WO2009122495A1 - ピン位置決め冶具及びピン装着装置 - Google Patents
ピン位置決め冶具及びピン装着装置 Download PDFInfo
- Publication number
- WO2009122495A1 WO2009122495A1 PCT/JP2008/056327 JP2008056327W WO2009122495A1 WO 2009122495 A1 WO2009122495 A1 WO 2009122495A1 JP 2008056327 W JP2008056327 W JP 2008056327W WO 2009122495 A1 WO2009122495 A1 WO 2009122495A1
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- WO
- WIPO (PCT)
- Prior art keywords
- pin
- press
- mounting device
- jig
- end surface
- Prior art date
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P19/00—Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P19/00—Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
- B23P19/02—Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes for connecting objects by press fit or for detaching same
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P19/00—Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
- B23P19/10—Aligning parts to be fitted together
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P19/00—Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
- B23P19/10—Aligning parts to be fitted together
- B23P19/12—Alignment of parts for insertion into bores
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/18—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for positioning only
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25B—TOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
- B25B11/00—Work holders not covered by any preceding group in the subclass, e.g. magnetic work holders, vacuum work holders
- B25B11/02—Assembly jigs
Definitions
- the present invention relates to a pin positioning jig and a pin mounting device used when mounting a cylindrical pin as a child part on a work (parent part) such as a machine part or an electronic part, and in particular, an automatic transmission for a vehicle or the like.
- the present invention relates to a pin positioning jig and a pin mounting device for positioning a pin at a predetermined angular position around an axis when a pin that rotatably supports the planetary gear is press-fitted into a carrier in a planetary gear mechanism applied to the above.
- a planetary gear mechanism applied to an automatic transmission or the like mounted on a vehicle includes a sun gear, an annular gear, a plurality of planetary gears meshed with the sun gear and the annular gear, a carrier that supports the planetary gear so as to rotate and revolve, and a planet.
- a pin or the like that rotatably supports the gear with respect to the carrier is provided.
- the planetary gear is rotatably supported by a pin through a needle bearing in order to reduce wear and resistance, and a lubricating oil passage is provided in the pin to supply lubricating oil to the bearing region. What is formed is known.
- a cylindrical pin has directionality in its axial direction (that is, a lubricating oil passage having a distinction between upward and downward is provided.
- a lifting plate that is driven to move up and down below the workpiece receiving plate, a cylinder that drives the lifting plate, and a lifting plate
- a centering guide and a work having a reduced diameter portion that is inserted into a lubricating passage of a pin that is held directly through the work receiving plate from below to align the planetary gear insertion hole and the carrier insertion hole.
- a carrier holding member that presses the carrier held on the receiving plate from above, and a pin that is carried directly above the carrier is press-fitted into the insertion hole. It includes a pressing member that presses from above as much as possible, a sensor that determines whether the reduced diameter portion of the centering guide has entered the lubricating oil passage of the carried-in pin based on the tilted state of the pin, and confirms the vertical direction of the pin.
- a sensor that determines whether the reduced diameter portion of the centering guide has entered the lubricating oil passage of the carried-in pin based on the tilted state of the pin, and confirms the vertical direction of the pin
- the conventional pin mounting device described above is intended for pins having directionality in the axial direction (the route of the lubricating oil passage is different depending on whether it is upward or downward), and pins having directionality around the axis (circumferential direction).
- An object of the present invention is to provide a pin positioning jig and a pin mounting device which can direct a cylindrical pin having directionality to a predetermined angle and mount it on a work (parent part) with high accuracy.
- a pin positioning jig of the present invention that achieves the above object is a pin positioning jig for positioning a pin so as to mount a cylindrical pin in an insertion hole of a work, and is a pin for aligning the pin with an insertion hole of a work. And a regulation mechanism that is provided on the jig body to regulate the rotation of the pin so as to direct the pin to a predetermined angular position around its axis.
- the restriction mechanism is provided on the jig body to regulate the rotation of the pin so as to direct the pin to a predetermined angular position around its axis.
- the pin can be mounted to the insertion hole of the workpiece with high accuracy in a state where the pin is aligned with the insertion hole of the workpiece and the pin is positioned at a predetermined angular position with respect to the insertion hole of the workpiece. Moreover, when carrying the pin positioning jig which accommodated the pin, it is possible to prevent the positional deviation of the pin by positioning with the restriction mechanism.
- the restricting mechanism disengages from the recess and the engagement position where the pin enters and engages from the outside in the radial direction of the pin with respect to the recess formed offset from the center on the upper end surface of the pin.
- a configuration including an engagement member that can move between the disengagement positions and a biasing member that biases the engagement members toward the engagement position can be employed. According to this configuration, since the engaging member and the urging member that reciprocate between the engagement position and the disengagement position (for example, linearly reciprocate or swing and reciprocate) are employed as the restriction mechanism, Simplification and downsizing of the structure can be achieved.
- the engaging member is formed to be swingable, and is an engaging portion that can be engaged with the concave portion on one end side, and a force for releasing the engaging portion from the concave portion on the other end side. It is possible to adopt a configuration having an operation unit that exerts the following. According to this configuration, when the pin is accommodated in the jig main body, the operation portion of the engagement member is pushed down to keep the engagement portion away from the pin accommodation area (for example, the accommodation hole), and the pin is held at a predetermined angle.
- the pin mounting device of the present invention that achieves the above object is a pin mounting device that mounts a cylindrical pin in an insertion hole of a workpiece, and accommodates the pin in the workpiece so as to align the pin with the insertion hole of the workpiece.
- a pin positioning jig and a pin positioning jig, which are provided on the jig main body to restrict the rotation of the pin, and the pin positioning jig are fitted from above to direct the fitting jig body and the pin at a predetermined angular position around the axis.
