刘刚 一种n形硬岩采矿机
CN115653650A (zh) * 2022-09-22 2023-01-31 孙传文 一种用于煤矿巷道的临时支护机构及其使用方法
CN115788525A (zh) * 2022-12-21 2023-03-14 西安科技大学 一种并联龙门滚动行走临时支护机器人
CN118375456A (zh) * 2024-06-25 2024-07-23 山东华荣矿用设备有限公司 煤矿开采掘进中的煤矿巷道临时加固支护装置
CN118640042A (zh) * 2024-08-15 2024-09-13 山西汾河焦煤股份有限公司回坡底煤矿 一种煤矿开采掘进中的巷道临时加固支护装置

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108952707A (zh) * 2018-09-11 2018-12-07 中国矿业大学 用于连采机的连续式临时护顶装置和连采机
CN110541705B (zh) * 2019-09-19 2024-02-13 辽宁工程技术大学 一种履带式掘支锚联合机组及其使用方法
CN111022065B (zh) * 2019-10-29 2021-07-30 天地科技股份有限公司 一种带压移动巷道快速掘进装备
CN111911154B (zh) * 2020-09-10 2022-06-24 西安科技大学 一种龙门式掘护锚机器人系统
CN114484167B (zh) * 2022-01-20 2023-08-18 呼少平 一种用于煤矿场的大型综采设备的稳固支撑结构
CN116446872B (zh) * 2023-03-22 2024-03-08 山东元征行机械设备有限公司 一种多自由度矿产开采装置
CN116498325B (zh) * 2023-06-28 2023-09-01 中铁九局集团有限公司 一种矿山露天剥采设备
CN118329499B (zh) * 2024-06-12 2024-09-10 烟台市森林资源监测保护服务中心(烟台沿海防护林省级自然保护区管理服务中心、烟台市林业科学研究所) 林业树木样品采集装置

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4000316A1 (de) * 1990-01-08 1991-07-11 Hemscheidt Maschf Hermann Rueck- und verstellvorrichtung fuer einen strebfoerderer
EP0891469B1 (fr) * 1996-04-02 1999-10-27 TAMROCK VOEST-ALPINE Bergtechnik Gesellschaft m.b.H. Machine de decoupage partiel
CN202645555U (zh) * 2012-04-06 2013-01-02 中铁隧道装备制造有限公司 全密封煤巷掘锚同步机
CN203669865U (zh) * 2013-11-29 2014-06-25 单淑花 恒支护掘锚机
CN106593437A (zh) * 2016-12-28 2017-04-26 中国煤炭科工集团太原研究院有限公司 掘、支、锚、钻一体式综掘机
CN108049868A (zh) * 2017-12-07 2018-05-18 辽宁工程技术大学 自身具有支护功能的连续采煤机及用该采煤机采煤的方法

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SU473836A1 (ru) * 1972-10-30 1975-06-14 Коммунарский Горнометаллургический Институт Секци гусеничной механизированной крепи
SU483530A1 (ru) * 1973-04-11 1975-09-05 Всесоюзный Научно-Исследовательский И Проектно-Конструкторский Угольный Институт Передвижна механизированна безразгрузочна крепь
CN202348308U (zh) * 2011-11-25 2012-07-25 刘混举 用于综采工作面的超前支护履带式液压支架
CN203996521U (zh) * 2014-08-09 2014-12-10 河北工业大学 一种被动自适应履带结构
CN105545337B (zh) * 2015-12-10 2017-10-20 太原科技大学 一种液压支架的立柱回路及控制方法

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4000316A1 (de) * 1990-01-08 1991-07-11 Hemscheidt Maschf Hermann Rueck- und verstellvorrichtung fuer einen strebfoerderer
EP0891469B1 (fr) * 1996-04-02 1999-10-27 TAMROCK VOEST-ALPINE Bergtechnik Gesellschaft m.b.H. Machine de decoupage partiel
CN202645555U (zh) * 2012-04-06 2013-01-02 中铁隧道装备制造有限公司 全密封煤巷掘锚同步机
CN203669865U (zh) * 2013-11-29 2014-06-25 单淑花 恒支护掘锚机
CN106593437A (zh) * 2016-12-28 2017-04-26 中国煤炭科工集团太原研究院有限公司 掘、支、锚、钻一体式综掘机
CN108049868A (zh) * 2017-12-07 2018-05-18 辽宁工程技术大学 自身具有支护功能的连续采煤机及用该采煤机采煤的方法

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112360455A (zh) * 2020-11-25 2021-02-12 刘刚 一种n形硬岩采矿机
CN115653650A (zh) * 2022-09-22 2023-01-31 孙传文 一种用于煤矿巷道的临时支护机构及其使用方法
CN115788525A (zh) * 2022-12-21 2023-03-14 西安科技大学 一种并联龙门滚动行走临时支护机器人
CN118375456A (zh) * 2024-06-25 2024-07-23 山东华荣矿用设备有限公司 煤矿开采掘进中的煤矿巷道临时加固支护装置
CN118640042A (zh) * 2024-08-15 2024-09-13 山西汾河焦煤股份有限公司回坡底煤矿 一种煤矿开采掘进中的巷道临时加固支护装置

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US20210270134A1 (en) 2021-09-02
CN109209373A (zh) 2019-01-15

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