WO2013118324A1 - Power line shifting device - Google Patents

Power line shifting device Download PDF

Info

Publication number
WO2013118324A1
WO2013118324A1 PCT/JP2012/069093 JP2012069093W WO2013118324A1 WO 2013118324 A1 WO2013118324 A1 WO 2013118324A1 JP 2012069093 W JP2012069093 W JP 2012069093W WO 2013118324 A1 WO2013118324 A1 WO 2013118324A1
Authority
WO
WIPO (PCT)
Prior art keywords
electric wire
pair
drive mechanism
gripping
unit
Prior art date
Application number
PCT/JP2012/069093
Other languages
French (fr)
Japanese (ja)
Inventor
純一 白川
幸一郎 後藤
Original Assignee
住友電装株式会社
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 住友電装株式会社 filed Critical 住友電装株式会社
Priority to CN201280069132.9A priority Critical patent/CN104094366B/en
Priority to KR1020147021134A priority patent/KR101647573B1/en
Priority to EP12868300.0A priority patent/EP2814042B1/en
Publication of WO2013118324A1 publication Critical patent/WO2013118324A1/en

Links

Images

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B13/00Apparatus or processes specially adapted for manufacturing conductors or cables
    • H01B13/012Apparatus or processes specially adapted for manufacturing conductors or cables for manufacturing wire harnesses
    • H01B13/01263Tying, wrapping, binding, lacing, strapping or sheathing harnesses
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B13/00Apparatus or processes specially adapted for manufacturing conductors or cables
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B13/00Apparatus or processes specially adapted for manufacturing conductors or cables
    • H01B13/0003Apparatus or processes specially adapted for manufacturing conductors or cables for feeding conductors or cables
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B13/00Apparatus or processes specially adapted for manufacturing conductors or cables
    • H01B13/0016Apparatus or processes specially adapted for manufacturing conductors or cables for heat treatment
    • H01B13/002Apparatus or processes specially adapted for manufacturing conductors or cables for heat treatment for heat extraction
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B13/00Apparatus or processes specially adapted for manufacturing conductors or cables
    • H01B13/012Apparatus or processes specially adapted for manufacturing conductors or cables for manufacturing wire harnesses
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B13/00Apparatus or processes specially adapted for manufacturing conductors or cables
    • H01B13/016Apparatus or processes specially adapted for manufacturing conductors or cables for manufacturing co-axial cables
    • 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
    • H01R43/04Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for forming connections by deformation, e.g. crimping tool
    • H01R43/048Crimping apparatus or processes
    • H01R43/052Crimping apparatus or processes with wire-feeding mechanism
    • 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
    • H01R43/28Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for wire processing before connecting to contact members, not provided for in groups H01R43/02 - H01R43/26
    • 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
    • H01R43/04Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for forming connections by deformation, e.g. crimping tool
    • H01R43/048Crimping apparatus or processes