- the restricting mechanism disengages from the recess and the engagement position where the pin enters and engages from the outside in the radial direction of the pin with respect to the recess formed by being deviated from the center on the upper end surface of the pin.
- a configuration including an engagement member that can move between the disengagement positions and a biasing member that biases the engagement members toward the engagement position can be employed. According to this configuration, since the engaging member and the urging member are employed as the regulating mechanism, the structure can be simplified and the size can be reduced.
- the press-fitting mechanism includes a lift head that can be lifted and lowered relative to the table, a lift drive unit that lifts and lowers the lift head, and a press-fit rod that is provided in the lift head and press-fits the pin into the insertion hole.
- the structure including these can be adopted. According to this configuration, since the elevating head, the elevating drive unit, and the press-fit rod are employed as the press-fit mechanism, the press-fit operation can be smoothly performed while achieving simplification of the structure, size reduction of the apparatus, and the like.
- the pressing mechanism includes a pressing member that is supported so as to be movable up and down within a predetermined range with respect to the lifting head, and a biasing spring that biases the pressing member downward.
- a pressing member that is supported so as to be movable up and down within a predetermined range with respect to the lifting head, and a biasing spring that biases the pressing member downward.
- the pressing mechanism the pressing member supported by the elevating head and the urging member that urges the pressing member downward are employed, so compared to the case where a dedicated member that supports the pressing member is provided, The number of parts can be reduced, the structure around the lifting head can be simplified, and the apparatus can be miniaturized.
- the pin mounting device having the above-described configuration may employ a configuration that further includes a detection mechanism that detects whether or not the pin is oriented at a predetermined angular position. According to this configuration, when the pin is deviated from the predetermined angular position, the detection mechanism detects this, so that the pin press-fitting operation can be stopped in advance.
- the detection mechanism is supported so as to be movable in the vertical direction with respect to the press-fit rod, is urged downward so as to protrude from the lower end surface of the press-fit rod, and the pin is at a predetermined angular position.
- the lower end portion of the mover enters the concave portion of the pin while the lower end surface of the press-fit rod is in contact with the pin.
- the sensor can detect that the pin is oriented at a predetermined angular position, while the lower end surface of the press-fit rod is in contact with the upper end surface of the pin.
- the sensor emits a signal in conjunction with the operation of the mover and can detect that the pin is displaced from the predetermined angular position.
- the detection mechanism a mover that is supported by the press-fit rod, and a sensor that emits a signal in conjunction with the movement of the mover, it is unnecessary to process image information required when using a visual sensor or the like. Simplification of the structure, cost reduction, and the like can be achieved, and erroneous detection and the like can be reliably prevented because of the mechanical contact operation.
- the restricting mechanism disengages from the recess and the engagement position where the pin enters and engages from the outside in the radial direction of the pin with respect to the recess formed by being deviated from the center on the upper end surface of the pin.
- An engagement member that can move between the disengagement position and an urging member that urges the engagement member toward the engagement position, and the detection mechanism is supported to be movable in the vertical direction with respect to the press-fit rod.
- a sensor that emits a detection signal in conjunction with an operation in which the mover is pushed up by abutting against the upper end surface of the pin when the pin is in a state of being deviated from a predetermined angular position. Recess with which the member engages And the recess mover can enter in a non-contact, is formed as a recess in the upper end surface of the pin, it is possible to adopt a configuration.
- the concave portion into which the engaging portion engages and the concave portion into which the movable element can enter without contact are one concave portion, when the pin is oriented and assembled to the jig body, the single concave portion Serves as a mark for determining a predetermined angular position, and can prevent erroneous assembly.
- the pin mounting device having the above-described configuration, it is possible to adopt a configuration in which the press-fitting rod is detachably formed with respect to the lifting head. According to this configuration, since the press-fit rod can be exchanged according to the type of pin, the pin mounting operation can be performed in accordance with the type of pin (model of the planetary gear mechanism).
- a cylindrical pin having directionality around the axis can be achieved while achieving simplification of the structure, miniaturization of the device, cost reduction, and the like. It can be mounted on a workpiece (parent part) with high precision by directing it at a predetermined angle.
- a pin that rotatably supports the planetary gear is a carrier. When press-fitting into the pin, the pin can be positioned and mounted with high accuracy in the direction of a predetermined angle around the axis.
- FIG. 5 is a side view (including a partial cross section) showing a press-fit rod included in the pin mounting device shown in FIG. 4. It is a partial side view explaining operation
- the workpiece W is a part of a planetary gear mechanism mounted on an automatic transmission device of an automobile, and includes a carrier W1, a planetary gear W2, a needle bearing W3, and a planetary gear.
- a temporary pin (process pin) W5 inserted into an insertion hole W4 defined by the carrier W1 and the needle bearing W3 is formed.
- An original pin P (actual pin) is attached to the workpiece W so as to replace the temporary pin W5.
- the pin P (actual pin) is formed in a cylindrical shape, and is formed to extend in the radial direction D at a position deviated from the center (axis line L) on the upper end surface P1 and the upper end surface P1.
- a groove-shaped recess P2, a lubricating oil passage P3 extending in the direction of the axis L, a lubricating oil hole P4 and a lubricating oil hole P5 formed so as to communicate with the lubricating oil passage P3 and penetrate in the radial direction are provided.
- the recess P2 is formed at the same angular position as the lubricating oil hole P4 around the axis L (circumferential direction).
- the lubricating oil hole P4 and the lubricating oil hole P5 are formed at positions shifted from each other by 180 degrees around the axis L (circumferential direction). Further, in the lubricating oil hole P4 and the lubricating oil hole P5, the lubricating oil hole P4 is formed closer to the upper end surface P1 than the lubricating oil hole P5 in the axis L direction.
