CN215069677U - Guide pin mechanism of high seat plate of capacitor - Google Patents

Guide pin mechanism of high seat plate of capacitor Download PDF

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Publication number
CN215069677U
CN215069677U CN202121362546.3U CN202121362546U CN215069677U CN 215069677 U CN215069677 U CN 215069677U CN 202121362546 U CN202121362546 U CN 202121362546U CN 215069677 U CN215069677 U CN 215069677U
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China
Prior art keywords
guide
seat plate
bedplate
capacitor
die holder
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CN202121362546.3U
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Chinese (zh)
Inventor
周均
李星
周小媛
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Dongguan Shige Electronics Group Co Ltd
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Dongguan Shige Electronics Group Co Ltd
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Priority to CN202121362546.3U priority Critical patent/CN215069677U/en
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Abstract

The utility model relates to a electric capacity equipment technical field especially relates to direction contact pin mechanism of high bedplate of condenser, including the finger anchor clamps that are used for the buffering anchor clamps of centre gripping condenser and are used for the high bedplate of centre gripping, still include the direction die holder, the direction die holder is opened there is the guiding hole, the buffering anchor clamps can the upward movement in order to gomphosis of high bedplate to direction die holder bottom, the finger anchor clamps that have the condenser of centre gripping can the downstream in order to insert the stitch of condenser in the jack of high bedplate via the guiding hole of direction die holder, and the finger anchor clamps continue descending in order to make the condenser imbed completely to accomplish the contact pin in the high bedplate after the direction die holder abdicating; even assemble low bedplate, the guiding hole of this direction die holder also can laminate to the stitch hole on the low bedplate, accomplishes contact pin and equipment, and whole process's contact pin precision is higher, and the stitch gets into behind the guiding hole, can align the stitch hole of ground disect insertion to high bedplate or low bedplate, and efficiency is high, can be used for the equipment of low bedplate and high bedplate universally.