Definitions

  • This invention relates to the technique of conveying an electric wire in the manufacturing process of a wire harness.
  • the wire harness is manufactured through, for example, a cutting / crimping process, a temporary binding process, and an assembly process.
  • the cutting and crimping step is a step of manufacturing the electric wire with a terminal by cutting the electric wire into a predetermined length and crimping the terminal to the end of the end.
  • the temporary binding step is a step of manufacturing temporary binding by binding a plurality of electric wires with terminals or inserting terminals of the plurality of electric wires with terminals into a connector.
  • an assembly process is a process of assembling a wire harness by assembling a plurality of electric wires with terminals and a plurality of temporary bundles into a predetermined wiring form.
  • the terminal-equipped wire transfer mechanism is equipped with a terminal from the terminal crimping device that crimps the terminal to the end of the wire that has been cut and cut, toward the wire holding bar on the wire holding bar transport device side that transports multiple wire holding bars. It is an apparatus for transferring electric wires. More specifically, the terminal-attached electric wire transfer mechanism unit includes a pair of transfer gripping units capable of gripping and releasing the end of the terminal-attached electric wire, and a transfer for moving and driving the pair of transfer gripping units. And a gripping part movement drive unit.
  • the transfer gripper movement drive unit has a pair of transfer grips provided on two base plates, and each base plate is supported by a horizontal guide so as to be horizontally movable between the wire holding bar and the wire receiving position.
  • the pair of transfer gripping portions are configured to be moved along the horizontal guide by different transfer drive portions.
  • an object of the present invention is to further improve the transfer efficiency of the electric wire with terminal.
  • the terminal-attached electric wires manufactured in the cutting and crimping apparatus and arranged at the receiving position are arranged at the set position, and a plurality of electric wire holding parts capable of holding the end portions of the electric wires with terminals are provided in a row.
  • An electric wire transfer device for transferring to an electric wire holding bar comprising a first transfer mechanism portion and a second transfer mechanism portion, wherein the first transfer mechanism portion includes both wire end portions of the electric wire with terminal.
  • Each of the pair of first gripping mechanism portions capable of gripping and releasing gripping, and the pair of first gripping mechanism portions, respectively, capable of receiving the terminal-attached electric wire disposed at the receiving position, or the terminal-attached electric wire A pair of firsts moved between an advance position that can be set to any one of the plurality of electric wire holding portions of the electric wire holding bar arranged at a set position and a first retracted position that is retracted from the advanced position.
  • Advance / retreat drive mechanism and the pair of first advance / retreat drive units Each having a pair of first reciprocating drive mechanism portions that move between the receiving position side region and the set position side region, and the second transfer mechanism portion includes a terminal-attached electric wire.
  • a pair of second gripping mechanism portions that can grip and release gripping ends of both wires, and the pair of second gripping mechanism portions, respectively, are the advance position and the first retracted position retracted from the advance position.
  • a pair of second reciprocating drive mechanisms that move between the receiving position side area and the set position side area in a moving area parallel to the moving area of the first reciprocating drive mechanism section, The second reciprocating drive mechanism portion is the first gripping mechanism portion. With at least one of which is moved to the first retracted position or the second retracted position of the fine the second gripping mechanism unit, thereby Surechigawa and the first advancing drive mechanism the second reciprocating drive mechanism.
  • a 2nd aspect is an electric wire transfer apparatus which concerns on a 1st aspect, Comprising: A said 1st reciprocating drive mechanism part extends the said 1st advance / retreat drive mechanism part above the said receiving position and the said setting position.
  • the second reciprocating drive mechanism is configured to move in the first movement region, and the second reciprocating drive mechanism moves in the second movement region extending in parallel to the side of the first movement region.
  • the second advancing / retreating drive mechanism unit causes the second gripping mechanism unit to move the second gripping mechanism unit diagonally above the advancing position in the second moving region from the advancing position in the first moving region. 2. Move to a retracted position on a route including a straight route that goes diagonally upward.
  • a 3rd aspect is an electric wire transfer apparatus which concerns on a 2nd aspect, Comprising:
  • the said 2nd advance / retreat drive mechanism part is a delivery raising / lowering drive part which moves the said 2nd holding
  • an indirect elevating drive unit that moves up and down obliquely between a lowered position in the first moving region and an elevated position obliquely above the lowered position in the second moving region.
  • a 4th aspect is an electric wire transfer device concerning the 3rd aspect, and the 2nd above-mentioned grasping mechanism part is in the state where the delivery raising / lowering drive part was moved to the lowered position by the indirect raising / lowering drive part, It is set so that it can pass under the first gripping mechanism portion moved to the first retracted position.
  • a fifth aspect is an electric wire transfer apparatus according to any one of the first to fourth aspects, wherein the first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit are the first advance / retreat drive mechanism unit. And the second advancing / retreating drive mechanism are alternately moved between the receiving position side area and the set position side area.
  • the first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit are configured such that at least one of the first gripping mechanism unit and the second gripping mechanism unit is in the first retracted position or the second reciprocating drive unit.
  • the first advance / retreat drive mechanism and the second advance / retreat drive mechanism are passed. For this reason, while one of the first gripping mechanism portion and the second gripping mechanism portion is receiving the terminal-attached wire on the receiving position side, the other is on the wire holding portion of the wire holding bar on the set position side. Can be set. Thereby, the transfer speed of the electric wire with a terminal can be improved more.
  • the second advance / retreat drive mechanism portion moves the second gripping mechanism portion from the advance position in the first movement region where the first advance / retreat drive mechanism portion is moved to the second advance / retreat position.
  • the second gripping mechanism part in the second movement region in which the drive mechanism part is moved to a second retraction position that is obliquely above the advance position, including a linear path that is obliquely upward Can be shortened.
  • the second advancing / retreating drive mechanism unit moves the second gripping mechanism unit up and down, and the delivery elevating drive unit with the lowered position in the first movement region.
  • an indirect lifting drive unit that moves up and down diagonally between the second moving region and a rising position that is diagonally above the lowering position.
  • the second gripping mechanism portion is moved to the first retraction position while the delivery lifting drive portion is moved to the lowered position by the indirect lifting drive portion. It is set so that it can pass under the mechanism. For this reason, if the second gripping mechanism portion is moved upward by the delivery lifting / lowering drive unit, the first gripping mechanism unit and the second gripping mechanism unit are moved to the region on the receiving position side even if the delivery lifting / lowering drive unit remains in the lowered position. And the area on the set position side. Thereby, the drive number of an indirect raising / lowering drive part can be reduced, and it contributes to the reduction of drive cost and the prolongation of lifetime.
  • the first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit include the first advance / retreat drive mechanism unit and the second advance / retreat drive mechanism unit, and the region on the receiving position side. Since the movement is alternately performed in the region on the set position side, the receiving operation and the setting operation of the terminal-attached electric wire can be advanced simultaneously to further improve the transfer efficiency.
  • the wire transfer device 10 is a device for transferring the manufactured terminal-attached wire 2 to the wire holding bar 80 in the wire harness manufacturing process.
  • the wire harness is manufactured through a cutting and pressing process, a temporary binding process, and an assembly process.
  • the cutting / crimping step is a step of manufacturing the electric wire 2 with a terminal by adjusting and cutting the electric wire to a predetermined length, and peeling the coating of the end of the electric wire and crimping the terminal to the exposed portion of the core wire. .
  • this process can be performed with the cutting and crimping apparatus 70 which has the adjustment mechanism part 72, the cutting mechanism part 74, the terminal crimping mechanism part 76 grade
  • the temporary binding step is a step of manufacturing a small unit binding form constituting a part of the wire harness. That is, the wire harness may be formed by combining a plurality of temporary bundles (and a single terminal-attached electric wire 2).
  • This process manufactures temporary binding by inserting the terminal of the electric wire 2 with a terminal into a connector, bundling an electric wire, etc.
  • an intermediate process such as a special terminal crimping process, a splice connection process, or a twist process may be performed on the electric wire as necessary.
  • the assembly process is a process of manufacturing a wire harness in a completed form by assembling a temporary bundle and various electric wires 2 with terminals 2 into a wiring form.
  • the wire harness manufactured in this way is incorporated into a vehicle or other electrical equipment through an inspection process or the like.
  • the terminal-attached electric wire 2 manufactured by the cutting / crimping device 70 in the cutting / crimping step is held by the wire holding bar 80 in a temporary binding unit when being used in the temporary binding step.
  • the electric wire with terminal is circulated and conveyed by the electric wire holding bar conveying device 90 that conveys the plurality of electric wire holding bars 80 while being held by the electric wire holding bar 80.
  • the electric wire transfer device 10 is used to transfer the terminal-attached electric wire 2 manufactured by the cutting and crimping device 70 to the electric wire holding bar 80 that is circulated and conveyed by the electric wire holding bar conveying device 90.
  • the electric wire transfer device 10 is provided between the cutting and crimping device 70 and the electric wire holding bar transport device 90.
  • the cutting and crimping apparatus 70 includes an adjustment mechanism 72, a cutting mechanism 74, a terminal crimping mechanism 76, and an electric wire transport mechanism 78 (see FIG. 1).
  • the adjusting mechanism 72 is a part that adjusts the electric wire continuously supplied from the electric wire storage body such as a take-up reel and feeds it downstream by a set dimension.
  • the adjusting mechanism 72 may be provided with a wrinkle removing mechanism for removing wrinkles of the electric wire.
  • the cutting mechanism part 74 is provided on the downstream side of the measuring mechanism part 72, cuts the electric wire fed by the adjusting mechanism part 72 by a set dimension to the set dimension, and covers the end of the cut electric wire. It is a part which peels.
  • the terminal crimping mechanism 76 is a part that is provided on the downstream side of the cutting mechanism 74 and crimps the terminal to the exposed portion of the core wire of the electric wire that has been cut and stripped by the cutting mechanism 74.
  • a mechanism for attaching a rubber plug or the like to the electric wire may be provided on the upstream side of the terminal crimping mechanism portion 76.
  • the electric wire transport mechanism 78 grips both ends of the electric wire cut by the cutting mechanism 74 (the front side of each core wire exposed portion to which the terminal is crimped and both ends of the insulation coating) It is a part conveyed downstream.
  • the electric wire transfer mechanism 78 passes through the processing position of the terminal crimping mechanism 76 from the downstream position of the cutting mechanism 74, and the electric wire transfer device 10 located on the downstream side of the terminal crimping mechanism 76 is connected to the terminal-attached electric wire. It is comprised so that conveyance of the electric wire 2 (terminal wire) with a terminal to the receiving position P1 which receives 2 is possible.
  • the electric wire conveyance mechanism unit 78 treats a plurality of electric wire conveyance grips 79 (see FIG. 12) that can grasp and release the electric wires, the downstream position of the cutting mechanism unit 74, and the processing of the terminal crimping mechanism unit 76. It is configured so as to circulate in a route passing through the position and the receiving position P1 (see FIG. 3).
  • the electric wire conveyance gripping portion 79 can employ a configuration in which a pair of gripping pieces are supported so as to be capable of opening and closing.
  • the electric wire conveyance mechanism part 78 hold
  • the operation control of the cutting and crimping apparatus 70 is performed by a cutting and crimping control unit 62 configured by a general microcomputer including a CPU, a ROM, a RAM, and the like (see FIG. 1).
  • a cutting and crimping control unit 62 when a pair of wire conveyance gripping portions 79 in which both ends of the wire 2 with terminals are gripped at the receiving position P1, the terminal-attached wires 2 exist at the receiving position P1. A signal to that effect is output.
  • the electric wire holding bar 80 is a member in which a plurality of electric wire holding portions 82 that can hold the electric wire end portion of the electric wire 2 with terminals are arranged in a line (see FIGS. 4 and 5).
  • the electric wire holding bar 80 is a member configured to be able to hold the plurality of terminal-attached electric wires 2 respectively held by the plurality of electric wire holding portions 82 in a form in which the ends of the electric wires are arranged in parallel.
  • the electric wire holding bar 80 is formed long in the direction in which the plurality of electric wire holding portions 82 are arranged, and includes a bar main body portion 85 that supports the plurality of electric wire holding portions 82.
  • the electric wire holding part 82 is a part that holds the electric wire end of the electric wire 2 with a terminal, and has a pair of elastic holding pieces 83 and an elastic holding piece fixing part 84.
  • the elastic clamping piece 83 is a member formed by punching and bending a plate-shaped metal material or molding a synthetic resin material with a mold or the like, and includes a flat portion on the proximal end side and a curved portion on the distal end side. have. More specifically, the flat portion is formed in a flat plate shape, and the curved portion is formed in a shape that curves in a gentle S shape continuously from the flat portion.
  • the elastic clamping piece fixing portion 84 is a portion that supports the pair of elastic clamping pieces 83, and is formed in a substantially rectangular parallelepiped shape as a whole with synthetic resin or the like.
  • the elastic clamping piece fixing portion 84 is configured to be supported in a state where the flat portions are overlapped (back to back) in a posture in which the distal ends of the pair of elastic clamping pieces 83 are separated from each other. More specifically, the elastic clamping piece fixing portion 84 has an opening at one end surface, and has a recess into which the pair of elastic clamping pieces 83 can be inserted through the opening.
  • the elastic clamping piece fixing portion 84 Inside the elastic clamping piece fixing portion 84, a wall portion is formed that is supported in a sandwiched manner in a state where the flat portions of the pair of elastic clamping pieces 83 are superimposed on the back side. And the elastic clamping piece fixing
  • the wire end portion of the terminal-attached electric wire 2 between the pair of elastic clamping pieces 83 is adjacent to the curved portion of the pair of elastic clamping pieces 83 and the opening of the elastic clamping piece fixing portion 84. It is held between the side end faces.
  • maintenance part 82 is an example, You may employ
  • the electric wire holding portion may have a comb-like member, and a configuration in which the electric wire end portion of the electric wire with terminal 2 is pushed and hooked between the comb teeth can be adopted.
  • the bar body 85 has a body base 86 and a pair of end members 88.
  • the main body base 86 is formed in a rod shape (here, a prismatic rod shape), and the plurality of electric wire holding portions 82 are supported in parallel on one side surface along the longitudinal direction. More specifically, the main body base portion 86 supports the plurality of wire holding portions 82 in a form in which the plurality of wire holding portions 82 are arranged in a direction in which the pair of elastic clamping pieces 83 are opposed to each other. For example, the plurality of wire holding portions 82 may be supported by being concavo-convexly fitted to the main body base 86. In addition, a configuration in which the electric wire holding portion 82 is individually fixed to the main body base 86 by screwing or the like may be employed.
  • the pair of end members 88 are fixed to both ends in the longitudinal direction of the main body base 86 by screwing or the like, and are secured to the plurality of electric wire holding portions 82 supported by the main body base 86 so as to be sandwiched from both sides in the parallel direction. Part.
  • the wire holding bar transfer device 90 is installed on the downstream side of the cutting and crimping device 70 that manufactures the terminal-attached electric wire 2, and is configured to be able to transfer a plurality of wire holding bars 80 along the circulation path (FIGS. 1 to 5). 3).
  • the electric wire holding bar transport device 90 includes a plurality of bar support portions 92 and a circulation drive mechanism portion 94. More specifically, the wire holding bar transport device 90 circulates and moves a plurality of bar support portions 92 that respectively support the plurality of wire holding bars 80 along the circulation path by the circulation drive mechanism portion 94.
  • the bar support portion 92 is a portion that supports each of the plurality of electric wire holding bars 80, and is provided so as to be able to circulate along an annular circulation path.
  • the circulation path is a path including a curved path protruding outward and a straight path, and here includes a pair of semicircular arc-shaped curved paths and a pair of straight paths connecting the pair of curved paths. .
  • the circulation path is set to a path passing through the set position P ⁇ b> 2 where the terminal-attached electric wire 2 is transferred to the electric wire holding bar 80 by the electric wire transfer device 10.
  • the bar support portion 92 is formed in a long groove shape that opens upward. That is, the bar support portion 92 is configured to support the electric wire holding portion 82 (the elastic pinching piece 83) in a posture in which the electric wire holding bar 80 is disposed on the inner side, with the electric wire holding portion 82 facing upward. But the bar support part 92 should just be able to support the electric wire holding bar 80 with the attitude
  • the circulation drive mechanism unit 94 is a part that circulates and moves the plurality of bar support units 92 along the circulation path.
  • a configuration having a pair of gears 95, a circulation chain 96, and a drive portion 97 can be employed.
  • the pair of gears 95 are spur gears that can rotate around parallel rotation axes, and are supported with respect to the base portion 98 at positions spaced apart on substantially the same plane.
  • One of the pair of gears 95 is rotationally driven by a drive unit 97 such as a motor.
  • the annular circulation chain 96 is wound around a pair of gears 95 and extends on the circulation path (here, the circulation path is on a plane substantially parallel to the horizontal plane).
  • the pair of gears 95 are rotated and the circulation chain 96 is circulated and rotated along the circulation path by the rotational drive of the drive unit 97.
  • the circulation drive mechanism portion 94 is not limited to a configuration having a combination of a pair of gears 95 and a circulation chain 96, but a configuration having a combination of a pair of pulleys and a drive belt. Any configuration can be used as long as it can be circularly moved along.
  • the plurality of bar support portions 92 are supported with respect to the circulation chain 96. More specifically, the plurality of bar support portions 92 are provided so as to be supported in a posture in which the plurality of electric wire holding bars 80 are extended toward the outside of the circulation path. Further, the plurality of bar support portions 92 are provided at substantially equal intervals in the extending direction of the circulation chain 96. For example, the plurality of bar support portions 92 are supported by the circulation chain 96 via a traveling portion capable of traveling on the base portion 98, and move on the circulation path by the movement of the traveling portion accompanying the rotational movement of the circulation chain 96. It is good to be provided.
  • the electric wire transfer device 10 has the electric wire holding device in which the electric wire with terminal 2 arranged at the receiving position P1 on the downstream side of the terminal crimping mechanism portion 76 in the cutting and crimping device 70 is moved to the set position P2 by the electric wire holding bar conveying device 90. It is comprised so that it may transfer to the bar 80 (refer FIG. 2, FIG. 3).
  • the electric wire transfer device 10 includes a first transfer mechanism unit 20 and a second transfer mechanism unit 40. Schematically, the electric wire transfer device 10 alternately conveys the electric wire 2 with a terminal from the receiving position P1 to the set position P2 by the first transfer mechanism unit 20 and the second transfer mechanism unit 40, and is cut and crimped.
  • the terminal-attached electric wire 2 is transferred from the device 70 to the electric wire holding bar 80.
  • the first transfer mechanism portion 20 and the second transfer mechanism portion 40 are supported by the base portion 16 disposed so as to extend along the direction connecting the receiving position P1 and the set position P2 by the pillar portion. ing.
  • the first transfer mechanism unit 20 includes a pair of first gripping mechanism units 22, a pair of first advance / retreat drive mechanism units 26, and a pair of first reciprocating drive mechanism units 32.
  • the pair of first gripping mechanism portions 22 that respectively grip the wire ends are configured to be moved by the pair of first advance / retreat drive mechanism portions 26 and the pair of first reciprocating drive mechanism portions 32 (FIG. 6 to FIG. 6). (See FIG. 9).
  • the first advance / retreat drive mechanism section 26 is a drive mechanism section that moves the first gripping mechanism section 22 on a plane orthogonal to the direction connecting the receiving position P1 and the set position P2.
  • the first reciprocating drive mechanism 32 is a drive mechanism that moves the first advance / retreat drive mechanism 26 (first gripping mechanism 22) along the direction connecting the receiving position P1 and the set position P2. More specifically, the first reciprocating drive mechanism 32 is configured to move the first advance / retreat drive mechanism 26 in a first movement region R1 extending above the receiving position P1 and the set position P2. (See FIGS. 6 and 7).
  • the pair of first gripping mechanism portions 22 is configured to be able to grip and release both ends of the electric wire 2 with terminal (see FIG. 9). More specifically, the 1st holding
  • the pair of gripping pieces 23 are formed in a substantially U shape. The pair of gripping pieces 23 grips the terminal-attached electric wire 2 in a form that crosses the substantially U-shaped inner side in the direction connecting the opposing portions, and the electric wire holding portion 82 and the electric wire transport mechanism portion 78 of the electric wire holding bar 80.
  • the pair of gripping pieces 23 grips two locations of the wire end portions of the terminal-attached electric wire 2 extending on both sides of the wire holding portion 82 and the wire conveyance gripping portion 79.
  • the distance between the substantially U-shaped facing portions is set to be larger than the extending direction of the wire end portions of the wire 2 with terminals of the wire holding portion 82 and the wire conveyance gripping portion 79. Yes.
  • the first gripping mechanism portion 22 is configured to move the pair of gripping pieces 23 toward and away from each other by an opening / closing drive portion 24 such as an air cylinder or an electromagnetic actuator.
  • an opening / closing drive portion 24 such as an air cylinder or an electromagnetic actuator.
  • the opening / closing drive unit 24 moves one grip piece 23 relative to and away from the other grip piece 23 (here, along the horizontal direction).
  • the pair of first advancing / retracting drive mechanism portions 26 are configured to move the pair of first gripping mechanism portions 22 into the advanced position A (see the first gripping mechanism portion 22 indicated by a two-dot chain line in FIG. 7) and the first retracted position C1, respectively. (Refer to FIG. 6).
  • the advancing position A is capable of receiving the terminal-attached electric wire 2 arranged at the receiving position P1, or sets the terminal-attached electric wire 2 to any one of the plurality of electric wire holding portions 82 of the electric wire holding bar 80 arranged at the set position P2. This is a possible position.
  • the first retreat position C1 is a position retreated from the advance position A, more specifically, a position above the advance position A. And in the 1st retraction position C1, a pair of holding piece 23 of the 1st holding
  • FIG. 1st retraction position C1 a pair of holding piece 23 of the 1st holding
  • the first advance / retreat drive mechanism unit 26 includes an indirect elevating drive unit 27 and a delivery elevating drive unit 28.
  • the indirect elevating drive unit 27 and the delivery elevating drive unit 28 are configured by linear actuators such as air cylinders.
  • the first advancing / retracting drive mechanism unit 26 moves the first gripping mechanism unit 22 directly up and down by the delivery lifting drive unit 28 and moves the delivery lifting drive unit 28 up and down by the indirect lifting drive unit 27.
  • the first gripping mechanism 22 is indirectly moved up and down.
  • the indirect elevating drive unit 27 and the delivery elevating drive unit 28 are arranged so as to be linearly driven along the vertical direction. That is, the 1st holding
  • the delivery raising / lowering drive unit 28 is moved by the indirect raising / lowering drive unit 27 to move the first gripping mechanism unit 22 between the advance position A and the advance position A and the first retract position C1. It is configured to be movable between the position B (see the first gripping mechanism portion 22 indicated by the solid line in FIG. 6).
  • the position where the delivery raising / lowering drive unit 28 moved up by the indirect lifting drive unit 27 moves the first gripping mechanism unit 22 up is the first retraction position C1.
  • the pair of first reciprocating drive mechanism portions 32 are configured to move the pair of first advance / retreat drive mechanism portions 26 between an area on the receiving position P1 side and an area on the set position P2 side, respectively.
  • the region on the receiving position P1 side and the region on the set position P2 side are a region on the receiving position P1 side and a region on the set position P2 side in the first moving region R1 (and a moving region R2 described later). That is, here, the first reciprocating drive mechanism 32 moves the first advancing / retreating drive mechanism 26 between the area above the receiving position P1 and the area above the set position P2.
  • each of the pair of first reciprocating drive mechanisms 32 includes a pair of first advance / retreat drive mechanisms 26, and the pair of first gripping mechanisms 22 at the receiving position P1. It moves to the position corresponding to a pair of electric wire conveyance holding part 79 which hold
  • each first gripping mechanism portion 22 is a main holding body of the electric wire transport gripping portion 79 arranged at the receiving position P1 or the electric wire holding bar 80 arranged at the set position P2. It is a position arranged just above the two electric wire holding portions 82.
  • the first reciprocating drive mechanism portion 32 includes a guide rail 33, a pair of moving base portions 34, and a pair of reciprocating drive portions 36. More specifically, the first reciprocating drive mechanism portion 32 includes a pair of moving base portions 34 that are supported so as to be movable in the longitudinal direction with respect to the guide rail 33 and that respectively support the pair of first advance / retreat drive mechanism portions 26. The pair of first reciprocating drive units 36 are moved along the guide rails 33 to move the pair of first advance / retreat drive mechanism units 26, respectively.
  • the guide rail 33 is formed in the shape of a long straight line, and is arranged in a form extending along a direction (here, the horizontal direction) connecting the receiving position P1 and the set position P2 (see FIG. 3).
  • the guide rail 33 is fixed to one side portion of the base portion 16.
  • the guide rail 33 is an electric wire farthest from the cutting and crimping device 70 in the electric wire holding bar 80 arranged at the set position P2 from the position above the electric wire conveyance gripping portion 79 on the upstream side arranged at the receiving position P1. It is provided so as to extend linearly over a region including a position above the holding portion 82.
  • the pair of moving bases 34 is supported in a form of concave and convex fitting so as to be movable toward and away from one guide rail 33 along the longitudinal direction (see FIGS. 6 and 9).
  • the pair of first advancing / retracting drive mechanism portions 26 may be fixed to the pair of moving base portions 34 by screws or the like. Accordingly, the pair of first advance / retreat drive mechanism portions 26 are supported so as to be movable along the guide rails 33.
  • the reciprocating drive unit 36 includes a pair of pulleys 37, a motor 38 that can rotationally drive one pulley 37 in both forward and reverse directions, and an annular drive belt 39 wound around the pair of pulleys 37 ( (See FIGS. 2 and 3).
  • the pair of pulleys 37 is supported so as to be rotatable around an axis parallel (here, along the horizontal direction) to one side of the base portion 16.
  • One of the pair of pulleys 37 (on the side of the electric wire holding bar conveyance device 90 in FIGS. 2 and 3) is arranged so as to be rotationally driven by a motor 38.
  • the motor 38 is also supported by the base 16.
  • the moving base 34 is fixed to a part of the driving belt 39 in the extending direction.
  • the moving base 34 is fixed to a lower portion of the drive belt 39 that extends along the direction connecting the receiving position P1 and the set position P2.
  • the reciprocating drive unit 36 is configured to reciprocate the moving base 34 fixed to the drive belt 39 between the receiving position P1 and the set position P2 by rotating the motor 38 in both forward and reverse directions. Yes.
  • the reciprocating drive unit 36 is disposed in parallel at a substantially same height position in order to move the pair of moving bases 34 along the guide rails 33 (see FIG. 2). That is, each pair of pulleys 37 and each drive belt 39 are set to operate on different parallel surfaces. More specifically, the pair of pulleys 37, the motor 38, and the drive belt 39 in the pair of reciprocating drive units 36 are provided with a receiving position P1 and a set position P2 in order to avoid interference between each pair of pulleys 37 and each motor 38. Are displaced in the direction connecting the two.
  • the pair of first advance / retreat drive mechanisms 26 are arranged in a line along a direction connecting the receiving position P1 and the set position P2, and a pair of moving bases 34 fixed to the pair of drive belts 39, respectively. (See FIG. 9). And a pair of 1st holding
  • the second transfer mechanism section 40 includes a second gripping section 42, a second advancing / retreating driving mechanism section 46, and a second delivery movement driving section 52 (see FIGS. 6 to 8 and FIG. 10). More specifically, the second transfer mechanism section 40 includes a pair of second gripping mechanism sections 42 that respectively grip both ends of the electric wire 2 with terminal, and a pair of second advance / retreat drive mechanism sections 46 and a pair.
  • the second reciprocating drive mechanism unit 52 is configured to move.
  • the second advance / retreat drive mechanism 46 is a drive mechanism that moves the second gripping mechanism 42 on a plane orthogonal to the direction connecting the receiving position P1 and the set position P2.
  • the second reciprocating drive mechanism 52 is a drive mechanism that moves the second advance / retreat drive mechanism 46 (second gripping mechanism 42) along the direction connecting the receiving position P1 and the set position P2. More specifically, the second reciprocating drive mechanism 52 is configured to move the second advance / retreat drive mechanism 46 in the second movement region R2 extending in parallel to the side of the first movement region R1. (See FIGS. 2 and 6).
  • the pair of second gripping mechanism portions 42 are configured to be capable of gripping and releasing the both ends of the electric wires 2 with terminals. More specifically, the 2nd holding
  • the pair of gripping pieces 43 are formed in a substantially U shape like the pair of gripping pieces 23.
  • the first gripping mechanism unit 42 is configured to move the pair of gripping pieces 43 toward and away from each other by the opening / closing drive unit 44.
  • the pair of second advancing / retreating drive mechanism units 46 moves the pair of second gripping mechanism units 42 from the advanced position A (see the second gripping mechanism part 42 indicated by a two-dot chain line in FIG. 6) and the advanced position A, respectively. It is configured to move between the retracted second retracted position C2 (see FIG. 7).
  • the advance position A is the same position as the advance position A of the first gripping mechanism 22.
  • the second retreat position C2 is a position obliquely above the advance position A, and is a position where the second gripping mechanism portion 42 does not straddle the electric wire holding portion 82 or the electric wire conveyance gripping portion 79.
  • the second retraction position C2 is a position different from the first retraction position C1 of the first gripping mechanism portion 22.
  • FIG. 8 shows a state in which the first gripping mechanism portion 22 and the second gripping mechanism portion 42 are disposed at the first retracted position C1 or the second retracted position C2, respectively.
  • the second advancing / retreating drive mechanism unit 46 moves the second gripping mechanism unit 42 obliquely upward from the advance position A on the first movement region R1 to the second retraction position C2 on the second movement region R2. It is configured to move along a route including a straight route. More specifically, the second advancing / retreating drive mechanism unit 46 includes an indirect elevating drive unit 47 and a delivery elevating drive unit 48. Then, the second advancing / retreating drive mechanism unit 46 moves the second gripping mechanism unit 42 directly up and down by the delivery lifting / lowering driving unit 48 and moves the delivery / lifting driving unit 48 up and down by the indirect lifting / lowering driving unit 47 to perform the second gripping. The mechanism part 42 is moved up and down indirectly.
  • the indirect elevating drive unit 47 elevates and lowers the delivery elevating drive unit 48 obliquely between a lowered position on the first movement region R1 and an elevated position obliquely above the lowered position on the second movement region R2. It is arranged to move.
  • the lowered position is a position directly above the wire conveyance gripping portion 79 disposed at the receiving position P1 and a position directly above the wire holding bar 80 disposed at the set position P2.
  • the delivery raising / lowering drive part 48 is arrange
  • the indirect lifting drive unit 47 and the delivery lifting drive unit 48 are constituted by linear actuators such as air cylinders.
  • the delivery raising / lowering drive unit 48 is moved downward from the raised position to the lowering position obliquely downward by the indirect raising / lowering driving unit 47, and moves the second gripping mechanism unit 42 to the advanced position A and the advanced position A. It is configured to be able to move between the preliminary retracted position B (see the second gripping mechanism portion 42 indicated by the solid line in FIG. 6).
  • the preliminary retraction position B of the second gripping mechanism unit 42 is the same position as the preliminary retraction position B of the first gripping mechanism unit 22 (although it may be a different position).
  • the position at which the delivery raising / lowering driving unit 48 in the state of being lifted and moved obliquely upward by the indirect raising / lowering driving unit 47 from the lowered position moves the second gripping mechanism unit 42 upward is the second retraction position C2.
  • the pair of second reciprocating drive mechanisms 52 moves the pair of second reciprocating drive mechanisms 46 between the receiving position P1 side area and the set position P2 side area in the second movement area R2. (See FIGS. 2 and 3). More specifically, each of the pair of second reciprocating drive mechanisms 52 includes a pair of second advance / retreat drive mechanisms 46, and the pair of second gripping mechanisms 42 at the receiving position P1 serves as both wires of the terminal-equipped electric wire 2. It moves to the position corresponding to a pair of electric wire conveyance holding part 79 which hold
  • the pair of second reciprocating drive mechanism portions 52 are set targets of the terminal-attached electric wires 2 gripped by the pair of second advance / retreat drive mechanism portions 46 of the electric wire holding bars 80 arranged at the set position P2. The position is moved to a position corresponding to the two electric wire holding portions 82.
  • the second reciprocating drive mechanism portion 52 includes a guide rail 53, a pair of moving base portions 54, and a pair of reciprocating drive portions 56. More specifically, the second reciprocating drive mechanism portion 52 includes a pair of moving base portions 54 that are supported so as to be movable in the longitudinal direction with respect to the guide rail 53 and support the pair of first advance / retreat drive mechanism portions 56. The pair of second advancing / retreating drive mechanism portions 46 are respectively moved by being moved along the guide rails 53 by the pair of reciprocating drive portions 56.
  • the guide rail 53 is formed in a long linear shape and is arranged in a form extending along a direction (here, a horizontal direction) connecting the receiving position P1 and the set position P2.
  • the guide rail 53 is fixed to the other side portion of the base portion 16 in a form parallel to the guide rail 33. Further, the guide rail 53 extends from a position above the receiving position P1 to an area including a position above the wire holding portion 82 farthest from the cutting and crimping device 70 of the wire holding bar 80 in the set position P2. Is provided.
  • the pair of moving bases 54 are supported in a form in which the guide rails 53 are unevenly fitted so as to be movable toward and away from each other along the longitudinal direction. Further, the pair of first advance / retreat drive mechanism portions 46 are fixed to the pair of movement base portions 54. Accordingly, the pair of first advance / retreat drive mechanism portions 46 are supported so as to be movable along the guide rails 53.
  • the reciprocating drive unit 56 includes a pair of pulleys 57, a motor 58 capable of rotationally driving one pulley 57 in both forward and reverse directions, and an annular drive belt 59 wound around the pair of pulleys 57.
  • the pair of pulleys 57 is supported so as to be rotatable around an axis parallel to the other side of the base portion 16 (here, along the horizontal direction).
  • One of the pair of pulleys 57 (on the electric wire holding bar conveyance device 90 side in FIG. 2) is arranged so as to be rotationally driven by a motor 58.
  • the motor 58 is also supported by the base portion 16.
  • the moving base 54 is fixed to a part of the driving belt 59 in the extending direction.
  • the moving base 54 is fixed to a lower portion of the drive belt 59 that extends along the direction connecting the receiving position P1 and the set position P2.
  • the reciprocating drive unit 56 is configured to reciprocate the moving base 54 fixed to the drive belt 59 between the receiving position P1 and the set position P2 by rotationally driving the motor 58 in both forward and reverse directions. Yes.
  • a pair of reciprocating drive units 56 are arranged in parallel at substantially the same height position. That is, each pair of pulleys 57 and each drive belt 59 are positioned so as to operate on different parallel surfaces. More specifically, the pair of pulleys 57, the motor 58, and the drive belt 59 in the pair of reciprocating drive units 56 are configured so that the receiving position P1 and the set position P2 are set in order to avoid interference between the pair of pulleys 57 and the motors 58. Are displaced in the direction connecting the two.
  • the pair of second advance / retreat drive mechanisms 46 are arranged in a line along a direction connecting the receiving position P1 and the set position P2, and a pair of moving bases 54 fixed to the pair of drive belts 59, respectively. Are supported by each. And a pair of 2nd holding
  • the first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 are configured such that at least one of the first gripping mechanism portion 22 and the second gripping mechanism portion 42 has the first retraction position C1 or the second retraction drive mechanism portion 42.
  • the first advancing / retreating drive mechanism unit 26 and the second advancing / retreating drive mechanism unit 46 are configured to pass each other in the state of being moved to the retreat position C2 (see FIGS. 6 to 8).
  • the first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 divide the first advance / retreat drive mechanism portion 26 and the second advance / retreat drive mechanism portion 46 into an area on the receiving position P1 side and an area on the set position P2 side. And move them alternately.
  • the second transfer mechanism 40 sets the terminal-attached electric wire 2 on the electric wire holding bar 80 at the set position P2. Further, while the second transfer mechanism unit 40 receives the terminal-attached electric wire 2 at the receiving position P1, the first transfer mechanism unit 20 sets the terminal-attached electric wire 2 to the electric wire holding bar 80 at the set position P2.
  • the operation control of the electric wire transfer device 10 is performed by a transport control unit 60 configured by a general microcomputer including a CPU, a ROM, a RAM, and the like (see FIG. 1).
  • the transfer control unit 60 receives the electric wire transfer terminal 2 to receive and set the terminal-attached electric wire 2 at this timing. Operation control of each drive part in the 1st transfer mechanism part 20 and the 2nd transfer mechanism part 40 in the mounting apparatus 10 is performed.
  • the operation control of the wire holding bar transfer device 90 is also performed by the transfer control unit 60.
  • the transport control unit 60 controls the transport timing of the wire holding bar 80 so that a preset number of the terminal-attached electric wires 2 are transferred to the wire holding bar 80 in cooperation with the cutting and crimping control unit 62 and the like. To do.
  • the pair of first reciprocating drive mechanism portions 32 support the first advance / retreat drive mechanism portions 26 above the electric wire conveyance gripping portions 79 arranged at the receiving position P1, and the pair of second reciprocating drive mechanism portions 52 It is assumed that each second advance / retreat driving mechanism 46 is supported above two predetermined electric wire holding portions 82 of the electric wire holding bar 80 arranged at the set position P2. Further, the pair of first advance / retreat drive mechanism portions 26 and the pair of second advance / retreat drive mechanism portions 46 move the first gripping mechanism portion 22 and the second gripping mechanism portion 42 to the first retracted position C1 or the second retracted position C2. It shall be supported (see FIG. 8). Further, the pair of gripping pieces 23 of the first gripping mechanism portion 22 are open, and the pair of gripping pieces 23 of the second gripping mechanism portion are closed with the wire end portion of the terminal-attached electric wire 2 sandwiched therebetween. And
  • the delivery lifting drive unit 28 is moved downward by the indirect lifting drive unit 27 (see FIG. 7).
  • the first gripping mechanism 22 is moved from the first retracted position C1 to the preliminary retracted position B.
  • the first gripping mechanism unit 22 is moved downward by the delivery raising / lowering drive unit 28 (see FIG. 7). As a result, the first gripping mechanism 22 is moved from the preliminary retracted position B to the advanced position A.
  • the pair of gripping pieces 23 are moved close (closed) by the opening / closing drive section 24 (see FIG. 12).
  • the distance between the pair of gripping pieces 23 is set to be the same as or smaller than the diameter of the wire end of the terminal-attached electric wire 2 (here, slightly smaller).
  • the electric wire conveyance holding part 79 is made to release
  • the first lifting mechanism unit 22 is moved up by the delivery raising / lowering drive unit 28. As a result, the first gripping mechanism 22 is moved from the advance position A to the preliminary retreat position B.
  • the delivery raising / lowering driving unit 28 is moved up by the indirect raising / lowering driving unit 27.
  • the first gripping mechanism 22 is moved from the preliminary retracted position B to the first retracted position C1.
  • the second transfer mechanism section 40 executes the setting process of the terminal-attached electric wire 2.
  • the delivery lift drive unit 48 is moved downward by the indirect lift drive unit 47 (see FIG. 6).
  • the second gripping mechanism portion 42 is moved from the second retracted position C2 to the preliminary retracted position B.
  • the second gripping mechanism part 42 is moved downward by the delivery raising / lowering drive part 48 (see FIG. 6). As a result, the second gripping mechanism portion 42 is moved from the preliminary retracted position B to the advanced position A.
  • the terminal-attached electric wire 2 held by the second holding mechanism portion 42 is held by the electric wire holding portion 82 of the electric wire holding bar 80. More specifically, in the electric wire with terminal 2, a part of the end portion of the electric wire that crosses the inside of the opposing portions of the gripping piece 43 by the advancing operation of the pair of gripping pieces 43 is arranged on the inner side. It is clamped by a pair of elastic clamping pieces 83 of the holding portion 82 (see FIGS. 5 and 11).
  • the pair of gripping pieces 43 are moved apart (opened) by the opening / closing drive section 44.
  • the distance between the pair of gripping pieces 43 is set to be larger than the diameter of the end portion of the terminal-attached electric wire 2.
  • the second lifting mechanism unit 42 is moved up by the delivery raising / lowering drive unit 48.
  • the second gripping mechanism portion 42 is moved from the advance position A to the preliminary retracted position B.
  • the delivery lift drive unit 48 is moved up by the indirect lift drive unit 47.
  • the second gripping mechanism portion 42 is moved from the preliminary retracted position B to the second retracted position C2.
  • 6 and 7 show a state where the first gripping mechanism 22 and the second gripping mechanism 42 are alternately moved to the advance position A and the first retracted position C1 or the second retracted position C2. This is shown for convenience of explanation. Actually, both the first gripping mechanism portion 22 and the second gripping mechanism portion 42 are advanced positions in the region on the receiving position P1 side or the region on the set position P2 side, respectively. Moved to A.
  • the transport process of the first transfer mechanism part 20 and the second transfer mechanism part 40 is executed.
  • the first reciprocating drive mechanism 32 moves the first advance / retreat drive mechanism 26 from the receiving position P1 side area to the set position P2 side area in the first path R1.
  • the second reciprocating drive mechanism 52 moves the second advance / retreat drive mechanism 46 from the set position P2 side area to the receiving position P1 side area in the second path R2.
  • the first gripping mechanism unit 22 and the second gripping mechanism unit 42 are respectively in the first retracted position C1 or the second retracted position. Passing sideways in the state of position C2 (see FIG. 8).
  • the first advance / retreat drive mechanism unit 26 and the second The two-way drive mechanism 46 can pass by.
  • the second gripping mechanism unit 42 passes under the first gripping mechanism unit 22 (FIG. 6).
  • the state is a state in which the delivery raising / lowering driving unit 48 is moved to the lowered position by the indirect raising / lowering driving unit 47 and the second gripping mechanism unit 42 is moved to the lowered position by the delivery raising / lowering driving unit 48. Further, in a state where the first gripping mechanism unit 22 is in the preliminary retracted position B and the second gripping mechanism unit 42 is in the second retracted position C2, the first gripping mechanism unit 22 and the second gripping mechanism unit 42 are mutually connected. Pass by the side (see Figure 7).
  • grip mechanism part 22 and One of the second gripping mechanism portions 42 that grips the terminal-attached electric wire 2 and moves from the region on the receiving position P1 side to the region on the set position P2 side is disposed at the preliminary retracted position B, and the other is the first retracted position.
  • the first gripping mechanism portion 22 and the second gripping mechanism portion 42 may be alternately moved between the region on the receiving position P1 side and the region on the set position P2 side in the state where the C1 or the second retracted position C2 is disposed. (See FIGS. 6 and 7).
  • the first transfer mechanism part 20 and the second transfer mechanism part 40 at least one of the first gripping mechanism part 22 and the second gripping mechanism part 42 is in the first retraction position C1 or the second transfer mechanism part 42. As long as it has been moved to the second retracted position C2, the other does not have to be moved upward from the preliminary retracted position B.
  • a pair of 1st reciprocating drive mechanism parts 32 are the electric wire holding
  • the first advancing / retracting drive mechanism unit 26 is moved to a position disposed above the unit 82.
  • the pair of second reciprocating drive mechanism units 52 includes the second advancing / retreating drive mechanism unit 46 to a position where each second gripping mechanism unit 42 is disposed above the pair of electric wire conveyance gripping units 79 disposed at the receiving position P1. Move.
  • the next step is to execute the setting process of the terminal-attached electric wire 2 received in the receiving process by the first transfer mechanism unit 20, and the second transfer mechanism part 40 executes the receiving process of the terminal-attached electric wire. To do.
  • each first gripping mechanism unit 22 is moved to the advanced position A by the pair of first advance / retreat drive mechanism units 26 and is held by the wire holding unit 82 of the wire holding bar 80. And the holding
  • the second gripping mechanism sections 42 are moved to the advanced positions A by the pair of second advance / retreat driving mechanism sections 26, and are gripped by the wire conveyance gripping section 79 by the second gripping mechanism section 42.
  • the end portion of the terminal-attached electric wire 2 is gripped.
  • the second gripping mechanism portions 42 are moved again to the second retracted position C2 by the pair of second advance / retreat driving mechanism portions 46 again. Thereby, the receiving process of the electric wire 2 with a terminal by the 2nd transfer mechanism part 20 is completed.
  • the transfer process of the first transfer mechanism unit 20 and the second transfer mechanism unit 40 is executed.
  • the first reciprocating drive mechanism 32 moves the first advance / retreat drive mechanism 26 from the set position P2 side area to the receiving position P1 side area in the first path R1.
  • the second reciprocating drive mechanism 52 moves the second advance / retreat drive mechanism 46 from the receiving position P1 side area to the set position P2 side area in the second path R2.
  • the terminal-attached electric wire 2 can be transferred continuously.
  • the electric wire holding bar conveying device 90 moves the next electric wire holding bar 80 to the set position P2 and transfers the terminal-attached electric wire 2 to the electric wire holding bar 80. Good.
  • the first reciprocating drive mechanism unit 32 and the second reciprocating drive mechanism unit 52 are configured such that at least one of the first gripping mechanism unit 22 and the second gripping mechanism unit 42 is the first.
  • the first advance / retreat drive mechanism unit 26 and the second advance / retreat drive mechanism unit 46 are alternately arranged in the receiving position P1 side area and the set position P2 side area.
  • the other is the electric wire holding bar 80 on the set position P2 side.
  • the terminal-attached electric wire 2 can be used without changing the configuration of the cutting and crimping device 70 and the wire holding bar transport device 90.
  • the transfer efficiency can be improved.
  • the second advance / retreat drive mechanism 46 moves the second gripping mechanism 42 from the advance position A on the first movement region R1 where the first advance / retreat drive mechanism 26 is moved.
  • the second gripping mechanism portion 42 is moved along a path including a straight path that is obliquely upward between the second movement region R2 and the second retraction position C2 that is obliquely above the advance position A. Can be shortened. Moreover, it contributes to space saving of the wire transfer device 10 itself.
  • the second advancing / retreating drive mechanism unit 46 moves the second gripping mechanism unit 42 up and down
  • the delivery lifting and lowering drive unit 48 moves the lowering position on the first movement region R1 and on the second movement region R2.
  • the delivery lift drive section 48 is moved to the drop position on the first movement region R1.
  • the configuration to be made can be simplified. That is, the movement in the vertical direction and the movement in the horizontal direction can be realized by one drive unit, and the equipment cost of the wire transfer device 10 can be reduced and the space can be saved.
  • the second gripping mechanism portion 42 passes under the first gripping mechanism portion 22 moved to the first retraction position C1 in a state where the delivery lifting drive portion 48 is moved to the lowered position by the indirect lifting drive portion 47.
  • the first gripping mechanism portion 22 and the first gripping mechanism portion 22 are connected to each other even if the delivery lifting / lowering drive portion 48 remains in the lowered position. 2
  • the gripping mechanism portion 42 can be moved between the area on the receiving position P1 side and the area on the set position P2 side.
  • the drive number of the indirect raising / lowering drive part 47 can be reduced, and it contributes to reduction of drive cost and prolongation of lifetime. Further, as compared with the case where the first gripping mechanism portion 22 and the second gripping mechanism portion 42 pass each other, the clearance for suppressing the interference of the portion protruding to the side of the gripped terminal-attached electric wire 2. Is not required to be provided on the side of the first gripping mechanism portion 22 and the second gripping mechanism portion 42, which contributes to space saving of the wire transfer device 10 itself.
  • first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 divide the first advance / retreat drive mechanism portion 26 and the second advance / retreat drive mechanism portion 46 into an area on the receiving position P1 side and an area on the set position P2 side. Therefore, the receiving operation and the setting operation of the terminal-attached electric wire 2 can be simultaneously advanced to further improve the transfer efficiency.
  • the first transfer mechanism unit 20 has been described with an example in which the first gripping mechanism unit 22 is moved only in the vertical direction, but the first gripping mechanism unit 22 is tilted like the second transfer mechanism unit 40. It may be configured to move in the direction.
  • the 1st transfer mechanism part 20 may be comprised so that the delivery raising / lowering drive part 28 may be moved to the diagonal direction by the indirect raising / lowering drive part arrange
  • the second transfer mechanism unit 40 has been described as an example in which the indirect lifting drive unit 47 moves the delivery lifting drive unit 48 in an oblique direction, the present invention is not limited to this. That is, the second transfer mechanism unit 40 only needs to be able to move the second gripping mechanism unit 42 between the advanced position A and the second retracted position C2, and the delivery lifting / lowering drive unit 48 in the horizontal direction. You may have the indirect raising / lowering drive part to move.
  • the 2nd transfer mechanism part 40 may be comprised so that an indirect raising / lowering drive part may move the delivery raising / lowering drive part 48 to a perpendicular direction. However, in this case, it is necessary to adopt the configuration of the first advance / retreat drive mechanism that moves the first gripping mechanism 22 in an oblique direction or a horizontal direction.
  • the 1st reciprocating drive mechanism part 32 and the 2nd reciprocating drive mechanism part 52 demonstrated by the example comprised by a guide rail, a movement base, a pair of pulley, a motor, and a drive belt, it is not restricted to this. . That is, the first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 move the first advance / retreat drive mechanism portion 26 or the second advance / retreat drive mechanism portion 46 along the first movement region R1 or the second movement region R2. Any mechanism that can move linearly may be used, and a linear actuator such as an air cylinder may be used.
  • movement of the electric wire transfer apparatus 10 has been demonstrated in the example in which the receiving process or setting process of the 1st transfer mechanism part 20 and the setting process or receiving process of the 2nd transfer mechanism part 40 are advanced simultaneously.
  • the timings of both processes may be shifted. That is, the first transfer mechanism unit 20 and the second transfer mechanism unit 40 are transferred by one transfer mechanism unit if the first gripping mechanism unit 22 and the second gripping mechanism unit 42 operate so as to pass each other.
  • the transfer efficiency can be improved as compared with the case of performing. From the viewpoint of improving the transfer efficiency, the first transfer mechanism unit 20 and the second transfer mechanism unit 40 set with the region on the receiving position P1 side of the first holding mechanism unit 22 and the second holding mechanism unit 42. It is preferable that the reciprocation between the area on the position P2 side is alternately performed, and the setting process or the receiving process is performed simultaneously.