- the pin P is provided with one concave portion P2 in the upper end surface P1 at an angular position corresponding to the lubricating oil hole P4, when the concave portion P2 is confirmed, the pin P is mounted on the pin positioning jig M. It can be used as a landmark.
- the pin positioning jig M includes a jig main body 100 formed in a substantially disc shape, a plurality of restriction mechanisms 110 that are fixed to the upper part of the jig main body 100 and restrict the rotation of the pins P, and the like. It has.
- the jig body 100 includes a circular central opening 101, a plurality of cylindrical receiving holes 102 arranged in the circumferential direction around the central opening 101, and each receiving hole.
- a fixed recess 103 provided on the outer side in the radial direction with respect to 102, a fitting portion 104 fitted to the carrier W1 of the workpiece W, and the like are provided.
- the central opening 101 is formed so that a sun gear meshed with the planetary gear W2 of the workpiece W can be inserted.
- the receiving hole 102 is inserted into the pin P to restrict the positional deviation in the direction perpendicular to the axis L, align with the insertion hole W4 of the workpiece W, and has an inner diameter dimension that allows the pin P to be easily inserted manually. Is formed.
- the fixing recess 103 is formed so as to partially embed the holder 111 of the restriction mechanism 110 and fix it with a fastening screw (not shown) or the like.
- the restriction mechanism 120 includes a holder 111 that is fixed to the fixing recess 103 of the jig main body 100, an engagement member 112 that is swingably supported with respect to the holder 111, A biasing spring 113 or the like as a biasing member that biases the combined member 112 toward the accommodation hole 102 (pin P side) is provided.
- the holder 111 is fixed to a fixing recess 103 of the jig main body 100 and fixed by using a fastening screw (not shown) or the like, and a support shaft 111a that supports the engaging member 112 in a swingable manner.
- the stopper wall 111b for stopping the engaging member 112 at the engaging position where the engaging member 112 is engaged with the concave portion P2 of the pin P, the stopper wall 111c for stopping the engaging member 112 at the releasing position where the engaging member 112 is released from the concave portion P2, and the biasing spring 113 are accommodated. Space portion 111d and the like.
- the engaging member 112 is formed in a substantially T shape and is supported swingably by the support shaft 111 a, and can be engaged with the concave portion P ⁇ b> 2 of the pin P on one end side thereof. 112a, and an operation portion 112b that exerts a force for releasing the engaging portion 112a from the recess P2 on the other end side.
- the urging spring 113 is a coil-shaped compression spring, and is arranged by being compressed by a predetermined amount in the space 111 d of the holder 111, so that the engagement member 112 is directed toward the engagement position, that is, A biasing force is exerted so that the engaging portion 112a engages with the concave portion P2 of the pin P.
- the engagement member 112 stops at the engagement position where it is brought into contact with the stopper wall 111b by the urging force of the urging spring 113 and engages with the concave portion P2 of the pin P in a state where no force is applied to the operation portion 112b.
- the operation portion 112b is brought into contact with the stopper wall 111c to stop at a disengagement position where the pin P is disengaged from the recess P2.
- the regulation mechanism 120 can be modularized, and the pin P can be oriented and held at a predetermined angular position around the axis L while achieving simplification and downsizing of the structure.
- a workpiece W is prepared in which a planetary gear W2 is fitted into a carrier W1 and a temporary pin W5 is inserted into an insertion hole W4, and pin positioning is performed so that the workpiece W is fitted into the carrier W1.
- the jig body 100 of the jig M is fitted.
- the jig main body 100 is positioned with respect to the workpiece W by the upper end region of the temporary pin W ⁇ b> 5 entering the lower region of the accommodation hole 102.
- the operating portion 112b is pushed down to move the engaging member 112 to the disengagement position.
- the concave portion P2 is oriented radially outward of the jig main body 100 and inserted into the accommodation hole 102 of the jig main body 100.
- the engagement member 112 is moved to the engagement position by the urging force of the urging spring 113, and the engagement portion 112a enters the recess P2 of the pin P and engages.
- the pin P is positioned and held at a predetermined angular position around the axis L so that the recess P2, that is, the lubricating oil hole P4 faces radially outward, and the pin P is aligned with the insertion hole W4 of the workpiece W. Matching is done.
- the jig P can be accommodated in the jig body 100 while positioning the pin P by a simple operation. Further, even if the pin positioning jig M is carried after the pins P are attached to the pin positioning jig M, the positional deviation of the pins P can be prevented.
- the pin mounting device is provided on the base 10 and the base 10.
- the table 20 is placed on the base 10 and places the workpiece W fitted with the pin positioning jig M from above.
- a rotary table provided with a work holding unit HU for carrying the work W fitted with the pin positioning jig M from above onto the table 20 and carrying out the work W after the press-fitting process from the table 20. RT etc. are arranged.
- the table 20 is formed to place and hold the pin positioning jig M and the workpiece W transferred from the rotary table RT at a predetermined height position.
- the table 20 may be provided with a fixing mechanism that temporarily fixes the held work W, or a drive mechanism that moves and holds the held work W two-dimensionally or three-dimensionally.
- the vertical frame 30 is fixed upright on the base 10 so as to extend in the up-down direction Z, and has a guide portion 31 that guides the elevating head 40 so as to be movable up and down in the up-down direction Z.
- the elevating drive unit 50 is held inside or outside the wall.
- the elevating head 40 is connected to the guide portion 31 of the vertical frame 30 so as to be movable up and down and guided in the vertical direction Z, and the ball nut of the elevating drive unit 50.
- a connecting portion 42 to which the press-fitting rod 60 is detachably attached, a housing portion 44 for housing a part of the detection mechanism 90, and a rod portion 72 of the pressing member 70 are guided in a vertically movable manner.
- the lower end surface 47 that abuts the upper end portion of the biasing spring 80, and the like.
- the elevating drive unit 50 includes a motor 51 fixed to the upright frame 30, a ball screw 52 that is directly connected to the motor 51 and extends in the up-down direction Z, and is screwed to the ball screw 52 to connect the elevating head 40.
- a ball nut 53 connected to 42 is provided. Then, when the ball screw 52 rotates in one direction due to the activation of the motor 51, the elevating drive unit 50 lowers the elevating head 40 via the ball nut 53, while when the ball screw 52 rotates in the other direction, the ball nut 53 The raising / lowering head 40 is raised via this.
- the screw feed mechanism using the ball screw 52 and the ball nut 53 is shown as the lifting drive unit, but the present invention is not limited to this, and a hydraulic or pneumatic cylinder actuator or solenoid is used. An electromagnetic actuator or the like may be employed.
- the press-fitting rod 60 defines a lower end surface 61 a that can abut on the upper end surface P ⁇ b> 1 of the pin P to be press-fitted, and a cylindrical shape that can be inserted into the receiving hole 102 of the positioning jig M during press-fitting.
- the movable portion 91 that is fitted to the distal end portion 61 and the fitting portion 43 of the elevating head 40 and delimits the upper end surface 62a, the collar portion 63, and the movable element 91 that forms part of the detection mechanism 90 is moved in the vertical direction Z.
- a guide hole 64 for guiding freely, a flange portion 91c provided in the middle of the movable element 91, a housing portion 65 for housing the biasing spring 91d, and the like are provided.
- the press-fit rod 60 is detachably fixed to the fitting portion 43 of the elevating head 40. That is, by making the press-fit rod 60 detachable from the lifting head 40, the press-fit rod 60 can be exchanged according to the type of the pin P.
- a press-fitting mechanism that press-fits the pin P into the insertion hole W4 of the workpiece W in a state where the pressing mechanism is operated is configured by the elevating head 40, the elevating drive unit 50, the press-fitting rod 60, and the like.
- the elevating head 40, the elevating drive unit 50, and the press fitting rod 60 as the press fitting mechanism, it is possible to smoothly perform the press fitting operation while achieving simplification of the structure, miniaturization of the apparatus, and the like. it can.
- the pressing member 70 is connected to the disc portion 71 having a contact portion 71 a whose outer edge portion protrudes downward, and the guide portion 45 of the elevating head 40.
- a rod portion 72 and the like that are freely passed are provided.
- the disc portion 71 includes a through hole 71 b through which the press-fit rod 60 passes without contact.
- the rod portion 72 includes a flange portion 72 a that can come into contact with the upper end surface 46 of the elevating head 40.
- the urging spring 80 is a coil-shaped compression spring, and its lower end is in contact with the upper surface of the disk portion 71, and its upper end is in contact with the lower end surface 47 of the elevating head 40.
- the pressing member 70 is urged downward by the urging spring 80 when not in operation, and the collar portion 72a abuts against the upper end surface 46 and stops.
- the elevating head 40 is lowered and its abutting portion 71a abuts on the jig main body 100 (the upper surface thereof) of the pin positioning jig M, only the elevating head 40 remains stopped without being pushed down. Is lowered, and the urging spring 80 is compressed by the lower end surface 47 of the elevating head 40. That is, the pressing member 70 is configured to press the jig main body 100 of the pin positioning jig M toward the work W (and the table 20) by using the biasing force generated by the compression of the biasing spring 80.
- a pressing mechanism that presses the jig main body 100 of the pin positioning jig M toward the workpiece W is configured by the pressing member 70, the biasing spring 80, and the like.
- the pressing member 70 supported by the elevating head 40 and the urging spring 80 that urges the pressing member 70 downward are employed as the pressing mechanism, a dedicated member that supports the pressing member 70 is provided. In comparison, the number of parts can be reduced, the structure around the lifting head 40 can be simplified, and the apparatus can be miniaturized.
- the detection mechanism 90 is disposed in the accommodating portion 44 so as to be interlocked with the vertical movement of the movable element 91 supported by the press-fit rod 60 so as to be movable in the vertical direction Z.
- the mover 91 is formed so as to demarcate a lower end 91a, an upper end 91b, a flange 91c, a biasing spring 91d, a flange 91e, and the like, and is inserted into the guide hole 64 of the press-fit rod 60.
- the flange portion 91c and the biasing spring 91d are accommodated in the accommodating portion 65, and the lower end portion 91a protrudes from the lower end surface 61a of the press-fit rod 60 so as to be able to protrude and retract.
- the upper end portion 91 b and the flange portion 91 e are biased downward and are held in a state of protruding from the upper end surface 62 a of the press-fit rod 60.
- the lower end 91a of the mover 91 can enter the recess P2 of the pin P in a non-contact manner, as shown in FIG.
- the pin P is in a state of being deviated from the predetermined angular position, as shown in FIGS. 10 and 11, the lower end 91a thereof is pushed up against the upper end surface P1 of the pin P, and the upper end 91b is lifted up. It has become.
- the interlocking arm 92 is formed in a swingable lever shape, and is urged to rotate counterclockwise by the urging spring 93, and one end portion 92 a is connected to the upper end portion 91 b of the mover 91. The other end 92 b is in contact with the sensor 94. As shown in FIG. 5, the sensor 94 is fixed to the outer wall of the elevating head 40. When the interlock arm 92 rotates and the other end 92b moves downward and leaves, an output signal is generated. ing.