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Manufacturing Of Electrical Connectors (AREA)

Abstract

A power line shifting device is provided with a first shifting mechanism section and a second shifting mechanism section. The first shifting mechanism section has a first grip mechanism section for gripping a power line provided with a terminal, a first advancing/retracting drive mechanism section for moving the first grip mechanism section between an advanced position at which the power line comprising a terminal is accepted and placed thereon and a first retracted position, and a first reciprocating movement drive mechanism section for moving the first advancing/retracting drive mechanism section between an accepting position side and a setting position side. The second shifting mechanism section includes a second grip mechanism section, a second advancing/retracting drive mechanism section for moving the second grip mechanism section between the advanced position and a second retracted position, and a second reciprocating movement drive section for moving the second advancing/retracting drive mechanism section between the accepting position side and the setting position side. The reciprocating movement drive mechanism sections cause the advancing/retracting drive mechanism sections to pass by each other in a state where at least one of the grip mechanism sections has been moved to the respective retracted position.

Description

電線移載装置Wire transfer device
 本発明は、ワイヤーハーネスの製造工程において電線を搬送する技術に関する。 This invention relates to the technique of conveying an electric wire in the manufacturing process of a wire harness.
 ワイヤーハーネスは、例えば、切断圧着工程、仮結束工程、組立工程を経て製造される。切断圧着工程は、電線を所定の長さに切断すると共に端部の端部に端子を圧着して端子付電線を製造する工程である。仮結束工程は、複数の端子付電線を結束又は複数の端子付電線の端子をコネクタに挿入等して仮結束を製造する工程である。また、組立工程は、複数の端子付電線及び複数の仮結束を所定の配索形態に組み立ててワイヤーハーネスを製造する工程である。 The wire harness is manufactured through, for example, a cutting / crimping process, a temporary binding process, and an assembly process. The cutting and crimping step is a step of manufacturing the electric wire with a terminal by cutting the electric wire into a predetermined length and crimping the terminal to the end of the end. The temporary binding step is a step of manufacturing temporary binding by binding a plurality of electric wires with terminals or inserting terminals of the plurality of electric wires with terminals into a connector. Moreover, an assembly process is a process of assembling a wire harness by assembling a plurality of electric wires with terminals and a plurality of temporary bundles into a predetermined wiring form.
 このようなワイヤーハーネスの製造工程において、仮結束工程に端子付電線を供給する際に、複数種の端子付電線を仮結束単位で電線保持バーに保持しておくことがある。そして、切断圧着工程から複数種の端子付電線を電線保持バーに移載するために用いられる装置として、特許文献1に開示されている端子付電線移載機構部がある。 In such a wire harness manufacturing process, when supplying electric wires with terminals to the temporary bundling process, a plurality of types of electric wires with terminals may be held on the electric wire holding bar in units of temporary bundling. And as an apparatus used in order to transfer a multiple types of electric wire with a terminal to an electric wire holding bar from a cutting / crimping process, there exists an electric wire transfer mechanism part with a terminal currently indicated by patent documents 1.
 端子付電線移載機構部は、調尺切断された電線端部に端子を圧着する端子圧着装置から、複数の電線保持バーを搬送する電線保持バー搬送装置側の電線保持バーに向けて端子付電線を移載する装置である。より具体的には、端子付電線移載機構部は、端子付電線の端部を把持及び把持解除可能な一対の移載用把持部と、一対の移載用把持部を移動駆動する移載用把持部移動駆動部とを有している。移載用把持部移動駆動部は、一対の移載用把持部が2つのベースプレートに各々設けられ、各ベースプレートが水平ガイドにより電線保持バーと電線受取位置との間で水平移動可能に支持され、一対の移載用把持部を異なる移載用駆動部により水平ガイドに沿って移動させるように構成されている。 The terminal-equipped wire transfer mechanism is equipped with a terminal from the terminal crimping device that crimps the terminal to the end of the wire that has been cut and cut, toward the wire holding bar on the wire holding bar transport device side that transports multiple wire holding bars. It is an apparatus for transferring electric wires. More specifically, the terminal-attached electric wire transfer mechanism unit includes a pair of transfer gripping units capable of gripping and releasing the end of the terminal-attached electric wire, and a transfer for moving and driving the pair of transfer gripping units. And a gripping part movement drive unit. The transfer gripper movement drive unit has a pair of transfer grips provided on two base plates, and each base plate is supported by a horizontal guide so as to be horizontally movable between the wire holding bar and the wire receiving position. The pair of transfer gripping portions are configured to be moved along the horizontal guide by different transfer drive portions.
特開2010-287369号公報JP 2010-287369 A
 しかしながら、特許文献1に記載の端子付電線移載機構部では、1つの電線保持バーに対して1本の端子付電線をセットするのに一対の移載用把持部を一往復させる必要がある。このため、モータの性能を超えて端子付電線の移載効率を上げることは困難であった。 However, in the electric wire transfer mechanism with terminal described in Patent Document 1, it is necessary to reciprocate the pair of transfer gripping portions once to set one electric wire with terminal to one electric wire holding bar. . For this reason, it has been difficult to increase the transfer efficiency of the electric wire with terminal exceeding the performance of the motor.
 そこで、本発明は、端子付電線の移載効率をより向上させることを目的とする。 Therefore, an object of the present invention is to further improve the transfer efficiency of the electric wire with terminal.
 第1の態様は、切断圧着装置において製造されて受取位置に配置された端子付電線を、セット位置に配置され、端子付電線の電線端部を保持可能な電線保持部が一列に複数設けられた電線保持バーに移載する電線移載装置であって、第1移載機構部と第2移載機構部とを備え、前記第1移載機構部は、端子付電線の両電線端部をそれぞれ把持及び把持解除可能な一対の第1把持機構部と、前記一対の第1把持機構部を、それぞれ、前記受取位置に配置された前記端子付電線を受取可能又は前記端子付電線を前記セット位置に配置された前記電線保持バーの前記複数の電線保持部のいずれか1つにセット可能な進出位置と、前記進出位置から退避した第1退避位置との間で移動させる一対の第1進退駆動機構部と、前記一対の第1進退駆動機構部を、それぞれ、前記受取位置側の領域と前記セット位置側の領域との間で移動させる一対の第1往復駆動機構部とを有し、前記第2移載機構部は、端子付電線の両電線端部をそれぞれ把持及び把持解除可能な一対の第2把持機構部と、前記一対の第2把持機構部を、それぞれ、前記進出位置と、前記進出位置から退避した第1退避位置とは別の第2退避位置との間で移動させる一対の第2進退駆動機構部と、前記一対の第2進退駆動機構部を、それぞれ、前記第1往復駆動機構部による前記第1進退駆動機構部の移動領域と並行する移動領域において、前記受取位置側の領域と前記セット位置側の領域との間で移動させる一対の第2往復駆動機構部とを有し、前記第1往復駆動機構部及び前記第2往復駆動機構部は、前記第1把持機構部及び前記第2把持機構部の少なくとも一方が第1退避位置又は第2退避位置に移動された状態で、前記第1進退駆動機構部と前記第2進退駆動機構部とをすれ違わせる。 In the first aspect, the terminal-attached electric wires manufactured in the cutting and crimping apparatus and arranged at the receiving position are arranged at the set position, and a plurality of electric wire holding parts capable of holding the end portions of the electric wires with terminals are provided in a row. An electric wire transfer device for transferring to an electric wire holding bar, comprising a first transfer mechanism portion and a second transfer mechanism portion, wherein the first transfer mechanism portion includes both wire end portions of the electric wire with terminal. Each of the pair of first gripping mechanism portions capable of gripping and releasing gripping, and the pair of first gripping mechanism portions, respectively, capable of receiving the terminal-attached electric wire disposed at the receiving position, or the terminal-attached electric wire A pair of firsts moved between an advance position that can be set to any one of the plurality of electric wire holding portions of the electric wire holding bar arranged at a set position and a first retracted position that is retracted from the advanced position. Advance / retreat drive mechanism and the pair of first advance / retreat drive units Each having a pair of first reciprocating drive mechanism portions that move between the receiving position side region and the set position side region, and the second transfer mechanism portion includes a terminal-attached electric wire. A pair of second gripping mechanism portions that can grip and release gripping ends of both wires, and the pair of second gripping mechanism portions, respectively, are the advance position and the first retracted position retracted from the advance position. A pair of second advancing / retreating drive mechanism units that are moved between different second retreat positions, and the pair of second advancing / retreating drive mechanism units, respectively, the first advancing / retreating drive mechanism unit by the first reciprocating drive mechanism unit. A pair of second reciprocating drive mechanisms that move between the receiving position side area and the set position side area in a moving area parallel to the moving area of the first reciprocating drive mechanism section, The second reciprocating drive mechanism portion is the first gripping mechanism portion. With at least one of which is moved to the first retracted position or the second retracted position of the fine the second gripping mechanism unit, thereby Surechigawa and the first advancing drive mechanism the second reciprocating drive mechanism.
 第2の態様は、第1の態様に係る電線移載装置であって、前記第1往復駆動機構部は、前記第1進退駆動機構部を前記受取位置及び前記セット位置の上方に延在する第1移動領域で移動させるように構成され、前記第2往復駆動機構部は、前記第2進退駆動機構部を前記第1移動領域の側方に並行して延在する第2移動領域で移動させるように構成され、前記第2進退駆動機構部は、前記第2把持機構部を、前記第1移動領域中の前記進出位置から前記第2移動領域中で前記進出位置の斜め上方の前記第2退避位置までの間で斜め上方に向かう直線経路を含む経路で移動させる。 A 2nd aspect is an electric wire transfer apparatus which concerns on a 1st aspect, Comprising: A said 1st reciprocating drive mechanism part extends the said 1st advance / retreat drive mechanism part above the said receiving position and the said setting position. The second reciprocating drive mechanism is configured to move in the first movement region, and the second reciprocating drive mechanism moves in the second movement region extending in parallel to the side of the first movement region. The second advancing / retreating drive mechanism unit causes the second gripping mechanism unit to move the second gripping mechanism unit diagonally above the advancing position in the second moving region from the advancing position in the first moving region. 2. Move to a retracted position on a route including a straight route that goes diagonally upward.
 第3の態様は、第2の態様に係る電線移載装置であって、前記第2進退駆動機構部は、前記第2把持機構部を昇降移動させる受渡昇降駆動部と、前記受渡昇降駆動部を、前記第1移動領域中の下降位置と、前記第2移動領域中で前記下降位置の斜め上方の上昇位置との間で斜めに昇降移動させる間接昇降駆動部とを有している。 A 3rd aspect is an electric wire transfer apparatus which concerns on a 2nd aspect, Comprising: The said 2nd advance / retreat drive mechanism part is a delivery raising / lowering drive part which moves the said 2nd holding | grip mechanism part up and down, and the said delivery raising / lowering drive part And an indirect elevating drive unit that moves up and down obliquely between a lowered position in the first moving region and an elevated position obliquely above the lowered position in the second moving region.
 第4の態様は、第3の態様に係る電線移載装置であって、前記第2把持機構部は、前記間接昇降駆動部により前記受渡昇降駆動部が前記下降位置に移動された状態で、前記第1退避位置に移動された前記第1把持機構部の下方を通り抜け可能に設定されている。 A 4th aspect is an electric wire transfer device concerning the 3rd aspect, and the 2nd above-mentioned grasping mechanism part is in the state where the delivery raising / lowering drive part was moved to the lowered position by the indirect raising / lowering drive part, It is set so that it can pass under the first gripping mechanism portion moved to the first retracted position.
 第5の態様は、第1から第4のいずれか一態様に係る電線移載装置であって、前記第1往復駆動機構部及び前記第2往復駆動機構部は、前記第1進退駆動機構部と前記第2進退駆動機構部とを、前記受取位置側の領域と前記セット位置側の領域とで交互に移動させる。 A fifth aspect is an electric wire transfer apparatus according to any one of the first to fourth aspects, wherein the first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit are the first advance / retreat drive mechanism unit. And the second advancing / retreating drive mechanism are alternately moved between the receiving position side area and the set position side area.
 第1の態様に係る電線移載装置によると、第1往復駆動機構部と第2往復駆動機構部とが、第1把持機構部及び第2把持機構部の少なくとも一方が第1退避位置又は第2退避位置に移動された状態で、第1進退駆動機構部と第2進退駆動機構部とをすれ違わせる。このため、第1把持機構部及び第2把持機構部の一方が受取位置側で端子付電線を受け取る動作を行っている間に他方がセット位置側で電線保持バーの電線保持部に端子付電線をセットする動作を行うことができる。これにより、端子付電線の移載速度をより向上させることができる。 According to the wire transfer device according to the first aspect, the first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit are configured such that at least one of the first gripping mechanism unit and the second gripping mechanism unit is in the first retracted position or the second reciprocating drive unit. (2) In the state of being moved to the retracted position, the first advance / retreat drive mechanism and the second advance / retreat drive mechanism are passed. For this reason, while one of the first gripping mechanism portion and the second gripping mechanism portion is receiving the terminal-attached wire on the receiving position side, the other is on the wire holding portion of the wire holding bar on the set position side. Can be set. Thereby, the transfer speed of the electric wire with a terminal can be improved more.
 第2の態様に係る電線移載装置によると、第2進退駆動機構部が、第2把持機構部を、第1進退駆動機構部が移動される第1移動領域中の進出位置から第2進退駆動機構部が移動される第2移動領域中で進出位置の斜め上方の第2退避位置までの間で斜め上方に向かう直線経路を含む経路で移動させるため、第2把持機構部の移動距離を短くすることができる。 According to the electric wire transfer device according to the second aspect, the second advance / retreat drive mechanism portion moves the second gripping mechanism portion from the advance position in the first movement region where the first advance / retreat drive mechanism portion is moved to the second advance / retreat position. In order to move the second gripping mechanism part in the second movement region in which the drive mechanism part is moved to a second retraction position that is obliquely above the advance position, including a linear path that is obliquely upward, Can be shortened.
 第3の態様に係る電線移載装置によると、第2進退駆動機構部が、第2把持機構部を昇降移動させる受渡昇降駆動部と、受渡昇降駆動部を第1移動領域中の下降位置と第2移動領域中で下降位置の斜め上方の上昇位置との間で斜めに昇降移動させる間接昇降駆動部とを有している。このため、受渡昇降駆動部を第1移動領域中の下降位置に移動させる構成をより簡易にすることができる。 According to the electric wire transfer device according to the third aspect, the second advancing / retreating drive mechanism unit moves the second gripping mechanism unit up and down, and the delivery elevating drive unit with the lowered position in the first movement region. And an indirect lifting drive unit that moves up and down diagonally between the second moving region and a rising position that is diagonally above the lowering position. For this reason, the structure which moves a delivery raising / lowering drive part to the descent | fall position in a 1st movement area | region can be simplified more.
 第4の態様に係る電線移載装置によると、第2把持機構部が、間接昇降駆動部により受渡昇降駆動部が下降位置に移動された状態で、第1退避位置に移動された第1把持機構部の下方を通り抜け可能に設定されている。このため、受渡昇降駆動部により第2把持機構部が上昇移動されていれば、受渡昇降駆動部が下降位置のままでも、第1把持機構部と第2把持機構部とを受取位置側の領域とセット位置側の領域との間ですれ違わせることができる。これにより、間接昇降駆動部の駆動数を低減でき、駆動費の低減及び耐年数の長期化に寄与する。 According to the wire transfer device according to the fourth aspect, the second gripping mechanism portion is moved to the first retraction position while the delivery lifting drive portion is moved to the lowered position by the indirect lifting drive portion. It is set so that it can pass under the mechanism. For this reason, if the second gripping mechanism portion is moved upward by the delivery lifting / lowering drive unit, the first gripping mechanism unit and the second gripping mechanism unit are moved to the region on the receiving position side even if the delivery lifting / lowering drive unit remains in the lowered position. And the area on the set position side. Thereby, the drive number of an indirect raising / lowering drive part can be reduced, and it contributes to the reduction of drive cost and the prolongation of lifetime.
 第5の態様に係る電線移載装置によると、第1往復駆動機構部及び第2往復駆動機構部が、第1進退駆動機構部と第2進退駆動機構部とを、受取位置側の領域とセット位置側の領域とで交互に移動させるため、端子付電線の受取動作とセット動作とを同時進行させて移載効率をより向上させることができる。 According to the electric wire transfer device according to the fifth aspect, the first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit include the first advance / retreat drive mechanism unit and the second advance / retreat drive mechanism unit, and the region on the receiving position side. Since the movement is alternately performed in the region on the set position side, the receiving operation and the setting operation of the terminal-attached electric wire can be advanced simultaneously to further improve the transfer efficiency.
切断圧着装置と電線移載装置と電線保持バー搬送装置の関係を示す図である。It is a figure which shows the relationship between a cutting | disconnection crimping | compression-bonding apparatus, an electric wire transfer apparatus, and an electric wire holding bar conveyance apparatus. 電線移載装置の平面図である。It is a top view of an electric wire transfer apparatus. 電線移載装置の側面図である。It is a side view of an electric wire transfer apparatus. 電線保持バーの側面図である。It is a side view of an electric wire holding bar. 電線保持バーの平面図である。It is a top view of an electric wire holding bar. 電線移載装置の正面図である。It is a front view of an electric wire transfer apparatus. 電線移載装置の正面図である。It is a front view of an electric wire transfer apparatus. 電線移載装置の正面図である。It is a front view of an electric wire transfer apparatus. 第1移載機構部の側面図である。It is a side view of a 1st transfer mechanism part. 第2移載機構部の側面図である。It is a side view of a 2nd transfer mechanism part. 電線保持バーに端子付電線をセットする様子を示す図である。It is a figure which shows a mode that an electric wire with a terminal is set to an electric wire holding bar. 電線搬送把持部から端子付電線を受け取る様子を示す図である。It is a figure which shows a mode that an electric wire with a terminal is received from an electric wire conveyance holding part.
 以下、実施形態に係る電線移載装置10について説明する(図1~図3参照)。電線移載装置10は、ワイヤーハーネスの製造工程において、製造された端子付電線2を電線保持バー80に移載するための装置である。 Hereinafter, the wire transfer device 10 according to the embodiment will be described (see FIGS. 1 to 3). The wire transfer device 10 is a device for transferring the manufactured terminal-attached wire 2 to the wire holding bar 80 in the wire harness manufacturing process.
 <ワイヤーハーネスの製造工程>
 説明の便宜上、まず、ワイヤーハーネスの製造工程について説明しておく。ワイヤーハーネスは、切断圧着工程、仮結束工程及び組立工程を経て製造される。
<Wire harness manufacturing process>
For convenience of explanation, first, the manufacturing process of the wire harness will be described. The wire harness is manufactured through a cutting and pressing process, a temporary binding process, and an assembly process.
 切断圧着工程は、電線を所定長に調尺して切断すると共に、該電線の端部の被覆を剥離して芯線露出部分に端子を圧着することにより、端子付電線2を製造する工程である。なお、本工程は、調尺機構部72、切断機構部74及び端子圧着機構部76等を有する切断圧着装置70により行うことができる。仮結束工程は、ワイヤーハーネスの一部を構成する小単位の結束形態を製造する工程である。すなわち、ワイヤーハーネスは、複数の仮結束(及び単体の端子付電線2)を組み合わせて形成されることがある。本工程は、端子付電線2の端子をコネクタに挿入、電線を結束等することにより仮結束を製造する。また、必要に応じて電線に対して特殊端子の圧着処理、スプライス接続処理、ツイスト処理等の中間処理が施されることもある。組立工程は、仮結束及び各種端子付電線2を結束等して配索形態に組み立てることにより、完成形態のワイヤーハーネスを製造する工程である。 The cutting / crimping step is a step of manufacturing the electric wire 2 with a terminal by adjusting and cutting the electric wire to a predetermined length, and peeling the coating of the end of the electric wire and crimping the terminal to the exposed portion of the core wire. . In addition, this process can be performed with the cutting and crimping apparatus 70 which has the adjustment mechanism part 72, the cutting mechanism part 74, the terminal crimping mechanism part 76 grade | etc.,. The temporary binding step is a step of manufacturing a small unit binding form constituting a part of the wire harness. That is, the wire harness may be formed by combining a plurality of temporary bundles (and a single terminal-attached electric wire 2). This process manufactures temporary binding by inserting the terminal of the electric wire 2 with a terminal into a connector, bundling an electric wire, etc. In addition, an intermediate process such as a special terminal crimping process, a splice connection process, or a twist process may be performed on the electric wire as necessary. The assembly process is a process of manufacturing a wire harness in a completed form by assembling a temporary bundle and various electric wires 2 with terminals 2 into a wiring form.
 このようにして製造されたワイヤーハーネスは、検査工程等を経て車両又はその他の電気機器に組み込まれる。 The wire harness manufactured in this way is incorporated into a vehicle or other electrical equipment through an inspection process or the like.
 ここでは、上記切断圧着工程において切断圧着装置70により製造された端子付電線2は、仮結束工程に供される際に、仮結束単位で電線保持バー80に保持される。そして、端子付電線は、電線保持バー80に保持された状態で、複数の電線保持バー80を搬送する電線保持バー搬送装置90により循環搬送される。 Here, the terminal-attached electric wire 2 manufactured by the cutting / crimping device 70 in the cutting / crimping step is held by the wire holding bar 80 in a temporary binding unit when being used in the temporary binding step. The electric wire with terminal is circulated and conveyed by the electric wire holding bar conveying device 90 that conveys the plurality of electric wire holding bars 80 while being held by the electric wire holding bar 80.
 本電線移載装置10は、切断圧着装置70により製造された端子付電線2を、電線保持バー搬送装置90により循環搬送される電線保持バー80に移載するために用いられる。この電線移載装置10は、切断圧着装置70と電線保持バー搬送装置90との間に設けられる。 The electric wire transfer device 10 is used to transfer the terminal-attached electric wire 2 manufactured by the cutting and crimping device 70 to the electric wire holding bar 80 that is circulated and conveyed by the electric wire holding bar conveying device 90. The electric wire transfer device 10 is provided between the cutting and crimping device 70 and the electric wire holding bar transport device 90.
 以下、説明の便宜上、切断圧着装置70、電線保持バー80及び電線保持バー搬送装置90について説明しておく。 Hereinafter, for convenience of explanation, the cutting and crimping device 70, the electric wire holding bar 80, and the electric wire holding bar transport device 90 will be described.
 <切断圧着装置>
 切断圧着装置70は、調尺機構部72と、切断機構部74と、端子圧着機構部76と、電線搬送機構部78とを備えている(図1参照)。
<Cutting and crimping device>
The cutting and crimping apparatus 70 includes an adjustment mechanism 72, a cutting mechanism 74, a terminal crimping mechanism 76, and an electric wire transport mechanism 78 (see FIG. 1).
 調尺機構部72は、巻取リール等の電線収納体から連続供給される電線を、設定寸法ずつ調尺して下流側に送給する部分である。この調尺機構部72には、電線の癖を除去する癖取り機構が備えられていることもある。 The adjusting mechanism 72 is a part that adjusts the electric wire continuously supplied from the electric wire storage body such as a take-up reel and feeds it downstream by a set dimension. The adjusting mechanism 72 may be provided with a wrinkle removing mechanism for removing wrinkles of the electric wire.
 切断機構部74は、調尺機構部72の下流側に設けられ、調尺機構部72により設定寸法ずつ送給される電線を該設定寸法に切断すると共に、切断された電線の端部の被覆を剥離する部分である。 The cutting mechanism part 74 is provided on the downstream side of the measuring mechanism part 72, cuts the electric wire fed by the adjusting mechanism part 72 by a set dimension to the set dimension, and covers the end of the cut electric wire. It is a part which peels.
 また、端子圧着機構部76は、切断機構部74の下流側に設けられ、切断機構部74で切断及び被覆を剥離された電線の芯線露出部に端子を圧着する部分である。なお、端子圧着機構部76の上流側に、電線にゴム栓等を装着する機構が設けられていてもよい。 The terminal crimping mechanism 76 is a part that is provided on the downstream side of the cutting mechanism 74 and crimps the terminal to the exposed portion of the core wire of the electric wire that has been cut and stripped by the cutting mechanism 74. A mechanism for attaching a rubber plug or the like to the electric wire may be provided on the upstream side of the terminal crimping mechanism portion 76.
 電線搬送機構部78は、切断機構部74で切断された電線の両端部(端子が圧着される各芯線露出部の手前側部分であって、絶縁被覆の両端部)を把持して、電線を下流側に搬送する部分である。この電線搬送機構部78は、切断機構部74の下流位置から、端子圧着機構部76の処理位置を通過して、端子圧着機構部76の下流側に位置する電線移載装置10が端子付電線2を受け取る受取位置P1まで、端子付電線2(電線)を搬送可能に構成されている。 The electric wire transport mechanism 78 grips both ends of the electric wire cut by the cutting mechanism 74 (the front side of each core wire exposed portion to which the terminal is crimped and both ends of the insulation coating) It is a part conveyed downstream. The electric wire transfer mechanism 78 passes through the processing position of the terminal crimping mechanism 76 from the downstream position of the cutting mechanism 74, and the electric wire transfer device 10 located on the downstream side of the terminal crimping mechanism 76 is connected to the terminal-attached electric wire. It is comprised so that conveyance of the electric wire 2 (terminal wire) with a terminal to the receiving position P1 which receives 2 is possible.
 より具体的には、電線搬送機構部78は、電線を把持及び把持解除可能な複数の電線搬送把持部79(図12参照)を、切断機構部74の下流位置、端子圧着機構部76の処理位置及び受取位置P1を通る経路において循環移動させるように構成されている(図3参照)。電線搬送把持部79は、例えば図12に示すように、一対の把持片を開閉駆動可能に支持した構成を採用することができる。また、電線搬送機構部78は、端子付電線2を、長手方向両端部を隣合う一対の電線搬送把持部79により水平方向に沿った同方向に向けて把持すると共に長手方向中間部を垂らした状態で搬送する。そして、電線搬送把持部79は、切断機構部74の下流位置で電線を把持し、端子圧着処理を経て製造された端子付電線2を受取位置P1で把持解除して電線移載装置10に対して引き渡す。 More specifically, the electric wire conveyance mechanism unit 78 treats a plurality of electric wire conveyance grips 79 (see FIG. 12) that can grasp and release the electric wires, the downstream position of the cutting mechanism unit 74, and the processing of the terminal crimping mechanism unit 76. It is configured so as to circulate in a route passing through the position and the receiving position P1 (see FIG. 3). For example, as shown in FIG. 12, the electric wire conveyance gripping portion 79 can employ a configuration in which a pair of gripping pieces are supported so as to be capable of opening and closing. Moreover, the electric wire conveyance mechanism part 78 hold | grips the electric wire 2 with a terminal toward the same direction along a horizontal direction by a pair of adjacent electric wire conveyance holding parts 79 at both longitudinal ends, and hung the longitudinal direction intermediate part. Transport in state. And the electric wire conveyance holding part 79 hold | grips an electric wire in the downstream position of the cutting mechanism part 74, cancels | releases holding | grip of the electric wire 2 with a terminal manufactured through the terminal crimping process in the receiving position P1, and is with respect to the electric wire transfer apparatus 10. Hand over.