- the mover 91 when the pin P is oriented at a predetermined angular position and is accommodated in the positioning jig M, the mover 91 is in a state where the lower end surface 61a of the press-fit rod 60 is in contact with the pin P. Since the lower end portion 91a of this pin enters the concave portion P2 of the pin P and is not pushed upward, the sensor 94 can detect that the pin P is oriented at a predetermined angular position.
- a sensor 94 issues an output signal via an interlocking arm 92 that is interlocked with the operation of the mover 91, and detects that the pin P is displaced from a predetermined angular position.
- the detection mechanism 90 the movable element 91 supported by the press-fit rod 60, the interlocking arm 92 that interlocks with the operation of the movable element 91, the sensor 94 that generates an output signal in conjunction with the interlocking arm 92, and the like are employed.
- the concave portion P2 with which the engaging portion 112a of the engaging member 112 is engaged and the concave portion P2 into which the lower end portion 91a of the mover 91 can enter without contact are one on the upper end surface P1 of the pin P. Since it is formed as a recess, when the pin P is oriented and assembled to the jig body 100, one recess P2 serves as a mark for determining a predetermined angular position, and erroneous assembly can be prevented in advance.
- the lift head 40 is driven by the lift drive unit 50. Is driven downward.
- the abutting portion 71 a of the holding member 70 abuts on the outer peripheral area of the upper surface of the jig body 100 and the elevating head 40 is further lowered, the urging spring 80 is compressed, and the urging force
- the pressing member 70 presses the jig main body 100 toward the workpiece W and the table 20. Thereby, the jig main body 100 and the workpiece
- the lower end 91a of the mover 91 is moved into the recess P2 of the pin P as the elevating head 40, that is, the press-fit rod 60 is lowered. It enters in a non-contact manner, and the lower end surface 61a of the press-fit rod 60 (the front end portion 61) abuts on the upper end surface P1 of the pin P. Further, when the elevating head 40 is lowered, the tip 61 of the press-fit rod 60 enters the accommodation hole 102 and pushes down the pin P. As shown in FIG. 9, the pin P pushes down the temporary pin W5 and inserts the work hole W4. It is attached to.
- the operator can correct the assembly of the pin P, and can thereafter start the press-fitting operation similar to that described above.
- the detection mechanism 90 detects this, and therefore the press-fitting operation of the pin P is canceled before generation of yield products and unnecessary collection. Work etc. can be reduced.
- the restriction mechanism that restricts the rotation of the pin P is shown as including the holder 111, the engaging member 112, and the urging spring 113, but is not limited thereto, and the rotation of the pin P is not limited thereto. Any other restriction mechanism can be employed as long as it can be directed to a predetermined angular position.
- the detection mechanism 90 includes the movable element 91, the interlocking arm 92, the biasing spring 93, the sensor 94, and the like. However, the detection mechanism 90 is not limited thereto, and may be structurally permitted. The interlocking arm 92 and the biasing spring 93 may be eliminated, and the sensor 94 may be directly interlocked with the operation of the movable element 91.
- the pin positioning jig and the pin mounting device of the present invention have a cylindrical shape having a directivity around the axis (circumferential direction) while achieving simplification of the structure, miniaturization of the device, cost reduction, and the like.
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Abstract
Description
この遊星歯車機構において、遊星歯車は、摩耗や抵抗を低減するために、ニードルベアリングを介してピンにより回動自在に支持されると共に、ピンに潤滑油通路を設けて軸受け領域に潤滑油を供給するように形成されたものが知られている。
しかしながら、上記従来のピン装着装置では、軸線方向において方向性をもつ(上向きか下向きかで潤滑油通路の経路が異なる)ピンを対象としており、軸線回り(周方向)において方向性のあるピンを所定角度に位置決めして装着することは困難である。
また、上記従来のピン装着装置は、センタリングガイドを上下動させるための専用の機構(昇降板、シリンダ等)が必要であり、構成部品を集約して配置することができず、構造の複雑化、装置の大型化及び高コスト化等を招くものである。
この構成によれば、円筒状のピンをワークの挿入孔に対して所定角度位置に方向付けて装着する際に、ピンが冶具本体に収容されかつ規制機構により回転を規制された状態で、ピン位置決め冶具がワークに嵌合される。
これにより、ピンをワークの挿入孔に芯合わせし、かつ、ピンをワークの挿入孔に対して所定角度位置に位置決めした状態で、ピンをワークの挿入孔に高精度に装着することができる。また、ピンを収容したピン位置決め冶具を持ち運ぶ際に、規制機構により位置決めすることにより、ピンの位置ずれを防止することができる。
この構成によれば、規制機構として、係合位置と離脱位置を往復動する(例えば、直線的に往復動する又は揺動して往復動する)係合部材及び付勢部材を採用するため、構造の簡素化、小型化等を達成することができる。
この構成によれば、ピンを冶具本体に収容する際には、係合部材の操作部を押し下げて係合部をピンの収容領域(例えば、収容孔)から遠ざけた状態で、ピンを所定角度位置に方向付けて冶具本体に収容し、その後、操作部を離すだけで、付勢部材の付勢力により係合部材の係合部をピンの凹部に入り込ませて係合させることができる。このように、簡単な操作で、ピンを位置決めしつつ冶具本体に収容することができる。
この構成によれば、ピン位置決め冶具によりピンを位置決めした状態で、ピン位置決め冶具を嵌合したワークをテーブルに載置し、押圧機構により冶具本体を押圧して固定し、圧入機構によりピンをワークの挿入孔に圧入することができる。
この構成によれば、規制機構として、係合部材及び付勢部材を採用するため、構造の簡素化、小型化等を達成することができる。
この構成によれば、圧入機構として、昇降ヘッド、昇降駆動ユニット、及び圧入ロッドを採用するため、構造の簡素化、装置の小型化等を達成しつつ、圧入動作を円滑に行うことができる。
この構成によれば、押圧機構として、昇降ヘッドに支持された押圧部材及び押圧部材を下方に付勢する付勢部材を採用するため、押圧部材を支持する専用の部材を設ける場合に比べて、部品点数を削減でき、昇降ヘッド周りの構造を簡素化でき、装置を小型化することができる。
この構成によれば、ピンが所定角度位置からずれている場合は、検出機構がそのことを検出するため、ピンの圧入動作を未然に中止することができる。
この構成によれば、ピンが所定角度位置に方向付けられて位置決め冶具に収容されている場合、圧入ロッドの下端面がピンに当接した状態で、可動子の下端部はピンの凹部に入り込んで上方に押し上げられないため、センサはピンが所定角度位置に方向付けられていることを検出することができ、一方、圧入ロッドの下端面がピンの上端面に当接した状態で可動子の下端部がピンの上端面に当接して可動子が上方に持ち上げられると、センサが可動子の動作に連動して信号を発し、ピンが所定角度位置からずれていることを検出することができる。また、検出機構として、圧入ロッドに支持さえた可動子、可動子の動作に連動して信号を発するセンサを採用するため、ビジュアルセンサ等を採用する場合に要する画像情報の処理等が不要で、構造の簡素化、低コスト化等を達成でき、又、機械的な接触動作に基づくため誤検出等を確実に防止することができる。
この構成によれば、係合部が係合する凹部と可動子が非接触にて進入し得る凹部が、一つの凹部であるため、ピンを方向付けて冶具本体に組み付ける際に、一つの凹部が所定角度位置を決める目印となり、誤組付けを防止することができる。
この構成によれば、ピンの種類に応じて圧入ロッドを交換することができるため、ピンの種類(遊星歯車機構の機種)に対応してピンの装着動作を行うことができる。
W1 キャリア
W2 遊星歯車
W3 ニードルベアリング
W4 挿入孔
W5 仮ピン
10 ベース
20 テーブル
30 垂直フレーム
31 ガイド部
40 昇降ヘッド(圧入機構)
41 被ガイド部
42 連結部
43 嵌合部
44 収容部
45 ガイド部
46 上端面
47 下端面
50 昇降駆動ユニット(圧入機構)
51 モータ
52 ボールネジ
53 ボールナット
60 圧入ロッド(圧入機構)
61 先端部
61a 下端面
62 嵌合部
62a 上端面
63 鍔部
64 ガイド孔
65 収容部
70 押圧部材(押圧機構)
71 円板部
71a 当接部
71b 貫通孔
72 ロッド部
72a 鍔部