 上記切断圧着装置70の動作制御は、CPU、ROM及びRAM等を備える一般的なマイクロコンピュータによって構成される切断圧着制御ユニット62によって行われる(図1参照)。この切断圧着制御ユニット62は、受取位置P1に端子付電線2の両方の電線端部が把持された一対の電線搬送把持部79が移動されると、受取位置P1に端子付電線2が存在する旨の信号を出力する。 The operation control of the cutting and crimping apparatus 70 is performed by a cutting and crimping control unit 62 configured by a general microcomputer including a CPU, a ROM, a RAM, and the like (see FIG. 1). In this cutting and crimping control unit 62, when a pair of wire conveyance gripping portions 79 in which both ends of the wire 2 with terminals are gripped at the receiving position P1, the terminal-attached wires 2 exist at the receiving position P1. A signal to that effect is output.
 <電線保持バー>
 電線保持バー80は、端子付電線2の電線端部を保持可能な電線保持部82が一列に並んで複数設けられた部材である(図4、図5参照)。この電線保持バー80は、複数の電線保持部82にそれぞれ保持した複数の端子付電線2を、各電線端部が並列状となる形態で保持可能に構成された部材である。電線保持バー80は、複数の電線保持部82が並ぶ方向に長尺に形成され、複数の電線保持部82を支持するバー本体部85を備えている。
<Wire holding bar>
The electric wire holding bar 80 is a member in which a plurality of electric wire holding portions 82 that can hold the electric wire end portion of the electric wire 2 with terminals are arranged in a line (see FIGS. 4 and 5). The electric wire holding bar 80 is a member configured to be able to hold the plurality of terminal-attached electric wires 2 respectively held by the plurality of electric wire holding portions 82 in a form in which the ends of the electric wires are arranged in parallel. The electric wire holding bar 80 is formed long in the direction in which the plurality of electric wire holding portions 82 are arranged, and includes a bar main body portion 85 that supports the plurality of electric wire holding portions 82.
 電線保持部82は、端子付電線2の電線端部を保持する部分であり、一対の弾性挟持片83と、弾性挟持片固定部84とを有している。 The electric wire holding part 82 is a part that holds the electric wire end of the electric wire 2 with a terminal, and has a pair of elastic holding pieces 83 and an elastic holding piece fixing part 84.
 弾性挟持片83は、板状金属材料を打抜き及び屈曲、又は、合成樹脂材料を金型等により成型等することにより形成された部材であり、基端側の平坦部と先端側の湾曲部とを有している。より具体的には、平坦部が平板状に形成されると共に、湾曲部が前記平坦部から連続してなだらかなS字状に湾曲する形状に形成されている。 The elastic clamping piece 83 is a member formed by punching and bending a plate-shaped metal material or molding a synthetic resin material with a mold or the like, and includes a flat portion on the proximal end side and a curved portion on the distal end side. have. More specifically, the flat portion is formed in a flat plate shape, and the curved portion is formed in a shape that curves in a gentle S shape continuously from the flat portion.
 弾性挟持片固定部84は、一対の弾性挟持片83を支持する部分であり、合成樹脂等で全体として略直方体状に形成されている。弾性挟持片固定部84は、一対の弾性挟持片83の先端部が離間する姿勢で平坦部を重ね合わせた状態(背合わせ)で支持可能に構成されている。より具体的には、弾性挟持片固定部84は、一端面で開口し、その開口部を通じて一対の弾性挟持片83を嵌入可能な凹部を有する。弾性挟持片固定部84の内部には、奥側に一対の弾性挟持片83の平坦部を重ね合わせた状態で挟持状に支持する壁部が形成されている。そして、弾性挟持片固定部84は、嵌入された一対の弾性挟持片83を、湾曲部における先端部付近の一部分が互いに近接してその間隔が端子付電線における電線の直径より小さい間隔(接触する場合を含む)で配置される状態で支持する。 The elastic clamping piece fixing portion 84 is a portion that supports the pair of elastic clamping pieces 83, and is formed in a substantially rectangular parallelepiped shape as a whole with synthetic resin or the like. The elastic clamping piece fixing portion 84 is configured to be supported in a state where the flat portions are overlapped (back to back) in a posture in which the distal ends of the pair of elastic clamping pieces 83 are separated from each other. More specifically, the elastic clamping piece fixing portion 84 has an opening at one end surface, and has a recess into which the pair of elastic clamping pieces 83 can be inserted through the opening. Inside the elastic clamping piece fixing portion 84, a wall portion is formed that is supported in a sandwiched manner in a state where the flat portions of the pair of elastic clamping pieces 83 are superimposed on the back side. And the elastic clamping piece fixing | fixed part 84 contact | connects a pair of elastic clamping pieces 83 inserted in the space | interval (distance smaller than the diameter of the electric wire in a terminal-attached electric wire in the part near the front-end | tip part in a curved part mutually. (Including the case) is supported in a state of being arranged.
 そして、一対の弾性挟持片83間に端子付電線2の電線端部を押し込むことにより、該電線端部が一対の弾性挟持片83の湾曲部における近接した部位と弾性挟持片固定部84の開口側端面との間で保持される。 Then, by pushing the wire end portion of the terminal-attached electric wire 2 between the pair of elastic clamping pieces 83, the wire end portion is adjacent to the curved portion of the pair of elastic clamping pieces 83 and the opening of the elastic clamping piece fixing portion 84. It is held between the side end faces.
 なお、上記電線保持部82は、一例であり、他の構成を採用してもよい。例えば、電線保持部として、櫛歯状の部材を有し、該櫛歯間に端子付電線2の電線端部を押し込んで引掛けることにより保持する構成を採用することもできる。 In addition, the said electric wire holding | maintenance part 82 is an example, You may employ | adopt another structure. For example, the electric wire holding portion may have a comb-like member, and a configuration in which the electric wire end portion of the electric wire with terminal 2 is pushed and hooked between the comb teeth can be adopted.
 バー本体部85は、本体基部86と一対の端部部材88とを有している。 The bar body 85 has a body base 86 and a pair of end members 88.
 本体基部86は、棒状(ここでは角柱棒状)に形成され、その長手方向に沿った一側面に上記複数の電線保持部82が並列状に支持されている。より具体的には、本体基部86は、一対の弾性挟持片83が対向する方向に複数の電線保持部82が並ぶ形態で、前記複数の電線保持部82を支持する。例えば、複数の電線保持部82は、本体基部86に対して凹凸嵌合されることにより支持されるとよい。他にも、電線保持部82を本体基部86に対して個別にねじ止め等により固定する構成等を採用してもよい。 The main body base 86 is formed in a rod shape (here, a prismatic rod shape), and the plurality of electric wire holding portions 82 are supported in parallel on one side surface along the longitudinal direction. More specifically, the main body base portion 86 supports the plurality of wire holding portions 82 in a form in which the plurality of wire holding portions 82 are arranged in a direction in which the pair of elastic clamping pieces 83 are opposed to each other. For example, the plurality of wire holding portions 82 may be supported by being concavo-convexly fitted to the main body base 86. In addition, a configuration in which the electric wire holding portion 82 is individually fixed to the main body base 86 by screwing or the like may be employed.
 一対の端部部材88は、本体基部86の長手方向両端部にねじ止め等により固定され、本体基部86に支持された複数の電線保持部82をその並列方向両側から挟み込むように抜止め固定する部分である。 The pair of end members 88 are fixed to both ends in the longitudinal direction of the main body base 86 by screwing or the like, and are secured to the plurality of electric wire holding portions 82 supported by the main body base 86 so as to be sandwiched from both sides in the parallel direction. Part.
 <電線保持バー搬送装置>
 電線保持バー搬送装置90は、端子付電線2を製造する切断圧着装置70の下流側に設置され、複数の電線保持バー80を循環経路に沿って搬送可能に構成されている(図1~図3参照)。この電線保持バー搬送装置90は、複数のバー支持部92と、循環駆動機構部94とを備える。より具体的には、電線保持バー搬送装置90は、複数の電線保持バー80をそれぞれ支持する複数のバー支持部92を、循環駆動機構部94により循環経路に沿って循環移動させる。
<Wire holding bar transport device>
The wire holding bar transfer device 90 is installed on the downstream side of the cutting and crimping device 70 that manufactures the terminal-attached electric wire 2, and is configured to be able to transfer a plurality of wire holding bars 80 along the circulation path (FIGS. 1 to 5). 3). The electric wire holding bar transport device 90 includes a plurality of bar support portions 92 and a circulation drive mechanism portion 94. More specifically, the wire holding bar transport device 90 circulates and moves a plurality of bar support portions 92 that respectively support the plurality of wire holding bars 80 along the circulation path by the circulation drive mechanism portion 94.
 バー支持部92は、複数の電線保持バー80をそれぞれ支持する部分であり、環状の循環経路に沿って循環移動可能に設けられている。ここで、循環経路は、外側に凸となる湾曲経路と直線経路とを含む経路であり、ここでは、半円弧状の一対の湾曲経路と、一対の湾曲経路を結ぶ一対の直線経路とを含む。循環経路は、電線移載装置10により電線保持バー80に端子付電線2が移載されるセット位置P2を通る経路に設定されている。 The bar support portion 92 is a portion that supports each of the plurality of electric wire holding bars 80, and is provided so as to be able to circulate along an annular circulation path. Here, the circulation path is a path including a curved path protruding outward and a straight path, and here includes a pair of semicircular arc-shaped curved paths and a pair of straight paths connecting the pair of curved paths. . The circulation path is set to a path passing through the set position P <b> 2 where the terminal-attached electric wire 2 is transferred to the electric wire holding bar 80 by the electric wire transfer device 10.
 バー支持部92は、上方に向けて開口する長尺な溝状に形成されている。すなわち、バー支持部92は、電線保持バー80を内側に配設した状態で、電線保持部82(弾性挟持片83)が上方を向く姿勢で支持するように構成されている。もっとも、バー支持部92は、電線保持バー80を、少なくともセット位置P2で電線保持部82が上方を向く姿勢で支持可能であればよく、セット位置P2以外で電線保持部82が横を向く姿勢で支持されていてもよい。また、バー支持部92は、支持した電線保持バー80が抜け落ちるのを防ぐために、電線保持バー80の一部分に対して凹凸嵌合可能な嵌合部を有しているとよい(図示省略)。 The bar support portion 92 is formed in a long groove shape that opens upward. That is, the bar support portion 92 is configured to support the electric wire holding portion 82 (the elastic pinching piece 83) in a posture in which the electric wire holding bar 80 is disposed on the inner side, with the electric wire holding portion 82 facing upward. But the bar support part 92 should just be able to support the electric wire holding bar 80 with the attitude | position which the electric wire holding part 82 faces upwards at least by the set position P2, and the attitude | position which the electric wire holding part 82 faces sideways except the setting position P2. It may be supported by. Moreover, the bar support part 92 is good to have a fitting part which can be unevenly fitted to a part of the electric wire holding bar 80 in order to prevent the supported electric wire holding bar 80 from falling off (not shown).
 循環駆動機構部94は、複数のバー支持部92を、循環経路に沿って循環移動させる部分である。この循環駆動機構部94としては、一対の歯車95と、循環チェーン96と、駆動部97とを有する構成を採用できる。 The circulation drive mechanism unit 94 is a part that circulates and moves the plurality of bar support units 92 along the circulation path. As the circulation drive mechanism portion 94, a configuration having a pair of gears 95, a circulation chain 96, and a drive portion 97 can be employed.
 一対の歯車95は、それぞれ平行な回転軸周りに回転可能な平歯車であり、略同一平面上で間隔をあけた位置で、基台部98に対して支持されている。一対の歯車95のうちの一方は、モータ等の駆動部97により回転駆動される。また、環状の循環チェーン96は、一対の歯車95に巻き掛けられて循環経路上(ここでは、循環経路は水平面に略平行な面上)に延在している。そして、駆動部97の回転駆動により、一対の歯車95が回転されると共に循環チェーン96が循環経路に沿って循環回転される。 The pair of gears 95 are spur gears that can rotate around parallel rotation axes, and are supported with respect to the base portion 98 at positions spaced apart on substantially the same plane. One of the pair of gears 95 is rotationally driven by a drive unit 97 such as a motor. The annular circulation chain 96 is wound around a pair of gears 95 and extends on the circulation path (here, the circulation path is on a plane substantially parallel to the horizontal plane). The pair of gears 95 are rotated and the circulation chain 96 is circulated and rotated along the circulation path by the rotational drive of the drive unit 97.
 もっとも、循環駆動機構部94は、一対の歯車95と循環チェーン96との組合せを有する構成に限らず、一対のプーリーと駆動ベルトとの組合せを有する構成等、複数のバー支持部92を循環経路に沿って循環移動させることが可能な構成であればよい。 However, the circulation drive mechanism portion 94 is not limited to a configuration having a combination of a pair of gears 95 and a circulation chain 96, but a configuration having a combination of a pair of pulleys and a drive belt. Any configuration can be used as long as it can be circularly moved along.
 上記複数のバー支持部92は、循環チェーン96に対して支持されている。より具体的には、複数のバー支持部92は、複数の電線保持バー80をそれぞれ循環経路の外方に向けて延出させる姿勢で支持可能に設けられている。また、複数のバー支持部92は、循環チェーン96の延在方向において略等間隔で設けられている。例えば、複数のバー支持部92は、基台部98上を走行可能な走行部を介して循環チェーン96に支持され、循環チェーン96の回転移動に伴う走行部の移動により循環経路上を移動するように設けられているとよい。 The plurality of bar support portions 92 are supported with respect to the circulation chain 96. More specifically, the plurality of bar support portions 92 are provided so as to be supported in a posture in which the plurality of electric wire holding bars 80 are extended toward the outside of the circulation path. Further, the plurality of bar support portions 92 are provided at substantially equal intervals in the extending direction of the circulation chain 96. For example, the plurality of bar support portions 92 are supported by the circulation chain 96 via a traveling portion capable of traveling on the base portion 98, and move on the circulation path by the movement of the traveling portion accompanying the rotational movement of the circulation chain 96. It is good to be provided.
 <電線移載装置>
 電線移載装置10は、切断圧着装置70における端子圧着機構部76の下流側の受取位置P1に配置された端子付電線2を、電線保持バー搬送装置90によりセット位置P2に移動された電線保持バー80に移載するように構成されている(図2、図3参照)。この電線移載装置10は、第1移載機構部20と第2移載機構部40とを備えている。概略的には、電線移載装置10は、第1移載機構部20及び第2移載機構部40それぞれにより、交互に受取位置P1からセット位置P2に端子付電線2を搬送し、切断圧着装置70から電線保持バー80に端子付電線2を移載する。第1移載機構部20及び第2移載機構部40は、柱部により受取位置P1とセット位置P2とを結ぶ方向に沿って延在するように配設された基台部16に支持されている。
<Wire transfer device>
The electric wire transfer device 10 has the electric wire holding device in which the electric wire with terminal 2 arranged at the receiving position P1 on the downstream side of the terminal crimping mechanism portion 76 in the cutting and crimping device 70 is moved to the set position P2 by the electric wire holding bar conveying device 90. It is comprised so that it may transfer to the bar 80 (refer FIG. 2, FIG. 3). The electric wire transfer device 10 includes a first transfer mechanism unit 20 and a second transfer mechanism unit 40. Schematically, the electric wire transfer device 10 alternately conveys the electric wire 2 with a terminal from the receiving position P1 to the set position P2 by the first transfer mechanism unit 20 and the second transfer mechanism unit 40, and is cut and crimped. The terminal-attached electric wire 2 is transferred from the device 70 to the electric wire holding bar 80. The first transfer mechanism portion 20 and the second transfer mechanism portion 40 are supported by the base portion 16 disposed so as to extend along the direction connecting the receiving position P1 and the set position P2 by the pillar portion. ing.
 第1移載機構部20は、一対の第1把持機構部22と、一対の第1進退駆動機構部26と、一対の第1往復駆動機構部32とを有し、端子付電線2の両電線端部をそれぞれ把持する一対の第1把持機構部22を、それぞれ一対の第1進退駆動機構部26及び一対の第1往復駆動機構部32により移動させるように構成されている(図6~図9参照)。 The first transfer mechanism unit 20 includes a pair of first gripping mechanism units 22, a pair of first advance / retreat drive mechanism units 26, and a pair of first reciprocating drive mechanism units 32. The pair of first gripping mechanism portions 22 that respectively grip the wire ends are configured to be moved by the pair of first advance / retreat drive mechanism portions 26 and the pair of first reciprocating drive mechanism portions 32 (FIG. 6 to FIG. 6). (See FIG. 9).
 第1進退駆動機構部26は、受取位置P1とセット位置P2とを結ぶ方向に直交する平面上で、第1把持機構部22を移動させる駆動機構部である。また、第1往復駆動機構部32は、受取位置P1とセット位置P2とを結ぶ方向に沿って、第1進退駆動機構部26(第1把持機構部22)を移動させる駆動機構部である。より具体的には、第1往復駆動機構部32は、第1進退駆動機構部26を受取位置P1及びセット位置P2の上方に延在する第1移動領域R1で移動させるように構成されている(図6、図7参照)。 The first advance / retreat drive mechanism section 26 is a drive mechanism section that moves the first gripping mechanism section 22 on a plane orthogonal to the direction connecting the receiving position P1 and the set position P2. The first reciprocating drive mechanism 32 is a drive mechanism that moves the first advance / retreat drive mechanism 26 (first gripping mechanism 22) along the direction connecting the receiving position P1 and the set position P2. More specifically, the first reciprocating drive mechanism 32 is configured to move the first advance / retreat drive mechanism 26 in a first movement region R1 extending above the receiving position P1 and the set position P2. (See FIGS. 6 and 7).
 一対の第1把持機構部22は、端子付電線2の両電線端部をそれぞれ把持及び把持解除可能に構成されている(図9参照)。より具体的には、第1把持機構部22は、一対の把持片23を接離移動可能に構成され、その間に端子付電線2の電線端部を挟んで把持する。ここでは、一対の把持片23は、略U字形状に形成されている。そして、一対の把持片23は、端子付電線2を、略U字形状の内側を対向部同士を結ぶ方向に横切る形態で把持し、電線保持バー80の電線保持部82及び電線搬送機構部78の電線搬送把持部79をまたぐ形態で各々に対してセット及び受け取り可能である(図11、図12参照)。すなわち、一対の把持片23は、電線保持部82及び電線搬送把持部79の両側に延在する端子付電線2の電線端部の2箇所を把持する。換言すると、一対の把持片23は、略U字形状の対向部同士の間隔が、電線保持部82及び電線搬送把持部79の端子付電線2の電線端部の延在方向より大きく設定されている。また、第1把持機構部22は、一対の把持片23をエアシリンダ、電磁アクチュエータ等の開閉駆動部24により接離移動させるように構成されている。ここでは、開閉駆動部24は、一方の把持片23を他方の把持片23に対して(ここでは水平方向に沿って)相対接離移動させている。 The pair of first gripping mechanism portions 22 is configured to be able to grip and release both ends of the electric wire 2 with terminal (see FIG. 9). More specifically, the 1st holding | grip mechanism part 22 is comprised so that a pair of holding piece 23 can be contacted / separated, and it clamps on both sides of the electric wire edge part of the electric wire 2 with a terminal. Here, the pair of gripping pieces 23 are formed in a substantially U shape. The pair of gripping pieces 23 grips the terminal-attached electric wire 2 in a form that crosses the substantially U-shaped inner side in the direction connecting the opposing portions, and the electric wire holding portion 82 and the electric wire transport mechanism portion 78 of the electric wire holding bar 80. Can be set and received with respect to each other in a form straddling the wire conveyance gripping portion 79 (see FIGS. 11 and 12). That is, the pair of gripping pieces 23 grips two locations of the wire end portions of the terminal-attached electric wire 2 extending on both sides of the wire holding portion 82 and the wire conveyance gripping portion 79. In other words, in the pair of gripping pieces 23, the distance between the substantially U-shaped facing portions is set to be larger than the extending direction of the wire end portions of the wire 2 with terminals of the wire holding portion 82 and the wire conveyance gripping portion 79. Yes. The first gripping mechanism portion 22 is configured to move the pair of gripping pieces 23 toward and away from each other by an opening / closing drive portion 24 such as an air cylinder or an electromagnetic actuator. Here, the opening / closing drive unit 24 moves one grip piece 23 relative to and away from the other grip piece 23 (here, along the horizontal direction).
 一対の第1進退駆動機構部26は、一対の第1把持機構部22を、それぞれ、進出位置A(図7の2点鎖線で示した第1把持機構部22参照)と第1退避位置C1(図6参照)との間で移動させるように構成されている。進出位置Aは、受取位置P1に配置された端子付電線2を受取可能又は端子付電線2をセット位置P2に配置された電線保持バー80の複数の電線保持部82のいずれか1つにセット可能な位置である。そして、進出位置Aにおいて、第1把持機構部22の一対の把持片23は、電線保持部82又は電線搬送把持部79を跨ぐ形態で配設される。また、第1退避位置C1は、進出位置Aから退避した位置、より具体的には、進出位置Aの上方の位置である。そして、第1退避位置C1において、第1把持機構部22の一対の把持片23は、電線保持部82又は電線搬送把持部79を跨いでいない状態にある。 The pair of first advancing / retracting drive mechanism portions 26 are configured to move the pair of first gripping mechanism portions 22 into the advanced position A (see the first gripping mechanism portion 22 indicated by a two-dot chain line in FIG. 7) and the first retracted position C1, respectively. (Refer to FIG. 6). The advancing position A is capable of receiving the terminal-attached electric wire 2 arranged at the receiving position P1, or sets the terminal-attached electric wire 2 to any one of the plurality of electric wire holding portions 82 of the electric wire holding bar 80 arranged at the set position P2. This is a possible position. At the advanced position A, the pair of gripping pieces 23 of the first gripping mechanism portion 22 are disposed in a form straddling the wire holding portion 82 or the wire transport gripping portion 79. The first retreat position C1 is a position retreated from the advance position A, more specifically, a position above the advance position A. And in the 1st retraction position C1, a pair of holding piece 23 of the 1st holding | grip mechanism part 22 exists in the state which does not straddle the electric wire holding part 82 or the electric wire conveyance holding part 79. FIG.
 第1進退駆動機構部26は、間接昇降駆動部27と、受渡昇降駆動部28とを有している。間接昇降駆動部27及び受渡昇降駆動部28は、エアシリンダ等のリニアアクチュエータにより構成されている。 The first advance / retreat drive mechanism unit 26 includes an indirect elevating drive unit 27 and a delivery elevating drive unit 28. The indirect elevating drive unit 27 and the delivery elevating drive unit 28 are configured by linear actuators such as air cylinders.
 より具体的には、第1進退駆動機構部26は、受渡昇降駆動部28により第1把持機構部22を直接昇降移動させると共に、間接昇降駆動部27により受渡昇降駆動部28を昇降移動させることにより第1把持機構部22を間接的に昇降移動させる。ここでは、間接昇降駆動部27及び受渡昇降駆動部28は、鉛直方向に沿って直線駆動するように配設されている。すなわち、第1把持機構部22は、第1移動領域R1上で受取位置P1とセット位置P2とを結ぶ方向及び上下方向に移動される(図6、図9参照)。 More specifically, the first advancing / retracting drive mechanism unit 26 moves the first gripping mechanism unit 22 directly up and down by the delivery lifting drive unit 28 and moves the delivery lifting drive unit 28 up and down by the indirect lifting drive unit 27. Thus, the first gripping mechanism 22 is indirectly moved up and down. Here, the indirect elevating drive unit 27 and the delivery elevating drive unit 28 are arranged so as to be linearly driven along the vertical direction. That is, the 1st holding | grip mechanism part 22 is moved to the direction which connects the receiving position P1 and the set position P2, and the up-down direction on 1st movement area | region R1 (refer FIG. 6, FIG. 9).
 そして、受渡昇降駆動部28は、間接昇降駆動部27により下降移動された状態で、第1把持機構部22を、進出位置Aと、進出位置Aと第1退避位置C1との間の予備退避位置B(図6の実線で示した第1把持機構部22参照)との間で移動させることが可能に構成されている。また、間接昇降駆動部27により上昇移動された状態の受渡昇降駆動部28が第1把持機構部22を上昇移動させた位置が第1退避位置C1である。 Then, the delivery raising / lowering drive unit 28 is moved by the indirect raising / lowering drive unit 27 to move the first gripping mechanism unit 22 between the advance position A and the advance position A and the first retract position C1. It is configured to be movable between the position B (see the first gripping mechanism portion 22 indicated by the solid line in FIG. 6). The position where the delivery raising / lowering drive unit 28 moved up by the indirect lifting drive unit 27 moves the first gripping mechanism unit 22 up is the first retraction position C1.
 一対の第1往復駆動機構部32は、一対の第1進退駆動機構部26を、それぞれ、受取位置P1側の領域と、セット位置P2側の領域との間で移動させるように構成されている(図2、図3参照)。ここで、受取位置P1側の領域及びセット位置P2側の領域とは、第1移動領域R1(及び後述する移動領域R2)における受取位置P1側の領域及びセット位置P2側の領域である。すなわち、ここでは、第1往復駆動機構部32は、受取位置P1の上方の領域とセット位置P2の上方の領域との間で、第1進退駆動機構部26を移動させる。 The pair of first reciprocating drive mechanism portions 32 are configured to move the pair of first advance / retreat drive mechanism portions 26 between an area on the receiving position P1 side and an area on the set position P2 side, respectively. (See FIGS. 2 and 3). Here, the region on the receiving position P1 side and the region on the set position P2 side are a region on the receiving position P1 side and a region on the set position P2 side in the first moving region R1 (and a moving region R2 described later). That is, here, the first reciprocating drive mechanism 32 moves the first advancing / retreating drive mechanism 26 between the area above the receiving position P1 and the area above the set position P2.
 より具体的には、一対の第1往復駆動機構部32は、それぞれ、一対の第1進退駆動機構部26を、受取位置P1で一対の第1把持機構部22が端子付電線2の両電線端部を把持する一対の電線搬送把持部79に対応する位置に移動させる(図3参照)。また、一対の第1往復駆動機構部32は、それぞれ、一対の第1進退駆動機構部26を、セット位置P2のうち把持した端子付電線2のセット対象となる2つの電線保持部82に対応する位置に移動させる(図4、図5参照)。ここで、対応する位置とは、各第1把持機構部22が、受取位置P1に配置された電線搬送把持部79又はセット位置P2に配置された電線保持バー80のうちの保持主体となる2つの電線保持部82の真上に配置される位置である。 More specifically, each of the pair of first reciprocating drive mechanisms 32 includes a pair of first advance / retreat drive mechanisms 26, and the pair of first gripping mechanisms 22 at the receiving position P1. It moves to the position corresponding to a pair of electric wire conveyance holding part 79 which hold | grips an edge part (refer FIG. 3). Further, the pair of first reciprocating drive mechanism portions 32 correspond to the two electric wire holding portions 82 that are the targets of setting the paired electric wires 2 held in the set position P2 of the pair of first advance / retreat drive mechanism portions 26, respectively. (See FIGS. 4 and 5). Here, the corresponding position means that each first gripping mechanism portion 22 is a main holding body of the electric wire transport gripping portion 79 arranged at the receiving position P1 or the electric wire holding bar 80 arranged at the set position P2. It is a position arranged just above the two electric wire holding portions 82.
 第1往復駆動機構部32は、ガイドレール33と、一対の移動基部34と、一対の往復駆動部36とを有している。より具体的には、第1往復駆動機構部32は、ガイドレール33に対して長手方向に移動可能に支持されると共に一対の第1進退駆動機構部26をそれぞれ支持する一対の移動基部34を、一対の往復駆動部36によってそれぞれガイドレール33に沿って移動させることにより、一対の第1進退駆動機構部26をそれぞれ移動させるように構成されている。 The first reciprocating drive mechanism portion 32 includes a guide rail 33, a pair of moving base portions 34, and a pair of reciprocating drive portions 36. More specifically, the first reciprocating drive mechanism portion 32 includes a pair of moving base portions 34 that are supported so as to be movable in the longitudinal direction with respect to the guide rail 33 and that respectively support the pair of first advance / retreat drive mechanism portions 26. The pair of first reciprocating drive units 36 are moved along the guide rails 33 to move the pair of first advance / retreat drive mechanism units 26, respectively.
 ガイドレール33は、長尺直線状に形成され、受取位置P1とセット位置P2とを結ぶ方向(ここでは水平方向)に沿って延在する形態で配設されている(図3参照)。このガイドレール33は、基台部16の一方の側部に固定されている。また、ガイドレール33は、受取位置P1に配置された上流側の電線搬送把持部79の上方の位置から、セット位置P2に配置された電線保持バー80のうち切断圧着装置70から最も離れた電線保持部82の上方の位置を含む領域に亘って直線状に延在するように設けられている。 The guide rail 33 is formed in the shape of a long straight line, and is arranged in a form extending along a direction (here, the horizontal direction) connecting the receiving position P1 and the set position P2 (see FIG. 3). The guide rail 33 is fixed to one side portion of the base portion 16. Further, the guide rail 33 is an electric wire farthest from the cutting and crimping device 70 in the electric wire holding bar 80 arranged at the set position P2 from the position above the electric wire conveyance gripping portion 79 on the upstream side arranged at the receiving position P1. It is provided so as to extend linearly over a region including a position above the holding portion 82.