80 付勢バネ(付勢部材、押圧機構)
90 検出機構
91 可動子
91a 下端部
91b 上端部
91c 鍔部
91d 付勢バネ
91e 鍔部
92 連動アーム
93 付勢バネ
94 センサ
M ピン位置決め冶具
100 冶具本体
101 中央開口部
102 収容孔
103 固定凹部
104 嵌合部
110 規制機構
111 ホルダ
111a 支軸
111b,111c ストッパ壁
111d 空間部
112 係合部材
112a 係合部
112b 操作部
113 付勢バネ(付勢部材)
RT 回転テーブル
HU ワーク保持ユニット
このように、ピンPには、潤滑油孔P4に対応する角度位置において上端面P1に一つの凹部P2が設けられているため、この凹部P2を確認することにより、ピン位置決め冶具Mに組み付ける際の目印とすることができる。
冶具本体100は、図1及び図2に示すように、円形をなす中央開口部101、中央開口部101の周りおいて周方向に配列された円筒状の複数の収容孔102、各々の収容孔102に対して径方向の外側に設けられた固定凹部103、ワークWのキャリアW1に嵌合される嵌合部104等を備えている。
収容孔102は、ピンPを挿入して軸線Lに垂直な方向への位置ずれを規制してワークWの挿入孔W4と芯合わせすると共に、手作業によりピンPを容易に挿入できる内径寸法に形成されている。
固定凹部103は、規制機構110のホルダ111を部分的に埋設して締結ネジ(不図示)等により固定するように形成されている。
ホルダ111は、図7に示すように、冶具本体100の固定凹部103に嵌合して締結ネジ(不図示)等を用いて固定され、係合部材112を揺動自在に支持する支軸111a、係合部材112をピンPの凹部P2に係合する係合位置に停止させるストッパ壁111b、係合部材112を凹部P2から離脱した離脱位置に停止させるストッパ壁111c、付勢バネ113を収容する空間部111d等を備えている。
係合部材112は、図7に示すように、略T字状に形成されると共に支軸111aにより揺動自在に支持され、その一端側においてピンPの凹部P2に係合し得る係合部112a、その他端側において凹部P2から係合部112aを離脱させるための力を及ぼす操作部112b等を備えている。
付勢バネ113は、図7に示すように、コイル状の圧縮バネであり、ホルダ111の空間部111dに所定量圧縮して配置され、係合部材112を係合位置に向けて、すなわち、係合部112aがピンPの凹部P2に係合するように付勢力を及ぼしている。
このように、規制機構120として、冶具本体100に固定されるホルダ111、ホルダ111により揺動自在に支持される係合部材112、ホルダ111に収容される付勢バネ113を採用したことにより、規制機構120をモジュール化することができ、構造の簡素化、小型化等を達成しつつ、ピンPを軸線L回りの所定角度位置に方向付けて保持することができる。
先ず、図2に示すように、キャリアW1に遊星歯車W2が嵌め込まれ、仮ピンW5が挿入孔W4に挿入されたワークWが準備され、このワークWのキャリアW1に嵌合させるようにピン位置決め冶具Mの冶具本体100を嵌合させる。
このとき、冶具本体100は、図7に示すように、仮ピンW5の上端領域が収容孔102の下方領域に入り込むことで、ワークWに対して位置決めされる。
そして、操作部112bの押し下げを解除すると、係合部材112が付勢バネ113の付勢力により係合位置に移動して、係合部112aがピンPの凹部P2に入り込んで係合する。これにより、ピンPは、凹部P2すなわち潤滑油孔P4が径方向外側を向くように、軸線L回りの所定角度位置に方向付けられて位置決めされ保持されると共に、ワークWの挿入孔W4と芯合わせが行われる。
このように、簡単な操作で、ピンPを位置決めしつつ冶具本体100に収容することができる。また、ピンPをピン位置決め冶具Mに取り付けた後にピン位置決め冶具Mを持ち運んでも、ピンPの位置ずれを防止することができる。
また、ベース10上には、ピン位置決め冶具Mを上方から嵌合したワークWを、テーブル20上に搬入し又圧入処理が済んだワークWをテーブル20から搬出するワーク保持ユニットHUを備える回転テーブルRT等が配置されている。
尚、テーブル20には、保持したワークWを一時的に固定する固定機構、あるいは、保持したワークWを二次元又は三次元的に移動させて位置決めする駆動機構等を備えていてもよい。
垂直フレーム30は、図4に示すように、上下方向Zに伸長するように、ベース10に直立して固定されており、昇降ヘッド40を上下方向Zに昇降自在にガイドするガイド部31を有し、又、その内部又は外壁部において昇降駆動ユニット50を保持している。
そして、昇降駆動ユニット50は、モータ51の起動により、ボールネジ52が一方向に回転すると、ボールナット53を介して昇降ヘッド40を下降させ、一方、ボールネジ52が他方向に回転すると、ボールナット53を介して昇降ヘッド40を上昇させるようになっている。
尚、ここでは、昇降駆動ユニットとして、ボールネジ52及びボールナット53を用いたネジ送り機構を示したが、これに限定されるものではなく、油圧又は空気圧式のシリンダ型のアクチュエータ、ソレノイドを用いた電磁アクチュエータ等を採用してもよい。
そして、圧入ロッド60は、昇降ヘッド40の嵌合部43に対して着脱自在に固定されるようになっている。すなわち、圧入ロッド60を昇降ヘッド40に対して着脱自在としたことにより、ピンPの種類に応じて圧入ロッド60を交換することができる。
このように、圧入機構として、昇降ヘッド40、昇降駆動ユニット50、及び圧入ロッド60を採用したことにより、構造の簡素化、装置の小型化等を達成しつつ、圧入動作を円滑に行うことができる。
円板部71は、図5に示すように、圧入ロッド60を非接触にて通す貫通孔71bを備えている。ロッド部72は、昇降ヘッド40の上端面46に当接し得る鍔部72aを備えている。
付勢バネ80は、図5に示すように、コイル状の圧縮バネであり、その下端部が円板部71の上面に当接され、その上端部が昇降ヘッド40の下端面47に当接されて、所定の圧縮代に圧縮した状態でロッド部72の周りに嵌め込まれている。
そして、押圧部材70は、非作動時において、付勢バネ80により下方に向けて付勢され、その鍔部72aが上端面46に当接して停止している。この状態において、昇降ヘッド40が下降してその当接部71aがピン位置決め冶具Mの冶具本体100(の上面)に当接すると、押圧部材70は下降せずに停止したまま、昇降ヘッド40だけが下降し、昇降ヘッド40の下端面47により付勢バネ80が圧縮される。すなわち、押圧部材70は、付勢バネ80の圧縮による付勢力を利用して、ピン位置決め冶具Mの冶具本体100をワークW(及びテーブル20)に向けて押圧するようになっている。
このように、押圧機構として、昇降ヘッド40に支持された押圧部材70及び押圧部材70を下方に付勢する付勢バネ80を採用するため、押圧部材70を支持する専用の部材を設ける場合に比べて、部品点数を削減でき、昇降ヘッド40周りの構造を簡素化でき、装置を小型化することができる。
そして、可動子91は、ピンPが所定角度位置に方向付けられた状態にあるとき、図9に示すように、その下端部91aがピンPの凹部P2に非接触にて進入し得ると共に、ピンPが所定角度位置からずれた状態にあるとき、図10及び図11に示すように、その下端部91aがピンPの上端面P1に当接して押し上げられ、その上端部91bが持ち上がるようになっている。
センサ94は、図5に示すように、昇降ヘッド40の外壁に固定されており、連動アーム92が回転して他端部92bが下向きに移動し離脱することで、出力信号を発するようになっている。
このように、検出機構90として、圧入ロッド60に支持された可動子91、可動子91の動作に連動する連動アーム92、連動アーム92に連動して出力信号を発するセンサ94等を採用したことにより、ビジュアルセンサ等を採用する場合に要する画像情報の処理等が不要で、構造の簡素化、低コスト化等を達成でき、又、機械的な接触動作に基づくため誤検出等を確実に防止することができる。
先ず、ピンPがセットされたピン位置決め冶具MがワークWに嵌合されて、回転テーブルRT及びワーク保持ユニットHUによりテーブル20上に搬入されると、昇降駆動ユニット50の駆動により、昇降ヘッド40が下降駆動される。
そして、図8に示すように、保持部材70の当接部71aが、冶具本体100の上面外周領域に当接して昇降ヘッド40がさらに下降すると、付勢バネ80が圧縮され、その付勢力により押圧部材70が冶具本体100をワークW及びテーブル20に向けて押圧する。これにより、冶具本体100とワークWはお互いに位置ずれしないように保持される。
そして、この出力信号に基づいて、制御盤により制御信号が出力されて、昇降駆動ユニット50が逆向きの駆動力を発生して昇降ヘッド40を上昇させ、ピンPの圧入動作を中止する。これにより、作業者は、ピンPの組付けを手直しすることができ、その後前述同様の圧入操作を開始することができる。
このように、ピンPが所定角度位置からずれて組み付けられた場合は、検出機構90がそのことを検出するため、ピンPの圧入動作を未然に中止して、歩留まり品の発生、不要な回収作業等を減らすことができる。
上記実施形態においては、検出機構90として、可動子91、連動アーム92、付勢バネ93、センサ94等を備えるものを示したが、これに限定されるものではなく、構造的に許されれば、連動アーム92及び付勢バネ93を廃止して、可動子91の動作にセンサ94を直接連動させるように構成してもよい。
Claims (11)
- 円筒状のピンをワークの挿入孔に装着するべく、ピンを位置決めするピン位置決め冶具であって、
ピンをワークの挿入孔と芯合わせするべくピンを収容してワークに嵌合される冶具本体と、ピンをその軸線回りの所定角度位置に方向付けるべく前記冶具本体上に設けられてピンの回転を規制する規制機構と、
を含む、ピン位置決め冶具。 - 前記規制機構は、ピンの上端面において中心から偏倚して形成された凹部に対して、ピンの径方向外側から入り込んで係合する係合位置と前記凹部から離脱する離脱位置との間を移動し得る係合部材と、前記係合部材を前記係合位置に向けて付勢する付勢部材と、を含む、
ことを特徴とする請求の範囲第1項に記載のピン位置決め冶具。 - 前記係合部材は、揺動自在に形成され、その一端側において前記凹部に係合し得る係合部、その他端側において前記凹部から前記係合部を離脱させるための力を及ぼす操作部を有する、
ことを特徴とする請求の範囲第2項に記載のピン位置決め冶具。 - 円筒状のピンをワークの挿入孔に装着するピン装着装置であって、
ピンをワークの挿入孔と芯合わせするべくピンを収容してワークに嵌合される冶具本体及びピンをその軸線回りの所定角度位置に方向付けるべく前記冶具本体上に設けられてピンの回転を規制する規制機構を含むピン位置決め冶具と、
前記ピン位置決め冶具を上方から嵌合したワークを載置するテーブルと、
前記位置決め冶具の冶具本体をワークに向けて押圧する押圧機構と、
前記押圧機構が作動した状態で、ピンをワークの挿入孔に圧入する圧入機構と、
を含む、ピン装着装置。 - 前記規制機構は、ピンの上端面において中心から偏倚して形成された凹部に対して、ピンの径方向外側から入り込んで係合する係合位置と前記凹部から離脱する離脱位置との間を移動し得る係合部材と、前記係合部材を前記係合位置に向けて付勢する付勢部材とを含む、
ことを特徴とする請求の範囲第4項に記載のピン装着装置。 - 前記圧入機構は、前記テーブルに対して昇降自在な昇降ヘッドと、前記昇降ヘッドを昇降駆動する昇降駆動ユニットと、前記昇降ヘッドに設けられてピンを挿入孔に圧入する圧入ロッドと、を含む、
ことを特徴とする請求の範囲第4項又は第5項に記載のピン装着装置。 - 前記押圧機構は、前記昇降ヘッドに対して所定範囲を上下動自在に支持された押圧部材と、前記押圧部材を下方に向けて付勢する付勢バネと、を含む、
ことを特徴とする請求の範囲第6項に記載のピン装着装置。 - ピンが前記所定角度位置に方向付けられているか否かを検出する検出機構を、さらに含む、
ことを特徴とする請求の範囲第4項に記載のピン装着装置。 - 前記検出機構は、前記圧入ロッドに対して上下方向に移動自在に支持されると共に前記圧入ロッドの下端面から突出するように下向きに付勢されかつピンが前記所定角度位置に方向付けられた状態にあるときピンの上端面において中心から偏倚して形成された凹部に非接触にて進入し得る可動子と、ピンが前記所定角度位置からずれた状態にあるとき前記可動子がピンの上端面に当接して押し上げられる動作に連動して検出信号を発するセンサと、を含む、
ことを特徴とする請求の範囲第8項に記載のピン装着装置。 - 前記規制機構は、ピンの上端面において中心から偏倚して形成された凹部に対して、ピンの径方向外側から入り込んで係合する係合位置と前記凹部から離脱する離脱位置との間を移動し得る係合部材と、前記係合部材を前記係合位置に向けて付勢する付勢部材とを含み、
前記検出機構は、前記圧入ロッドに対して上下方向に移動自在に支持されると共に前記圧入ロッドの下端面から突出するように下向きに付勢されかつピンが前記所定角度位置に方向付けられた状態にあるときピンの上端面において中心から偏倚して形成された凹部に非接触にて進入し得る可動子と、ピンが前記所定角度位置からずれた状態にあるとき前記可動子がピンの上端面に当接して押し上げられる動作に連動して検出信号を発するセンサとを含み、
前記係合部材が係合する凹部と前記可動子が非接触にて進入し得る凹部とは、ピンの上端面において一つの凹部として形成されている、
ことを特徴とする請求の範囲第8項に記載のピン装着装置。 - 前記圧入ロッドは、前記昇降ヘッドに対して着脱自在に形成されている、
ことを特徴とする請求の範囲第6項に記載のピン装着装置。
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