 一対の移動基部34は、1つのガイドレール33に対して長手方向に沿って相対接離移動可能に凹凸嵌合する形態で支持されている(図6、図9参照)。また、一対の第1進退駆動機構部26は、一対の移動基部34に対してそれぞれネジ止め等により固定されているとよい。これにより、一対の第1進退駆動機構部26は、それぞれガイドレール33に沿って移動可能に支持される。 The pair of moving bases 34 is supported in a form of concave and convex fitting so as to be movable toward and away from one guide rail 33 along the longitudinal direction (see FIGS. 6 and 9). The pair of first advancing / retracting drive mechanism portions 26 may be fixed to the pair of moving base portions 34 by screws or the like. Accordingly, the pair of first advance / retreat drive mechanism portions 26 are supported so as to be movable along the guide rails 33.
 往復駆動部36は、一対のプーリー37と、一方のプーリー37を正逆両方向に回転駆動可能なモータ38と、一対のプーリー37に巻き掛けられた環状の駆動ベルト39とを有している(図2、図3参照)。 The reciprocating drive unit 36 includes a pair of pulleys 37, a motor 38 that can rotationally drive one pulley 37 in both forward and reverse directions, and an annular drive belt 39 wound around the pair of pulleys 37 ( (See FIGS. 2 and 3).
 一対のプーリー37は、基台部16の一側部に対して平行な(ここでは水平方向に沿った)軸周りに回転可能に支持されている。一対のプーリー37のうち一方(図2、図3では電線保持バー搬送装置90側)のプーリー37は、モータ38により回転駆動可能に配置されている。なお、モータ38も基台部16に支持されている。また、移動基部34は、駆動ベルト39の延在方向一部に固定されている。ここでは、移動基部34は、駆動ベルト39のうち受取位置P1とセット位置P2とを結ぶ方向に沿って延在する下側の部分に固定されている。 The pair of pulleys 37 is supported so as to be rotatable around an axis parallel (here, along the horizontal direction) to one side of the base portion 16. One of the pair of pulleys 37 (on the side of the electric wire holding bar conveyance device 90 in FIGS. 2 and 3) is arranged so as to be rotationally driven by a motor 38. The motor 38 is also supported by the base 16. Further, the moving base 34 is fixed to a part of the driving belt 39 in the extending direction. Here, the moving base 34 is fixed to a lower portion of the drive belt 39 that extends along the direction connecting the receiving position P1 and the set position P2.
 そして、往復駆動部36は、モータ38の正逆両方向への回転駆動によって、駆動ベルト39に固定された移動基部34を受取位置P1とセット位置P2との間で往復移動させるように構成されている。 The reciprocating drive unit 36 is configured to reciprocate the moving base 34 fixed to the drive belt 39 between the receiving position P1 and the set position P2 by rotating the motor 38 in both forward and reverse directions. Yes.
 往復駆動部36は、一対の移動基部34をそれぞれガイドレール33に沿って移動させるため、略同じ高さ位置に並列状に一対配設されている(図2参照)。すなわち、各一対のプーリー37及び各駆動ベルト39は、異なる平行面上で動作するように位置設定されている。より具体的には、一対の往復駆動部36における一対のプーリー37、モータ38及び駆動ベルト39は、各一対のプーリー37及び各モータ38同士の干渉を避けるため、受取位置P1とセット位置P2とを結ぶ方向にずれて配置されている。 The reciprocating drive unit 36 is disposed in parallel at a substantially same height position in order to move the pair of moving bases 34 along the guide rails 33 (see FIG. 2). That is, each pair of pulleys 37 and each drive belt 39 are set to operate on different parallel surfaces. More specifically, the pair of pulleys 37, the motor 38, and the drive belt 39 in the pair of reciprocating drive units 36 are provided with a receiving position P1 and a set position P2 in order to avoid interference between each pair of pulleys 37 and each motor 38. Are displaced in the direction connecting the two.
 また、一対の第1進退駆動機構部26は、受取位置P1とセット位置P2とを結ぶ方向に沿って並んで配置されるように、一対の駆動ベルト39にそれぞれ固定された一対の移動基部34にそれぞれ支持されている(図9参照)。そして、一対の第1把持機構部22も受取位置P1とセット位置P2とを結ぶ方向に沿って並んで配置されている。 In addition, the pair of first advance / retreat drive mechanisms 26 are arranged in a line along a direction connecting the receiving position P1 and the set position P2, and a pair of moving bases 34 fixed to the pair of drive belts 39, respectively. (See FIG. 9). And a pair of 1st holding | grip mechanism part 22 is also arrange | positioned along with the direction which connects the receiving position P1 and the set position P2.
 第2移載機構部40は、第2把持部42と、第2進退駆動機構部46と、第2受渡移動駆動部52とを有している(図6~図8、図10参照)。より具体的には、第2移載機構部40は、端子付電線2の両電線端部をそれぞれ把持する一対の第2把持機構部42を、それぞれ一対の第2進退駆動機構部46及び一対の第2往復駆動機構部52により移動させるように構成されている。 The second transfer mechanism section 40 includes a second gripping section 42, a second advancing / retreating driving mechanism section 46, and a second delivery movement driving section 52 (see FIGS. 6 to 8 and FIG. 10). More specifically, the second transfer mechanism section 40 includes a pair of second gripping mechanism sections 42 that respectively grip both ends of the electric wire 2 with terminal, and a pair of second advance / retreat drive mechanism sections 46 and a pair. The second reciprocating drive mechanism unit 52 is configured to move.
 第2進退駆動機構部46は、受取位置P1とセット位置P2とを結ぶ方向に直交する平面上で、第2把持機構部42を移動させる駆動機構部である。また、第2往復駆動機構部52は、受取位置P1とセット位置P2とを結ぶ方向に沿って、第2進退駆動機構部46(第2把持機構部42)を移動させる駆動機構部である。より具体的には、第2往復駆動機構部52は、第2進退駆動機構部46を第1移動領域R1の側方に並行して延在する第2移動領域R2で移動させるように構成されている(図2、図6参照)。 The second advance / retreat drive mechanism 46 is a drive mechanism that moves the second gripping mechanism 42 on a plane orthogonal to the direction connecting the receiving position P1 and the set position P2. The second reciprocating drive mechanism 52 is a drive mechanism that moves the second advance / retreat drive mechanism 46 (second gripping mechanism 42) along the direction connecting the receiving position P1 and the set position P2. More specifically, the second reciprocating drive mechanism 52 is configured to move the second advance / retreat drive mechanism 46 in the second movement region R2 extending in parallel to the side of the first movement region R1. (See FIGS. 2 and 6).
 一対の第2把持機構部42は、端子付電線2の両電線端部をそれぞれ把持及び把持解除可能に構成されている。より具体的には、第2把持機構部42は、一対の把持片43を接離移動可能に構成され、その間に端子付電線2の電線端部を挟んで把持する。ここでは、一対の把持片43は、一対の把持片23と同様に略U字形状に形成されている。また、第1把持機構部42は、一対の把持片43を開閉駆動部44により接離移動させるように構成されている。 The pair of second gripping mechanism portions 42 are configured to be capable of gripping and releasing the both ends of the electric wires 2 with terminals. More specifically, the 2nd holding | grip mechanism part 42 is comprised so that a pair of holding piece 43 can be contacted / separated, and it clamps on both sides of the electric wire edge part of the electric wire 2 with a terminal. Here, the pair of gripping pieces 43 are formed in a substantially U shape like the pair of gripping pieces 23. In addition, the first gripping mechanism unit 42 is configured to move the pair of gripping pieces 43 toward and away from each other by the opening / closing drive unit 44.
 一対の第2進退駆動機構部46は、一対の第2把持機構部42を、それぞれ、進出位置A(図6の2点鎖線で示した第2把持機構部42参照)と、進出位置Aから退避した第2退避位置C2(図7参照)との間で移動させるように構成されている。進出位置Aは、第1把持機構部22の進出位置Aと同じ位置である。また、第2退避位置C2は、進出位置Aの斜め上方の位置であり、第2把持機構部42が電線保持部82又は電線搬送把持部79をまたがない位置である。この第2退避位置C2は、第1把持機構部22の第1退避位置C1とは異なる位置である。ず図8には、第1把持機構部22及び第2把持機構部42がそれぞれ第1退避位置C1又は第2退避位置C2に配置された状態を示している。 The pair of second advancing / retreating drive mechanism units 46 moves the pair of second gripping mechanism units 42 from the advanced position A (see the second gripping mechanism part 42 indicated by a two-dot chain line in FIG. 6) and the advanced position A, respectively. It is configured to move between the retracted second retracted position C2 (see FIG. 7). The advance position A is the same position as the advance position A of the first gripping mechanism 22. Further, the second retreat position C2 is a position obliquely above the advance position A, and is a position where the second gripping mechanism portion 42 does not straddle the electric wire holding portion 82 or the electric wire conveyance gripping portion 79. The second retraction position C2 is a position different from the first retraction position C1 of the first gripping mechanism portion 22. FIG. 8 shows a state in which the first gripping mechanism portion 22 and the second gripping mechanism portion 42 are disposed at the first retracted position C1 or the second retracted position C2, respectively.
 また、第2進退駆動機構部46は、第2把持機構部42を、第1移動領域R1上の進出位置Aから第2移動領域R2上の第2退避位置C2までの間で斜め上方に向かう直線経路を含む経路で移動させるように構成されている。より具体的には、第2進退駆動機構部46は、間接昇降駆動部47と、受渡昇降駆動部48とを有している。そして、第2進退駆動機構部46は、受渡昇降駆動部48により第2把持機構部42を直接昇降移動させると共に、間接昇降駆動部47により受渡昇降駆動部48を昇降移動させることにより第2把持機構部42を間接的に昇降移動させる。 The second advancing / retreating drive mechanism unit 46 moves the second gripping mechanism unit 42 obliquely upward from the advance position A on the first movement region R1 to the second retraction position C2 on the second movement region R2. It is configured to move along a route including a straight route. More specifically, the second advancing / retreating drive mechanism unit 46 includes an indirect elevating drive unit 47 and a delivery elevating drive unit 48. Then, the second advancing / retreating drive mechanism unit 46 moves the second gripping mechanism unit 42 directly up and down by the delivery lifting / lowering driving unit 48 and moves the delivery / lifting driving unit 48 up and down by the indirect lifting / lowering driving unit 47 to perform the second gripping. The mechanism part 42 is moved up and down indirectly.
 ここでは、間接昇降駆動部47は、受渡昇降駆動部48を、第1移動領域R1上の下降位置と、第2移動領域R2上で下降位置の斜め上方の上昇位置との間で斜めに昇降移動させるように配設されている。ここで、前記下降位置とは、受取位置P1に配置された電線搬送把持部79の真上の位置及びセット位置P2に配置された電線保持バー80の真上の位置である。一方、受渡昇降駆動部48は、第2把持機構部42を、鉛直方向に沿って直線駆動するように配設されている。 Here, the indirect elevating drive unit 47 elevates and lowers the delivery elevating drive unit 48 obliquely between a lowered position on the first movement region R1 and an elevated position obliquely above the lowered position on the second movement region R2. It is arranged to move. Here, the lowered position is a position directly above the wire conveyance gripping portion 79 disposed at the receiving position P1 and a position directly above the wire holding bar 80 disposed at the set position P2. On the other hand, the delivery raising / lowering drive part 48 is arrange | positioned so that the 2nd holding | grip mechanism part 42 may drive linearly along a perpendicular direction.
 また、上記間接昇降駆動部47及び受渡昇降駆動部48は、エアシリンダ等のリニアアクチュエータで構成されている。 Further, the indirect lifting drive unit 47 and the delivery lifting drive unit 48 are constituted by linear actuators such as air cylinders.
 そして、受渡昇降駆動部48は、上昇位置から間接昇降駆動部47により斜め下方の下降位置に下降移動された状態で、第2把持機構部42を、進出位置Aと、進出位置Aの上方の予備退避位置B(図6の実線で示した第2把持機構部42参照)との間で移動させることが可能に構成されている。なお、第2把持機構部42の予備退避位置Bは、第1把持機構部22の予備退避位置Bと同じ位置である(もっとも、異なる位置であってもよい)。また、下降位置から間接昇降駆動部47により斜め上方の上昇位置に上昇移動された状態の受渡昇降駆動部48が第2把持機構部42を上昇移動させた位置が第2退避位置C2である。 The delivery raising / lowering drive unit 48 is moved downward from the raised position to the lowering position obliquely downward by the indirect raising / lowering driving unit 47, and moves the second gripping mechanism unit 42 to the advanced position A and the advanced position A. It is configured to be able to move between the preliminary retracted position B (see the second gripping mechanism portion 42 indicated by the solid line in FIG. 6). The preliminary retraction position B of the second gripping mechanism unit 42 is the same position as the preliminary retraction position B of the first gripping mechanism unit 22 (although it may be a different position). Further, the position at which the delivery raising / lowering driving unit 48 in the state of being lifted and moved obliquely upward by the indirect raising / lowering driving unit 47 from the lowered position moves the second gripping mechanism unit 42 upward is the second retraction position C2.
 一対の第2往復駆動機構部52は、一対の第2進退駆動機構部46を、それぞれ、第2移動領域R2において受取位置P1側の領域とセット位置P2側の領域との間で移動させるように構成されている(図2、図3参照)。より具体的には、一対の第2往復駆動機構部52は、それぞれ、一対の第2進退駆動機構部46を、受取位置P1で一対の第2把持機構部42が端子付電線2の両電線端部を把持する一対の電線搬送把持部79に対応する位置に移動させる。また、一対の第2往復駆動機構部52は、それぞれ、一対の第2進退駆動機構部46を、セット位置P2に配置された電線保持バー80のうち把持した端子付電線2のセット対象となる2つの電線保持部82に対応する位置に移動させる。 The pair of second reciprocating drive mechanisms 52 moves the pair of second reciprocating drive mechanisms 46 between the receiving position P1 side area and the set position P2 side area in the second movement area R2. (See FIGS. 2 and 3). More specifically, each of the pair of second reciprocating drive mechanisms 52 includes a pair of second advance / retreat drive mechanisms 46, and the pair of second gripping mechanisms 42 at the receiving position P1 serves as both wires of the terminal-equipped electric wire 2. It moves to the position corresponding to a pair of electric wire conveyance holding part 79 which hold | grips an edge part. In addition, the pair of second reciprocating drive mechanism portions 52 are set targets of the terminal-attached electric wires 2 gripped by the pair of second advance / retreat drive mechanism portions 46 of the electric wire holding bars 80 arranged at the set position P2. The position is moved to a position corresponding to the two electric wire holding portions 82.
 第2往復駆動機構部52は、ガイドレール53と、一対の移動基部54と、一対の往復駆動部56とを有している。より具体的には、第2往復駆動機構部52は、ガイドレール53に対して長手方向に移動可能に支持されると共に一対の第1進退駆動機構部56をそれぞれ支持する一対の移動基部54を、一対の往復駆動部56によってそれぞれガイドレール53に沿って移動させることにより、一対の第2進退駆動機構部46をそれぞれ移動させるように構成されている。 The second reciprocating drive mechanism portion 52 includes a guide rail 53, a pair of moving base portions 54, and a pair of reciprocating drive portions 56. More specifically, the second reciprocating drive mechanism portion 52 includes a pair of moving base portions 54 that are supported so as to be movable in the longitudinal direction with respect to the guide rail 53 and support the pair of first advance / retreat drive mechanism portions 56. The pair of second advancing / retreating drive mechanism portions 46 are respectively moved by being moved along the guide rails 53 by the pair of reciprocating drive portions 56.
 ガイドレール53は、長尺直線状に形成され、受取位置P1とセット位置P2とを結ぶ方向(ここでは水平方向)に沿って延在する形態で配設されている。このガイドレール53は、ガイドレール33と並行する形態で基台部16の他方の側部に固定されている。また、ガイドレール53は、受取位置P1の上方の位置からセット位置P2のうち電線保持バー80の切断圧着装置70から最も離れた電線保持部82の上方の位置を含む領域に延在するように設けられている。 The guide rail 53 is formed in a long linear shape and is arranged in a form extending along a direction (here, a horizontal direction) connecting the receiving position P1 and the set position P2. The guide rail 53 is fixed to the other side portion of the base portion 16 in a form parallel to the guide rail 33. Further, the guide rail 53 extends from a position above the receiving position P1 to an area including a position above the wire holding portion 82 farthest from the cutting and crimping device 70 of the wire holding bar 80 in the set position P2. Is provided.
 一対の移動基部54は、1つのガイドレール53に対して長手方向に沿って相対接離移動可能に凹凸嵌合する形態で支持されている。また、一対の第1進退駆動機構部46は、一対の移動基部54に対して固定されている。これにより、一対の第1進退駆動機構部46は、それぞれガイドレール53に沿って移動可能に支持される。 The pair of moving bases 54 are supported in a form in which the guide rails 53 are unevenly fitted so as to be movable toward and away from each other along the longitudinal direction. Further, the pair of first advance / retreat drive mechanism portions 46 are fixed to the pair of movement base portions 54. Accordingly, the pair of first advance / retreat drive mechanism portions 46 are supported so as to be movable along the guide rails 53.
 往復駆動部56は、一対のプーリー57と、一方のプーリー57を正逆両方向に回転駆動可能なモータ58と、一対のプーリー57に巻き掛けられた環状の駆動ベルト59とを有している。 The reciprocating drive unit 56 includes a pair of pulleys 57, a motor 58 capable of rotationally driving one pulley 57 in both forward and reverse directions, and an annular drive belt 59 wound around the pair of pulleys 57.
 一対のプーリー57は、基台部16の他側部に対して平行な(ここでは水平方向に沿った)軸周りに回転可能に支持されている。一対のプーリー57のうち一方(図2では電線保持バー搬送装置90側)のプーリー57は、モータ58により回転駆動可能に配置されている。なお、モータ58も基台部16に支持されている。また、移動基部54は、駆動ベルト59の延在方向一部に固定されている。ここでは、移動基部54は、駆動ベルト59のうち受取位置P1とセット位置P2とを結ぶ方向に沿って延在する下側の部分に固定されている。 The pair of pulleys 57 is supported so as to be rotatable around an axis parallel to the other side of the base portion 16 (here, along the horizontal direction). One of the pair of pulleys 57 (on the electric wire holding bar conveyance device 90 side in FIG. 2) is arranged so as to be rotationally driven by a motor 58. The motor 58 is also supported by the base portion 16. Further, the moving base 54 is fixed to a part of the driving belt 59 in the extending direction. Here, the moving base 54 is fixed to a lower portion of the drive belt 59 that extends along the direction connecting the receiving position P1 and the set position P2.
 そして、往復駆動部56は、モータ58の正逆両方向への回転駆動によって、駆動ベルト59に固定された移動基部54を受取位置P1とセット位置P2との間で往復移動させるように構成されている。 The reciprocating drive unit 56 is configured to reciprocate the moving base 54 fixed to the drive belt 59 between the receiving position P1 and the set position P2 by rotationally driving the motor 58 in both forward and reverse directions. Yes.
 往復駆動部56は、略同じ高さ位置に並列状に一対配設されている。すなわち、各一対のプーリー57及び各駆動ベルト59は、異なる平行な面上で動作するように位置設定されている。より具体的には、一対の往復駆動部56における一対のプーリー57、モータ58及び駆動ベルト59は、各一対のプーリー57及び各モータ58同士の干渉を避けるため、受取位置P1とセット位置P2とを結ぶ方向にずれて配置されている。 A pair of reciprocating drive units 56 are arranged in parallel at substantially the same height position. That is, each pair of pulleys 57 and each drive belt 59 are positioned so as to operate on different parallel surfaces. More specifically, the pair of pulleys 57, the motor 58, and the drive belt 59 in the pair of reciprocating drive units 56 are configured so that the receiving position P1 and the set position P2 are set in order to avoid interference between the pair of pulleys 57 and the motors 58. Are displaced in the direction connecting the two.
 また、一対の第2進退駆動機構部46は、受取位置P1とセット位置P2とを結ぶ方向に沿って並んで配置されるように、一対の駆動ベルト59にそれぞれ固定された一対の移動基部54にそれぞれ支持されている。そして、一対の第2把持機構部42も受取位置P1とセット位置P2とを結ぶ方向に沿って並んで配置されている。 In addition, the pair of second advance / retreat drive mechanisms 46 are arranged in a line along a direction connecting the receiving position P1 and the set position P2, and a pair of moving bases 54 fixed to the pair of drive belts 59, respectively. Are supported by each. And a pair of 2nd holding | grip mechanism part 42 is also located along with the direction which connects the receiving position P1 and the set position P2.
 本電線移載装置10では、第1往復駆動機構部32及び第2往復駆動機構部52は、第1把持機構部22及び第2把持機構部42の少なくとも一方が第1退避位置C1又は第2退避位置C2に移動された状態(図6~図8参照)で、第1進退駆動機構部26と第2進退駆動機構部46とをすれ違わせるように構成されている。そして、第1往復駆動機構部32及び第2往復駆動機構部52は、第1進退駆動機構部26と第2進退駆動機構部46とを、受取位置P1側の領域とセット位置P2側の領域とに交互に移動させる。すなわち、第1移載機構部20が受取位置P1で端子付電線2を受け取っている間に第2移載機構部40がセット位置P2で端子付電線2を電線保持バー80にセットする。また、第2移載機構部40が受取位置P1で端子付電線2を受け取っている間に第1移載機構部20がセット位置P2で端子付電線2を電線保持バー80にセットする。 In the electric wire transfer device 10, the first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 are configured such that at least one of the first gripping mechanism portion 22 and the second gripping mechanism portion 42 has the first retraction position C1 or the second retraction drive mechanism portion 42. The first advancing / retreating drive mechanism unit 26 and the second advancing / retreating drive mechanism unit 46 are configured to pass each other in the state of being moved to the retreat position C2 (see FIGS. 6 to 8). The first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 divide the first advance / retreat drive mechanism portion 26 and the second advance / retreat drive mechanism portion 46 into an area on the receiving position P1 side and an area on the set position P2 side. And move them alternately. That is, while the first transfer mechanism 20 receives the terminal-attached electric wire 2 at the receiving position P1, the second transfer mechanism 40 sets the terminal-attached electric wire 2 on the electric wire holding bar 80 at the set position P2. Further, while the second transfer mechanism unit 40 receives the terminal-attached electric wire 2 at the receiving position P1, the first transfer mechanism unit 20 sets the terminal-attached electric wire 2 to the electric wire holding bar 80 at the set position P2.
 上記電線移載装置10の動作制御は、CPU、ROM及びRAM等を備える一般的なマイクロコンピュータによって構成される搬送制御ユニット60によって行われる(図1参照)。この搬送制御ユニット60は、切断圧着制御ユニット62から、受取位置P1に端子付電線2が存在する旨の信号が出力されると、このタイミングで端子付電線2を受け取り及びセットするために電線移載装置10における第1移載機構部20及び第2移載機構部40における各駆動部の動作制御を行う。 The operation control of the electric wire transfer device 10 is performed by a transport control unit 60 configured by a general microcomputer including a CPU, a ROM, a RAM, and the like (see FIG. 1). When the signal indicating that the terminal-attached electric wire 2 is present at the receiving position P1 is output from the cutting / crimping control unit 62, the transfer control unit 60 receives the electric wire transfer terminal 2 to receive and set the terminal-attached electric wire 2 at this timing. Operation control of each drive part in the 1st transfer mechanism part 20 and the 2nd transfer mechanism part 40 in the mounting apparatus 10 is performed.
 また、上記電線保持バー搬送装置90の動作制御も、上記搬送制御ユニット60により行われる。この搬送制御ユニット60は、切断圧着制御ユニット62等と連携して、予め設定された本数の端子付電線2が電線保持バー80に移載されるように、電線保持バー80の搬送タイミングを制御する。 The operation control of the wire holding bar transfer device 90 is also performed by the transfer control unit 60. The transport control unit 60 controls the transport timing of the wire holding bar 80 so that a preset number of the terminal-attached electric wires 2 are transferred to the wire holding bar 80 in cooperation with the cutting and crimping control unit 62 and the like. To do.
 <電線移載装置の動作>
 次に、電線移載装置10の移載動作について説明する。ここでは、端子付電線2の受取工程、搬送工程及びセット工程に分けて説明する。
<Operation of wire transfer device>
Next, the transfer operation of the wire transfer device 10 will be described. Here, the receiving process, the conveying process, and the setting process of the terminal-attached electric wire 2 will be described separately.
 初期状態として、切断圧着装置70により製造された端子付電線2の両側の電線端部を把持した一対の電線搬送把持部79が、受取位置P1に配置されているものとする。また、電線保持バー搬送装置90により、端子付電線2が保持されていない電線保持部82を有する電線保持バー80がセット位置P2に配置されているものとする。一対の第1往復駆動機構部32は、各第1進退駆動機構部26を受取位置P1に配置された各電線搬送把持部79の上方に支持し、一対の第2往復駆動機構部52は、各第2進退駆動機構部46をセット位置P2に配置された電線保持バー80の所定の2つの電線保持部82の上方に支持しているものとする。さらに、一対の第1進退駆動機構部26及び一対の第2進退駆動機構部46は、各第1把持機構部22及び第2把持機構部42を第1退避位置C1または第2退避位置C2に支持しているものとする(図8参照)。また、第1把持機構部22の一対の把持片23は開いており、第2把持機構部の一対の把持片23は間に端子付電線2の電線端部を挟んだ状態で閉じているものとする。 As an initial state, it is assumed that a pair of wire conveyance gripping portions 79 that grip the wire ends on both sides of the terminal-attached wire 2 manufactured by the cutting and crimping device 70 are arranged at the receiving position P1. In addition, it is assumed that the wire holding bar 80 having the wire holding portion 82 where the terminal-attached wire 2 is not held is arranged at the set position P2 by the wire holding bar conveyance device 90. The pair of first reciprocating drive mechanism portions 32 support the first advance / retreat drive mechanism portions 26 above the electric wire conveyance gripping portions 79 arranged at the receiving position P1, and the pair of second reciprocating drive mechanism portions 52 It is assumed that each second advance / retreat driving mechanism 46 is supported above two predetermined electric wire holding portions 82 of the electric wire holding bar 80 arranged at the set position P2. Further, the pair of first advance / retreat drive mechanism portions 26 and the pair of second advance / retreat drive mechanism portions 46 move the first gripping mechanism portion 22 and the second gripping mechanism portion 42 to the first retracted position C1 or the second retracted position C2. It shall be supported (see FIG. 8). Further, the pair of gripping pieces 23 of the first gripping mechanism portion 22 are open, and the pair of gripping pieces 23 of the second gripping mechanism portion are closed with the wire end portion of the terminal-attached electric wire 2 sandwiched therebetween. And
 第1移載機構部20の受取工程では、まず、間接昇降駆動部27により、受渡昇降駆動部28を下降移動させる(図7参照)。これにより、第1把持機構部22は、第1退避位置C1から予備退避位置Bに移動される。 In the receiving process of the first transfer mechanism unit 20, first, the delivery lifting drive unit 28 is moved downward by the indirect lifting drive unit 27 (see FIG. 7). As a result, the first gripping mechanism 22 is moved from the first retracted position C1 to the preliminary retracted position B.
 次に、受渡昇降駆動部28により、第1把持機構部22を下降移動させる(図7参照)。これにより、第1把持機構部22は、予備退避位置Bから進出位置Aに移動される。 Next, the first gripping mechanism unit 22 is moved downward by the delivery raising / lowering drive unit 28 (see FIG. 7). As a result, the first gripping mechanism 22 is moved from the preliminary retracted position B to the advanced position A.
 次に、第1把持機構部22において、開閉駆動部24により一対の把持片23を近接移動させる(閉じる)(図12参照)。このとき、一対の把持片23の間隔は、端子付電線2の電線端部の直径と同じかそれより小さく(ここでは僅かに小さく)設定されている。これにより、第1把持機構部22は、電線搬送把持部79に把持された端子付電線2の電線端部を把持する。そして、この状態で、電線搬送把持部79に、端子付電線2を把持解除させる。 Next, in the first gripping mechanism section 22, the pair of gripping pieces 23 are moved close (closed) by the opening / closing drive section 24 (see FIG. 12). At this time, the distance between the pair of gripping pieces 23 is set to be the same as or smaller than the diameter of the wire end of the terminal-attached electric wire 2 (here, slightly smaller). Thereby, the 1st holding | grip mechanism part 22 hold | grips the electric wire edge part of the electric wire 2 with a terminal hold | gripped by the electric wire conveyance holding part 79. FIG. And in this state, the electric wire conveyance holding part 79 is made to release | grip the electric wire 2 with a terminal.
 次に、受渡昇降駆動部28により、第1把持機構部22を上昇移動させる。これにより、第1把持機構部22は、進出位置Aから予備退避位置Bに移動される。 Next, the first lifting mechanism unit 22 is moved up by the delivery raising / lowering drive unit 28. As a result, the first gripping mechanism 22 is moved from the advance position A to the preliminary retreat position B.
 次に、間接昇降駆動部27により、受渡昇降駆動部28を上昇移動させる。これにより、第1把持機構部22は、予備退避位置Bから第1退避位置C1に移動される。 Next, the delivery raising / lowering driving unit 28 is moved up by the indirect raising / lowering driving unit 27. As a result, the first gripping mechanism 22 is moved from the preliminary retracted position B to the first retracted position C1.
 以上の動作により、第1移載機構部20による端子付電線2の受取工程が完了する。 With the above operation, the receiving process of the terminal-attached electric wire 2 by the first transfer mechanism unit 20 is completed.
 上記第1移載機構部20による端子付電線2の受取工程中に、第2移載機構部40では端子付電線2のセット工程が実行される。 During the receiving process of the terminal-attached electric wire 2 by the first transfer mechanism section 20, the second transfer mechanism section 40 executes the setting process of the terminal-attached electric wire 2.
 まず、間接昇降駆動部47により、受渡昇降駆動部48を下降移動させる(図6参照)。これにより、第2把持機構部42は、第2退避位置C2から予備退避位置Bに移動される。 First, the delivery lift drive unit 48 is moved downward by the indirect lift drive unit 47 (see FIG. 6). As a result, the second gripping mechanism portion 42 is moved from the second retracted position C2 to the preliminary retracted position B.
 次に、受渡昇降駆動部48により、第2把持機構部42を下降移動させる(図6参照)。これにより、第2把持機構部42は、予備退避位置Bから進出位置Aに移動される。第2把持機構部42に把持されていた端子付電線2は、電線保持バー80の電線保持部82に保持される。より具体的には、端子付電線2は、一対の把持片43の進出動作により、電線端部のうちの把持片43の対向部同士の内側を横切る部分が、該内側に配設された電線保持部82の一対の弾性挟持片83に挟持される(図5、図11参照)。 Next, the second gripping mechanism part 42 is moved downward by the delivery raising / lowering drive part 48 (see FIG. 6). As a result, the second gripping mechanism portion 42 is moved from the preliminary retracted position B to the advanced position A. The terminal-attached electric wire 2 held by the second holding mechanism portion 42 is held by the electric wire holding portion 82 of the electric wire holding bar 80. More specifically, in the electric wire with terminal 2, a part of the end portion of the electric wire that crosses the inside of the opposing portions of the gripping piece 43 by the advancing operation of the pair of gripping pieces 43 is arranged on the inner side. It is clamped by a pair of elastic clamping pieces 83 of the holding portion 82 (see FIGS. 5 and 11).
 次に、第2把持機構部42において、開閉駆動部44により一対の把持片43を離間移動させる(開く)。このとき、一対の把持片43の間隔は、端子付電線2の電線端部の直径より大きく設定されている。これにより、第2把持機構部42は、端子付電線2の電線端部を把持解除する。 Next, in the second gripping mechanism section 42, the pair of gripping pieces 43 are moved apart (opened) by the opening / closing drive section 44. At this time, the distance between the pair of gripping pieces 43 is set to be larger than the diameter of the end portion of the terminal-attached electric wire 2. Thereby, the 2nd holding | grip mechanism part 42 cancels | releases the electric wire edge part of the electric wire 2 with a terminal.
 次に、受渡昇降駆動部48により、第2把持機構部42を上昇移動させる。これにより、第2把持機構部42は、進出位置Aから予備退避位置Bに移動される。 Next, the second lifting mechanism unit 42 is moved up by the delivery raising / lowering drive unit 48. As a result, the second gripping mechanism portion 42 is moved from the advance position A to the preliminary retracted position B.
 次に、間接昇降駆動部47により、受渡昇降駆動部48を上昇移動させる。これにより、第2把持機構部42は、予備退避位置Bから第2退避位置C2に移動される。 Next, the delivery lift drive unit 48 is moved up by the indirect lift drive unit 47. As a result, the second gripping mechanism portion 42 is moved from the preliminary retracted position B to the second retracted position C2.
 以上の動作により、第2移載機構部40による端子付電線2のセット工程が完了する。なお、図6、図7では第1把持機構部22及び第2把持機構部42が交互に進出位置Aと第1退避位置C1又は第2退避位置C2に移動されている様子を示しているが、これは説明の便宜上示したものであり、実際には、第1把持機構部22及び第2把持機構部42の両方が、それぞれ受取位置P1側の領域又はセット位置P2側の領域において進出位置Aに移動される。 With the above operation, the setting process of the terminal-attached electric wire 2 by the second transfer mechanism 40 is completed. 6 and 7 show a state where the first gripping mechanism 22 and the second gripping mechanism 42 are alternately moved to the advance position A and the first retracted position C1 or the second retracted position C2. This is shown for convenience of explanation. Actually, both the first gripping mechanism portion 22 and the second gripping mechanism portion 42 are advanced positions in the region on the receiving position P1 side or the region on the set position P2 side, respectively. Moved to A.
 第1移載機構部20の受取工程及び第2移載機構部40のセット工程完了後、第1移載機構部20及び第2移載機構部40の搬送工程が実行される。 After completion of the receiving process of the first transfer mechanism part 20 and the setting process of the second transfer mechanism part 40, the transport process of the first transfer mechanism part 20 and the second transfer mechanism part 40 is executed.
 すなわち、第1往復駆動機構部32により、第1進退駆動機構部26を、第1経路R1において受取位置P1側の領域からセット位置P2側の領域に移動させる。同時に、第2往復駆動機構部52により、第2進退駆動機構部46を、第2経路R2においてセット位置P2側の領域から受取位置P1側の領域に移動させる。 That is, the first reciprocating drive mechanism 32 moves the first advance / retreat drive mechanism 26 from the receiving position P1 side area to the set position P2 side area in the first path R1. At the same time, the second reciprocating drive mechanism 52 moves the second advance / retreat drive mechanism 46 from the set position P2 side area to the receiving position P1 side area in the second path R2.
 ここで、第1進退駆動機構部26と第2進退駆動機構部46とがすれ違う際に、第1把持機構部22と第2把持機構部42とは、それぞれ第1退避位置C1又は第2退避位置C2にある状態で互いに側方を通り過ぎる(図8参照)。 Here, when the first advancing / retreating drive mechanism unit 26 and the second advancing / retreating drive mechanism unit 46 pass each other, the first gripping mechanism unit 22 and the second gripping mechanism unit 42 are respectively in the first retracted position C1 or the second retracted position. Passing sideways in the state of position C2 (see FIG. 8).
 他にも、第1把持機構部22及び第2把持機構部42の少なくとも一方が第1退避位置C1又は第2退避位置C2に移動された状態であれば、第1進退駆動機構部26と第2進退駆動機構部46とはすれ違い可能である。第1把持機構部22が第1退避位置C1にあり、第2把持機構部42が予備退避位置Bにある状態では、第2把持機構部42は第1把持機構部22の下方を通り抜ける(図6参照)。なお、前記状態は、間接昇降駆動部47により受渡昇降駆動部48が下降位置に移動されると共に、受渡昇降駆動部48により第2把持機構部42が下降位置に移動された状態である。また、第1把持機構部22が予備退避位置Bにあり、第2把持機構部42が第2退避位置C2にある状態では、第1把持機構部22と第2把持機構部42とは、互いに側方を通り過ぎる(図7参照)。 In addition, if at least one of the first gripping mechanism unit 22 and the second gripping mechanism unit 42 is moved to the first retracted position C1 or the second retracted position C2, the first advance / retreat drive mechanism unit 26 and the second The two-way drive mechanism 46 can pass by. In a state where the first gripping mechanism unit 22 is in the first retracted position C1 and the second gripping mechanism unit 42 is in the preliminary retracted position B, the second gripping mechanism unit 42 passes under the first gripping mechanism unit 22 (FIG. 6). The state is a state in which the delivery raising / lowering driving unit 48 is moved to the lowered position by the indirect raising / lowering driving unit 47 and the second gripping mechanism unit 42 is moved to the lowered position by the delivery raising / lowering driving unit 48. Further, in a state where the first gripping mechanism unit 22 is in the preliminary retracted position B and the second gripping mechanism unit 42 is in the second retracted position C2, the first gripping mechanism unit 22 and the second gripping mechanism unit 42 are mutually connected. Pass by the side (see Figure 7).
 なお、端子付電線2の端子が比較的長尺な場合、第1移載機構部20と第2移載機構部40との間隔が比較的狭い場合等には、第1把持機構部22及び第2把持機構部42のうち、端子付電線2を把持して受取位置P1側の領域からセット位置P2側の領域に移動される一方が予備退避位置Bに配置され、他方が第1退避位置C1又は第2退避位置C2に配置された状態で、第1把持機構部22及び第2把持機構部42が受取位置P1側の領域とセット位置P2側の領域とで交互に移動されるとよい(図6、図7参照)。 In addition, when the terminal of the electric wire 2 with a terminal is comparatively long, when the space | interval of the 1st transfer mechanism part 20 and the 2nd transfer mechanism part 40 is comparatively narrow, etc., the 1st holding | grip mechanism part 22 and One of the second gripping mechanism portions 42 that grips the terminal-attached electric wire 2 and moves from the region on the receiving position P1 side to the region on the set position P2 side is disposed at the preliminary retracted position B, and the other is the first retracted position. The first gripping mechanism portion 22 and the second gripping mechanism portion 42 may be alternately moved between the region on the receiving position P1 side and the region on the set position P2 side in the state where the C1 or the second retracted position C2 is disposed. (See FIGS. 6 and 7).
 すなわち、受取工程及びセット工程において、第1移載機構部20及び第2移載機構部40において、第1把持機構部22及び第2把持機構部42の少なくとも一方が第1退避位置C1または第2退避位置C2に移動されていれば、他方が予備退避位置Bから上昇移動されていなくともよい。 That is, in the receiving process and the setting process, in the first transfer mechanism part 20 and the second transfer mechanism part 40, at least one of the first gripping mechanism part 22 and the second gripping mechanism part 42 is in the first retraction position C1 or the second transfer mechanism part 42. As long as it has been moved to the second retracted position C2, the other does not have to be moved upward from the preliminary retracted position B.
 そして、一対の第1往復駆動機構部32は、各第1把持機構部22がセット位置P2に配置された電線保持バー80のうち前回セットした電線保持部82とは異なるセット対象である電線保持部82の上方に配置される位置まで第1進退駆動機構部26を移動させる。また、一対の第2往復駆動機構部52は、各第2把持機構部42が受取位置P1に配置された一対の電線搬送把持部79の上方に配置される位置まで第2進退駆動機構部46を移動させる。 And a pair of 1st reciprocating drive mechanism parts 32 are the electric wire holding | maintenances which are different from the electric wire holding part 82 set last time among the electric wire holding bars 80 in which each 1st holding | grip mechanism part 22 has been arrange | positioned in the setting position P2. The first advancing / retracting drive mechanism unit 26 is moved to a position disposed above the unit 82. In addition, the pair of second reciprocating drive mechanism units 52 includes the second advancing / retreating drive mechanism unit 46 to a position where each second gripping mechanism unit 42 is disposed above the pair of electric wire conveyance gripping units 79 disposed at the receiving position P1. Move.
 搬送工程を完了すると、次は、第1移載機構部20により受取工程で受け取った端子付電線2のセット工程を実行すると共に、第2移載機構部40により端子付電線の受取工程を実行する。 Upon completion of the transporting process, the next step is to execute the setting process of the terminal-attached electric wire 2 received in the receiving process by the first transfer mechanism unit 20, and the second transfer mechanism part 40 executes the receiving process of the terminal-attached electric wire. To do.
 すなわち、第1移載機構部20では、一対の第1進退駆動機構部26により各第1把持機構部22を進出位置Aに移動させて電線保持バー80の電線保持部82に保持させる。そして、各第1把持機構部22による端子付電線2の電線端部の把持を解除し、再び一対の第1進退駆動機構部26により各第1把持機構部22を第1退避位置C1に移動させる。これにより、第1移載機構部20による端子付電線2のセット工程が完了する。 That is, in the first transfer mechanism unit 20, each first gripping mechanism unit 22 is moved to the advanced position A by the pair of first advance / retreat drive mechanism units 26 and is held by the wire holding unit 82 of the wire holding bar 80. And the holding | grip of the electric wire edge part of the electric wire 2 with a terminal by each 1st holding | grip mechanism part 22 is cancelled | released, and each 1st holding | grip mechanism part 22 is moved to the 1st evacuation position C1 by a pair of 1st advance / retreat drive mechanism part 26 again. Let Thereby, the setting process of the electric wire 2 with a terminal by the 1st transfer mechanism part 20 is completed.
 また、第2移載機構部40では、一対の第2進退駆動機構部26により各第2把持機構部42を進出位置Aに移動させ、第2把持機構部42により電線搬送把持部79に把持されている端子付電線2の電線端部を把持する。そして、再び一対の第2進退駆動機構部46により各第2把持機構部42を第2退避位置C2に移動させる。これにより、第2移載機構部20による端子付電線2の受取工程が完了する。 Further, in the second transfer mechanism section 40, the second gripping mechanism sections 42 are moved to the advanced positions A by the pair of second advance / retreat driving mechanism sections 26, and are gripped by the wire conveyance gripping section 79 by the second gripping mechanism section 42. The end portion of the terminal-attached electric wire 2 is gripped. Then, the second gripping mechanism portions 42 are moved again to the second retracted position C2 by the pair of second advance / retreat driving mechanism portions 46 again. Thereby, the receiving process of the electric wire 2 with a terminal by the 2nd transfer mechanism part 20 is completed.
 そして、次に、第1移載機構部20及び第2移載機構部40の搬送工程を実行する。すなわち、第1往復駆動機構部32により、第1進退駆動機構部26を、第1経路R1においてセット位置P2側の領域から受取位置P1側の領域に移動させる。同時に、第2往復駆動機構部52により、第2進退駆動機構部46を、第2経路R2において受取位置P1側の領域からセット位置P2側の領域に移動させる。 Then, the transfer process of the first transfer mechanism unit 20 and the second transfer mechanism unit 40 is executed. In other words, the first reciprocating drive mechanism 32 moves the first advance / retreat drive mechanism 26 from the set position P2 side area to the receiving position P1 side area in the first path R1. At the same time, the second reciprocating drive mechanism 52 moves the second advance / retreat drive mechanism 46 from the receiving position P1 side area to the set position P2 side area in the second path R2.
 以上の工程を繰り返すことにより、連続して端子付電線2の移載を行うことができる。そして、電線保持バー80がいっぱいになると、電線保持バー搬送装置90により次の電線保持バー80をセット位置P2に移動させて該電線保持バー80に対して端子付電線2を移載していくとよい。 By repeating the above steps, the terminal-attached electric wire 2 can be transferred continuously. When the electric wire holding bar 80 is full, the electric wire holding bar conveying device 90 moves the next electric wire holding bar 80 to the set position P2 and transfers the terminal-attached electric wire 2 to the electric wire holding bar 80. Good.
 上記実施形態に係る電線移載装置10によると、第1往復駆動機構部32と第2往復駆動機構部52とが、第1把持機構部22及び第2把持機構部42の少なくとも一方が第1退避位置C1又は第2退避位置C2に移動された状態で、第1進退駆動機構部26と第2進退駆動機構部46とを受取位置P1側の領域とセット位置P2側の領域とに交互に移動させるため、第1把持機構部22及び第2把持機構部42の一方が受取位置P1側で端子付電線2を受け取る動作を行っている間に、他方がセット位置P2側で電線保持バー80の電線保持部82に端子付電線2をセットする動作を行うことができる。これにより、1つの移送機構部だけが設けられている場合に比べて倍の速さで端子付電線2を移載することができ、端子付電線2の移載効率をより向上させることができる。 According to the wire transfer device 10 according to the embodiment, the first reciprocating drive mechanism unit 32 and the second reciprocating drive mechanism unit 52 are configured such that at least one of the first gripping mechanism unit 22 and the second gripping mechanism unit 42 is the first. In the state moved to the retracted position C1 or the second retracted position C2, the first advance / retreat drive mechanism unit 26 and the second advance / retreat drive mechanism unit 46 are alternately arranged in the receiving position P1 side area and the set position P2 side area. In order to move, while one of the first gripping mechanism portion 22 and the second gripping mechanism portion 42 is performing the operation of receiving the terminal-attached electric wire 2 on the receiving position P1 side, the other is the electric wire holding bar 80 on the set position P2 side. The operation | movement which sets the electric wire 2 with a terminal to the electric wire holding part 82 of this can be performed. Thereby, compared with the case where only one transfer mechanism part is provided, the electric wire 2 with a terminal can be transferred at double speed, and the transfer efficiency of the electric wire 2 with a terminal can be improved more. .
 しかも、第1把持機構部22及び第2把持機構部42の進出位置A1が同じ位置であるため、切断圧着装置70及び電線保持時バー搬送装置90の構成を変更せずに、端子付電線2の移載効率を向上させることができる。 Moreover, since the advance positions A1 of the first gripping mechanism portion 22 and the second gripping mechanism portion 42 are the same position, the terminal-attached electric wire 2 can be used without changing the configuration of the cutting and crimping device 70 and the wire holding bar transport device 90. The transfer efficiency can be improved.
 また、第2進退駆動機構部46が、第2把持機構部42を、第1進退駆動機構部26が移動される第1移動領域R1上の進出位置Aから第2進退駆動機構部46が移動される第2移動領域R2上で進出位置Aの斜め上方の第2退避位置C2までの間で斜め上方に向かう直線経路を含む経路で移動させる構成によると、第2把持機構部42の移動距離を短くすることができる。また、電線移載装置10自体の省スペース化にも寄与する。 Further, the second advance / retreat drive mechanism 46 moves the second gripping mechanism 42 from the advance position A on the first movement region R1 where the first advance / retreat drive mechanism 26 is moved. According to the configuration in which the second gripping mechanism portion 42 is moved along a path including a straight path that is obliquely upward between the second movement region R2 and the second retraction position C2 that is obliquely above the advance position A. Can be shortened. Moreover, it contributes to space saving of the wire transfer device 10 itself.
 また、第2進退駆動機構部46が、第2把持機構部42を昇降移動させる受渡昇降駆動部48と、受渡昇降駆動部48を第1移動領域R1上の下降位置と第2移動領域R2上で下降位置の斜め上方の上昇位置との間で斜めに昇降移動させる間接昇降駆動部47とを有している構成によると、受渡昇降駆動部48を第1移動領域R1上の下降位置に移動させる構成をより簡易にすることができる。すなわち、鉛直方向の移動及び水平方向の移動を1つの駆動部によって実現することができ、電線移載装置10の設備費の低減及び省スペース化を図ることができる。 Further, the second advancing / retreating drive mechanism unit 46 moves the second gripping mechanism unit 42 up and down, and the delivery lifting and lowering drive unit 48 moves the lowering position on the first movement region R1 and on the second movement region R2. With the configuration having the indirect lift drive unit 47 that moves up and down diagonally between the lift position and the lift position obliquely above the drop position, the delivery lift drive section 48 is moved to the drop position on the first movement region R1. The configuration to be made can be simplified. That is, the movement in the vertical direction and the movement in the horizontal direction can be realized by one drive unit, and the equipment cost of the wire transfer device 10 can be reduced and the space can be saved.
 また、第2把持機構部42が、間接昇降駆動部47により受渡昇降駆動部48が下降位置に移動された状態で、第1退避位置C1に移動された第1把持機構部22の下方を通り抜け可能に設定されている構成によると、受渡昇降駆動部48により第2把持機構部42が上昇移動されていれば、受渡昇降駆動部48が下降位置のままでも、第1把持機構部22と第2把持機構部42とを受取位置P1側の領域とセット位置P2側の領域との間ですれ違わせることができる。これにより、間接昇降駆動部47の駆動数を低減でき、駆動費の低減及び耐年数の長期化に寄与する。また、第1把持機構部22と第2把持機構部42とが互いに側方をすれ違う場合と比較して、把持した端子付電線2のうちの側方に飛び出る部分の干渉を抑制するためのクリアランスを第1把持機構部22及び第2把持機構部42の側方に設ける必要がなくなるため、電線移載装置10自体の省スペース化に寄与する。 Further, the second gripping mechanism portion 42 passes under the first gripping mechanism portion 22 moved to the first retraction position C1 in a state where the delivery lifting drive portion 48 is moved to the lowered position by the indirect lifting drive portion 47. According to the configuration set to be possible, if the second gripping mechanism portion 42 is moved up by the delivery lifting / lowering drive portion 48, the first gripping mechanism portion 22 and the first gripping mechanism portion 22 are connected to each other even if the delivery lifting / lowering drive portion 48 remains in the lowered position. 2 The gripping mechanism portion 42 can be moved between the area on the receiving position P1 side and the area on the set position P2 side. Thereby, the drive number of the indirect raising / lowering drive part 47 can be reduced, and it contributes to reduction of drive cost and prolongation of lifetime. Further, as compared with the case where the first gripping mechanism portion 22 and the second gripping mechanism portion 42 pass each other, the clearance for suppressing the interference of the portion protruding to the side of the gripped terminal-attached electric wire 2. Is not required to be provided on the side of the first gripping mechanism portion 22 and the second gripping mechanism portion 42, which contributes to space saving of the wire transfer device 10 itself.
 また、第1往復駆動機構部32及び第2往復駆動機構部52が、第1進退駆動機構部26と第2進退駆動機構部46とを、受取位置P1側の領域とセット位置P2側の領域とで交互に移動させるため、端子付電線2の受取動作とセット動作とを同時進行させて移載効率をより向上させることができる。 Further, the first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 divide the first advance / retreat drive mechanism portion 26 and the second advance / retreat drive mechanism portion 46 into an area on the receiving position P1 side and an area on the set position P2 side. Therefore, the receiving operation and the setting operation of the terminal-attached electric wire 2 can be simultaneously advanced to further improve the transfer efficiency.
 これまで、第1移載機構部20について、第1把持機構部22を上下方向のみに移動する例で説明してきたが、第2移載機構部40のように第1把持機構部22を斜め方向に移動させるように構成されてもよい。例えば、第1移載機構部20は、斜め方向に沿って配設した間接昇降駆動部により受渡昇降駆動部28を斜め方向に移動させるように構成されていてもよい。 So far, the first transfer mechanism unit 20 has been described with an example in which the first gripping mechanism unit 22 is moved only in the vertical direction, but the first gripping mechanism unit 22 is tilted like the second transfer mechanism unit 40. It may be configured to move in the direction. For example, the 1st transfer mechanism part 20 may be comprised so that the delivery raising / lowering drive part 28 may be moved to the diagonal direction by the indirect raising / lowering drive part arrange | positioned along the diagonal direction.
 また、第2移載機構部40について、間接昇降駆動部47により受渡昇降駆動部48を斜め方向に移動させる例で説明してきたが、これに限られるものではない。すなわち、第2移載機構部40は、第2把持機構部42を進出位置Aと第2退避位置C2との間で移動させることが可能であればよく、水平方向に受渡昇降駆動部48を移動させる間接昇降駆動部を有していてもよい。また、第2移載機構部40は、間接昇降駆動部が受渡昇降駆動部48を鉛直方向に移動させるように構成されていてもよい。もっとも、この場合には、第1把持機構部22を斜め方向又は水平方向にも移動させるような第1進退駆動機構部の構成を採用する必要がある。 In addition, although the second transfer mechanism unit 40 has been described as an example in which the indirect lifting drive unit 47 moves the delivery lifting drive unit 48 in an oblique direction, the present invention is not limited to this. That is, the second transfer mechanism unit 40 only needs to be able to move the second gripping mechanism unit 42 between the advanced position A and the second retracted position C2, and the delivery lifting / lowering drive unit 48 in the horizontal direction. You may have the indirect raising / lowering drive part to move. Moreover, the 2nd transfer mechanism part 40 may be comprised so that an indirect raising / lowering drive part may move the delivery raising / lowering drive part 48 to a perpendicular direction. However, in this case, it is necessary to adopt the configuration of the first advance / retreat drive mechanism that moves the first gripping mechanism 22 in an oblique direction or a horizontal direction.
 また、第1往復駆動機構部32及び第2往復駆動機構部52がガイドレール、移動基部、一対のプーリー、モータ及び駆動ベルトにより構成される例で説明してきたが、これに限られるものではない。すなわち、第1往復駆動機構部32及び第2往復駆動機構部52は、第1進退駆動機構部26又は第2進退駆動機構部46を、第1移動領域R1又は第2移動領域R2に沿って直線状に移動可能な機構であればよく、エアシリンダ等のリニアアクチュエータが用いられてもよい。 Moreover, although the 1st reciprocating drive mechanism part 32 and the 2nd reciprocating drive mechanism part 52 demonstrated by the example comprised by a guide rail, a movement base, a pair of pulley, a motor, and a drive belt, it is not restricted to this. . That is, the first reciprocating drive mechanism portion 32 and the second reciprocating drive mechanism portion 52 move the first advance / retreat drive mechanism portion 26 or the second advance / retreat drive mechanism portion 46 along the first movement region R1 or the second movement region R2. Any mechanism that can move linearly may be used, and a linear actuator such as an air cylinder may be used.
 また、電線移載装置10の動作について、第1移載機構部20の受取工程又はセット工程と第2移載機構部40のセット工程又は受取工程とが同時進行される例で説明してきたが、両者の両工程のタイミングがずれていてもよい。すなわち、第1移載機構部20と第2移載機構部40は、第1把持機構部22と第2把持機構部42とがすれ違うように動作すれば、1つの移載機構部により移載を行う場合よりも移載効率を向上させることができる。なお、移載効率向上の観点から言うと、第1移載機構部20及び第2移載機構部40による第1把持機構部22及び第2把持機構部42の受取位置P1側の領域とセット位置P2側の領域との間の往復移動は交互に行われて、セット工程又は受取工程が同時進行されることが好ましい。 Moreover, although the operation | movement of the electric wire transfer apparatus 10 has been demonstrated in the example in which the receiving process or setting process of the 1st transfer mechanism part 20 and the setting process or receiving process of the 2nd transfer mechanism part 40 are advanced simultaneously. The timings of both processes may be shifted. That is, the first transfer mechanism unit 20 and the second transfer mechanism unit 40 are transferred by one transfer mechanism unit if the first gripping mechanism unit 22 and the second gripping mechanism unit 42 operate so as to pass each other. The transfer efficiency can be improved as compared with the case of performing. From the viewpoint of improving the transfer efficiency, the first transfer mechanism unit 20 and the second transfer mechanism unit 40 set with the region on the receiving position P1 side of the first holding mechanism unit 22 and the second holding mechanism unit 42. It is preferable that the reciprocation between the area on the position P2 side is alternately performed, and the setting process or the receiving process is performed simultaneously.
 以上のようにこの電線移載装置10は詳細に説明されたが、上記した説明は、全ての局面において例示であって、この発明がそれに限定されるものではない。例示されていない無数の変形例が、この発明の範囲から外れることなく想定され得るものと解される。 Although the electric wire transfer device 10 has been described in detail as described above, the above description is an example in all aspects, and the present invention is not limited thereto. It is understood that countless variations that are not illustrated can be envisaged without departing from the scope of the present invention.
 2 端子付電線
 10 電線移載装置
 20 第1移載機構部
 22 第1把持機構部
 26 第1進退駆動機構部
 32 第1往復駆動機構部
 40 第2移載機構部
 42 第2把持機構部
 46 第2進退駆動機構部
 47 間接昇降駆動部
 48 受渡昇降駆動部
 52 第2往復駆動機構部
 80 電線保持バー
 82 電線保持部
 P1 受取位置
 P2 セット位置
 R1 第1移動領域
 R2 第2移動領域
2 Electric wire with terminal 10 Electric wire transfer device 20 First transfer mechanism portion 22 First gripping mechanism portion 26 First forward / backward drive mechanism portion 32 First reciprocating drive mechanism portion 40 Second transfer mechanism portion 42 Second gripping mechanism portion 46 Second advancing / retracting drive mechanism unit 47 Indirect elevating drive unit 48 Delivery elevating drive unit 52 Second reciprocating drive mechanism unit 80 Electric wire holding bar 82 Electric wire holding unit P1 Receiving position P2 Set position R1 First moving region R2 Second moving region

Claims (5)

  1.  切断圧着装置において製造されて受取位置に配置された端子付電線を、セット位置に配置され、端子付電線の電線端部を保持可能な電線保持部が一列に複数設けられた電線保持バーに移載する電線移載装置であって、
     第1移載機構部と第2移載機構部とを備え、
     前記第1移載機構部は、
     端子付電線の両電線端部をそれぞれ把持及び把持解除可能な一対の第1把持機構部と、
     前記一対の第1把持機構部を、それぞれ、前記受取位置に配置された前記端子付電線を受取可能又は前記端子付電線を前記セット位置に配置された前記電線保持バーの前記複数の電線保持部のいずれか1つにセット可能な進出位置と、前記進出位置から退避した第1退避位置との間で移動させる一対の第1進退駆動機構部と、
     前記一対の第1進退駆動機構部を、それぞれ、前記受取位置側の領域と前記セット位置側の領域との間で移動させる一対の第1往復駆動機構部と、
     を有し、
     前記第2移載機構部は、
     端子付電線の両電線端部をそれぞれ把持及び把持解除可能な一対の第2把持機構部と、
     前記一対の第2把持機構部を、それぞれ、前記進出位置と、前記進出位置から退避した第1退避位置とは別の第2退避位置との間で移動させる一対の第2進退駆動機構部と、
     前記一対の第2進退駆動機構部を、それぞれ、前記第1往復駆動機構部による前記第1進退駆動機構部の移動領域と並行する移動領域において、前記受取位置側の領域と前記セット位置側の領域との間で移動させる一対の第2往復駆動機構部と、
     を有し、
     前記第1往復駆動機構部及び前記第2往復駆動機構部は、前記第1把持機構部及び前記第2把持機構部の少なくとも一方が第1退避位置又は第2退避位置に移動された状態で、前記第1進退駆動機構部と前記第2進退駆動機構部とをすれ違わせる、電線移載装置。
    The electric wire with terminal manufactured in the cutting and crimping device and placed at the receiving position is transferred to the electric wire holding bar that is arranged at the set position and has multiple electric wire holding parts that can hold the end of the electric wire with terminal. An electric wire transfer device for mounting,
    A first transfer mechanism and a second transfer mechanism;
    The first transfer mechanism is
    A pair of first gripping mechanisms capable of gripping and releasing gripping of both ends of the electric wire with terminal,
    The plurality of electric wire holding portions of the electric wire holding bar in which the pair of first gripping mechanism portions can receive the electric wires with terminals arranged at the receiving positions, or the electric wires with terminals are arranged at the set positions, respectively. A pair of first advancing / retracting drive mechanisms that move between an advance position that can be set to any one of the above and a first retract position that is retracted from the advance position;
    A pair of first reciprocating drive mechanisms for moving the pair of first advance / retreat drive mechanisms between the receiving position side area and the set position side area;
    Have
    The second transfer mechanism unit is
    A pair of second gripping mechanisms capable of gripping and releasing the both ends of the electric wire with terminal,
    A pair of second advancing / retreating drive mechanism units for moving the pair of second gripping mechanism units between the advanced position and a second retracted position different from the first retracted position retracted from the advanced position; ,
    The pair of second advancing / retracting drive mechanism portions are moved in the movement region parallel to the movement region of the first advancing / retreating drive mechanism portion by the first reciprocating drive mechanism portion, respectively. A pair of second reciprocating drive mechanisms that move between the regions;
    Have
    The first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit are in a state where at least one of the first gripping mechanism unit and the second gripping mechanism unit is moved to the first retracted position or the second retracted position, An electric wire transfer device for passing the first advance / retreat drive mechanism and the second advance / retreat drive mechanism.
  2.  請求項1に記載の電線移載装置であって、
     前記第1往復駆動機構部は、前記第1進退駆動機構部を前記受取位置及び前記セット位置の上方に延在する第1移動領域で移動させるように構成され、
     前記第2往復駆動機構部は、前記第2進退駆動機構部を前記第1移動領域の側方に並行して延在する第2移動領域で移動させるように構成され、
     前記第2進退駆動機構部は、前記第2把持機構部を、前記第1移動領域中の前記進出位置から前記第2移動領域中で前記進出位置の斜め上方の前記第2退避位置までの間で斜め上方に向かう直線経路を含む経路で移動させる、電線移載装置。
    The wire transfer device according to claim 1,
    The first reciprocating drive mechanism unit is configured to move the first advance / retreat drive mechanism unit in a first moving region extending above the receiving position and the set position,
    The second reciprocating drive mechanism is configured to move the second advancing / retreating drive mechanism in a second movement region extending in parallel to the side of the first movement region,
    The second advancing / retracting drive mechanism unit moves the second gripping mechanism unit from the advance position in the first movement area to the second retraction position obliquely above the advance position in the second movement area. An electric wire transfer device that moves along a route including a straight route that goes diagonally upward.
  3.  請求項2に記載の電線移載装置であって、
     前記第2進退駆動機構部は、
     前記第2把持機構部を昇降移動させる受渡昇降駆動部と、
     前記受渡昇降駆動部を、前記第1移動領域中の下降位置と、前記第2移動領域中で前記下降位置の斜め上方の上昇位置との間で斜めに昇降移動させる間接昇降駆動部と、
     を有している、電線移載装置。
    The wire transfer device according to claim 2,
    The second forward / backward drive mechanism is
    A delivery raising / lowering drive unit for moving the second gripping mechanism up and down;
    An indirect elevating drive unit that moves the delivery elevating drive unit obliquely between a descending position in the first moving region and an ascending position obliquely above the descending position in the second moving region;
    An electric wire transfer device.
  4.  請求項3に記載の電線移載装置であって、
     前記第2把持機構部は、前記間接昇降駆動部により前記受渡昇降駆動部が前記下降位置に移動された状態で、前記第1退避位置に移動された前記第1把持機構部の下方を通り抜け可能に設定されている、電線移載装置。
    The wire transfer device according to claim 3,
    The second gripping mechanism portion can pass under the first gripping mechanism portion moved to the first retracted position in a state where the delivery lifting drive portion is moved to the lowered position by the indirect lifting drive portion. Wire transfer device set to
  5.  請求項1から請求項4のいずれか一項に記載の電線移載装置であって、
     前記第1往復駆動機構部及び前記第2往復駆動機構部は、前記第1進退駆動機構部と前記第2進退駆動機構部とを、前記受取位置側の領域と前記セット位置側の領域とに交互に移動させる、電線移載装置。
    The electric wire transfer device according to any one of claims 1 to 4,
    The first reciprocating drive mechanism unit and the second reciprocating drive mechanism unit are configured to separate the first advance / retreat drive mechanism unit and the second advance / retreat drive mechanism unit into the receiving position side region and the set position side region. Wire transfer device that moves alternately.
PCT/JP2012/069093 2012-02-09 2012-07-27 Power line shifting device WO2013118324A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CN201280069132.9A CN104094366B (en) 2012-02-09 2012-07-27 Electric wire shifting apparatus
KR1020147021134A KR101647573B1 (en) 2012-02-09 2012-07-27 Power line shifting device
EP12868300.0A EP2814042B1 (en) 2012-02-09 2012-07-27 Power line shifting device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2012025801A JP5817576B2 (en) 2012-02-09 2012-02-09 Wire transfer device
JP2012-025801 2012-02-09

Publications (1)

Publication Number Publication Date
WO2013118324A1 true WO2013118324A1 (en) 2013-08-15

Family

ID=48947120

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2012/069093 WO2013118324A1 (en) 2012-02-09 2012-07-27 Power line shifting device

Country Status (5)

Country Link
EP (1) EP2814042B1 (en)
JP (1) JP5817576B2 (en)
KR (1) KR101647573B1 (en)
CN (1) CN104094366B (en)
WO (1) WO2013118324A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106602384A (en) * 2015-10-14 2017-04-26 界首市迅立达电梯有限公司 Automatic terminal machine
CN113422273A (en) * 2021-06-24 2021-09-21 刘丽琴 Based on intelligent manufacturing is with new energy automobile pencil lug equipment

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6107639B2 (en) * 2013-12-18 2017-04-05 住友電装株式会社 Electric wire discharge device
DE102015108425B4 (en) 2015-05-28 2022-12-08 Lisa Dräxlmaier GmbH Arranging multiple electric wires and arrangement device therefor
DE102017206139B4 (en) 2017-04-10 2023-12-07 Leoni Bordnetz-Systeme Gmbh System and method for the automated production of a cable set
DE102017206141B4 (en) * 2017-04-10 2021-01-28 Leoni Bordnetz-Systeme Gmbh System and method for the automated preparation and provision of individual line elements for a cable set
KR101979243B1 (en) * 2018-12-13 2019-05-16 김재현 Bending device for connector terminal pin
KR102620721B1 (en) * 2021-08-09 2024-01-02 곽재곤 double loading transporter
KR102369027B1 (en) * 2021-08-20 2022-03-03 곽철 Wire harness manufacturing method
KR102575652B1 (en) * 2021-08-27 2023-09-06 경림테크 주식회사 Middle strip apparatus for irregularly bunch wire
KR102575646B1 (en) * 2021-08-27 2023-09-06 경림테크 주식회사 Middle strip method using middle strip apparatus for irregularly bunch wire
KR102640500B1 (en) * 2021-10-07 2024-02-23 안종이 Wire harness manufacturing system

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009032530A (en) * 2007-07-27 2009-02-12 Kodera Electronics Co Ltd Wire processing system
JP2009152105A (en) * 2007-12-21 2009-07-09 Sumitomo Wiring Syst Ltd Wire set aligning apparatus, and manufacturing method of sub-assembly
JP2010287369A (en) 2009-06-10 2010-12-24 Sumitomo Wiring Syst Ltd Device for conveying electric wire holding bar and method of manufacturing electric wire set

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3523088B2 (en) * 1998-10-19 2004-04-26 矢崎総業株式会社 Transfer device and transfer method
KR100481133B1 (en) * 2004-10-05 2005-04-07 윤재흥 Cable traction device
JP5194772B2 (en) * 2007-12-21 2013-05-08 住友電装株式会社 Cutting pressure setting device and method of manufacturing wire harness

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009032530A (en) * 2007-07-27 2009-02-12 Kodera Electronics Co Ltd Wire processing system
JP2009152105A (en) * 2007-12-21 2009-07-09 Sumitomo Wiring Syst Ltd Wire set aligning apparatus, and manufacturing method of sub-assembly
JP2010287369A (en) 2009-06-10 2010-12-24 Sumitomo Wiring Syst Ltd Device for conveying electric wire holding bar and method of manufacturing electric wire set

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP2814042A4 *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106602384A (en) * 2015-10-14 2017-04-26 界首市迅立达电梯有限公司 Automatic terminal machine
CN113422273A (en) * 2021-06-24 2021-09-21 刘丽琴 Based on intelligent manufacturing is with new energy automobile pencil lug equipment
CN113422273B (en) * 2021-06-24 2022-05-03 刘丽琴 New energy automobile wire harness lug assembling equipment for intelligent manufacturing

Also Published As

Publication number Publication date
CN104094366B (en) 2016-09-14
CN104094366A (en) 2014-10-08
EP2814042A1 (en) 2014-12-17
JP5817576B2 (en) 2015-11-18
JP2013161776A (en) 2013-08-19
KR20140108714A (en) 2014-09-12
EP2814042B1 (en) 2016-06-29
KR101647573B1 (en) 2016-08-10
EP2814042A4 (en) 2015-08-05

Similar Documents

Publication Publication Date Title
JP5817576B2 (en) Wire transfer device
JP4704889B2 (en) Wire harness manufacturing apparatus and method
JP4985713B2 (en) Electric wire holding bar conveying device and electric wire set manufacturing method
JP4934468B2 (en) Electric wire terminal crimping apparatus and electric wire terminal crimping method
KR20180098295A (en) Pincers
DE102008013591A1 (en) Tool, plant and method for producing a wiring harness
CN105551689B (en) Device for feeding the ends of a conductor to a processing machine
US9450137B2 (en) Apparatus and method for mounting contact wires on solar cell wafers
WO2009081605A1 (en) Electrical wire set aligning apparatus and method for manufacturing sub-assembly
KR20170088991A (en) Method for fitting a component to an end of a cable which is stripped of insulation
JP4057792B2 (en) Routing device
CN107068302B (en) Twisting equipment
JP5143406B2 (en) Electric wire manufacturing equipment
JP5842631B2 (en) Electric wire holding bar conveyor
KR20160085852A (en) Wire ejection device
EP0817329A1 (en) Apparatus for making wire harnesses
US10822173B2 (en) Linking system and method
US5615478A (en) Wire handling grippers; process and apparatus for manufacturing of electrical cable bundles using these grippers
JP3370335B2 (en) Apparatus and method for manufacturing electric harness
JP4301739B2 (en) Label dislocation conductor manufacturing apparatus and manufacturing method
KR102078555B1 (en) Wire terminal crimping machine and terminal crimping method using same
CN211470304U (en) Electric wire conveying device and manufacturing equipment of wire harness
JP5768749B2 (en) Electric wire processing equipment
CN219676959U (en) Two-wire transfer device and twisted pair manufacturing equipment
CN220617493U (en) Clamp conveying device and double-station winding and mould arranging equipment

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 12868300

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 20147021134

Country of ref document: KR

Kind code of ref document: A

WWE Wipo information: entry into national phase

Ref document number: 2012868300

Country of ref document: EP

NENP Non-entry into the national phase

Ref country code: DE