Description

Guide pin mechanism of high seat plate of capacitor
Technical Field
The utility model relates to an electric capacity equipment technical field especially relates to a direction contact pin mechanism of high bedplate of condenser.
Background
In the condenser course of working, need be connected the stitch hole of the stitch of condenser and bedplate, thereby assemble into a complete electric capacity bedplate, the bedplate can divide into the multiple according to the market demand, wherein including low bedplate and high bedplate, and current bedplate feed mechanism most can only assemble low bedplate and condenser, if change into high bedplate and assemble, because the diameter of the jack of stitch and high bedplate is all comparatively tiny, this high bedplate has the stitch hole cooperation equipment of certain highly unable stitch and high bedplate with the condenser accurately, the stitch is difficult for aliging with the stitch hole of high bedplate, lead to the equipment failure, influence packaging efficiency, the defective products appears easily.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a direction contact pin mechanism of high bedplate of condenser to the unable accurate needle of wearing of stitch with the condenser of the high bedplate of prior art accurately.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
the material loading guiding mechanism of the high bedplate of container, including the finger anchor clamps that are used for the buffering anchor clamps of centre gripping condenser and are used for the high bedplate of centre gripping, still include the direction die holder, the direction die holder is opened there is the guiding hole, buffering anchor clamps can the upward movement in order to insert high bedplate gomphosis to direction die holder bottom, the centre gripping has the finger anchor clamps of condenser can the downstream to insert the jack of high bedplate with the stitch of condenser via the guiding hole of direction die holder, and make a shift at the direction die holder after the finger anchor clamps continue down so that the condenser imbeds to accomplish the contact pin in the high bedplate completely.
Further: the guide die holder comprises a pair of guide dies which are symmetrical to each other and have an opening and closing function, and the guide dies are opened to realize abdication.
Further: the bottom of the guide die is provided with a male die matched with the high seat plate, the inner side wall of the guide die is vertically provided with two through guide grooves, and after the two guide dies are combined, the two opposite guide grooves form a complete guide hole.
Further: the buffering anchor clamps include the centre gripping subassembly, and the centre gripping subassembly has the drive seat in smooth chamber including the shaping, and sliding installation has a pair of slide in the smooth chamber, and every slide all installs a pair of guide rail with smooth chamber sliding fit, and the opposite face of two slides is shaped respectively has opposite direction's chute, but lifting slidable mounting has the sloping block subassembly with chute sliding fit in the drive seat, and the sloping block subassembly drives two slides and is the horizontal sliding motion at the spout with chute sliding fit in vertical direction.
Further: the clamping assembly further comprises an clamp body, a sliding rod with an elastic function is vertically arranged in the clamp body, the sliding rod penetrates through the clamp body and a driving seat to be connected with an oblique block assembly, the oblique block assembly comprises a guide block which can slide up and down between two sliding seats and two driving oblique blocks which are matched with the forming directions of two chutes, the two driving oblique blocks are formed on two sides of the guide block and embedded on the corresponding chutes respectively, and the top of the guide block is connected with the bottom of the sliding rod through threads.
Further: the finger clamp comprises a supporting seat formed with a seat plate groove, a clamping piece is arranged on the periphery of the supporting seat, the clamping piece penetrates through the supporting seat to elastically clamp and position elements in the seat plate groove, and the finger clamp further comprises a releasing mechanism driving the clamping piece to open.
Further: the releasing mechanism is a cam mechanism, the cam mechanism comprises a rotary table and a cam block which is rotatably arranged on the rotary table, the clamping pieces are annularly distributed on the rotary table around the cam block, and the cam block can be periodically matched with each clamping piece and drives the clamping pieces to be opened when rotating.
Further: the turntable is provided with an elastic piece which is elastically connected with the clamping piece, the elastic piece keeps the clamping piece in a clamping state through elastic force, one end of the elastic piece is fixed on the turntable through the mounting piece, and the clamping piece at the other end is connected.
Further: one side of the supporting seat is provided with a vibration disc feeding mechanism for feeding the high seat plate into the seat plate groove.
Further: vibration dish feed mechanism includes the vibration dish subassembly, and vibration dish subassembly one end is provided with the promotion piece that pushes away high bedplate into the bedplate inslot.
The utility model has the advantages that: the utility model discloses a direction contact pin mechanism of high bedplate of condenser, pass direction die holder and the cooperation of high bedplate through the stitch of buffering anchor clamps with the condenser and accomplish accurate contact pin, even change into low bedplate and assemble, the guide hole of this direction die holder also can laminate to the stitch hole on the low bedplate, accomplish contact pin and equipment, the contact pin precision of whole process is higher, after the stitch gets into the guide hole, can align the stitch hole of ground disect insertion high bedplate or low bedplate, high efficiency, can be used for the equipment of low bedplate and high bedplate universally.
Drawings
Fig. 1 is the axial direction structure schematic diagram of the feeding guide mechanism of the present invention.
Fig. 2 is a schematic view of the connection structure of the buffer clamp, the finger clamp and the guiding mold base of the present invention.
Fig. 3 is a schematic side view of the buffering fixture of the present invention.
Fig. 4 is an exploded schematic view of the clamping assembly of the present invention.
Fig. 5 is a schematic view of a connection structure between the clamping member and the cam mechanism according to the present invention.
Fig. 6 is an enlarged view of the portion B in fig. 5, which includes a schematic view of the finger clamp clamping the high seat plate.
Fig. 7 is a schematic view of a partial structure of the clamping assembly of the present invention.
Fig. 8 is an enlarged schematic structural view of a portion a in fig. 1, which includes a connection structural view of the buffer clamp, the finger clamp, the guide die holder, and the lead split assembly.
Fig. 9 is a schematic view of a partial structure of the guiding mold base of the present invention.
The reference numerals include:
1-buffer clamp 10-clamping component 11-driving seat 101-sliding cavity 12-sliding groove 13-sliding seat
130-guide rail 131-left clamping arm 132-right clamping arm 133-capacitor clamp 134-mounting groove
135-roll shaft
14-chute 15-clamp body 16-sliding rod
17-swash block assembly 171-guide block 181-drive swash block
19-fixed seat 191-guide rod 192-driving bearing 193-limiting piece 194-adjusting block
199-capacitor
2-finger grip 20-support base 201-seat plate groove 202-opening 203-embedded inlet 204-inclined plane
21-gripper 211-left gripper arm 212-right gripper arm 213-force-bearing end
214-rolling bearing 215-rotating shaft 216-clamping block
22-cam mechanism 221-turntable 222-cam block
23-vibrating disk feeding mechanism 231-vibrating disk assembly 232-pushing block 299-high seat plate
3-guiding die holder 31-guiding die 32-convex die 33-guiding groove 34-guiding hole
4-lead split assembly 41-split seat 42-triangular groove
5-cam lifting mechanism.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1 to 9, the guide pin mechanism of the capacitor high seat plate comprises a buffer clamp 1 for clamping a capacitor 199 and a finger clamp 2 for clamping the high seat plate 299, and both the buffer clamp 1 and the finger clamp 2 can perform lifting movement in the vertical direction. This material loading guiding mechanism is still including setting up direction die holder 3 between buffering anchor clamps 1 and finger anchor clamps 2, the concrete structure of direction die holder 3: the guide die holder 3 comprises a pair of guide dies 31 which are symmetrical to each other and have an opening and closing function, the two guide dies 31 are controlled by a driving end of a finger cylinder, the two guide dies 31 are made to move in an opening and closing mode, a male die 32 with the same height as the high seat plate 299 is formed at the bottom of each guide die 31, two guide grooves 33 which penetrate through the inner side wall of each guide die 31 are vertically formed, the cross sections of the guide grooves 33 are semicircular, the guide grooves are coaxially aligned with pin holes of the high seat plate 299 below, after the two guide dies 31 are combined, the two opposite guide grooves 33 jointly form a complete guide hole 34, and the top of each guide hole 34 is a funnel-shaped hole which is beneficial to pin insertion.
In the process of assembling pins of the capacitor 199 and the jacks of the high seat plate 299, the buffer clamp 1 moves upwards to embed the high seat plate 299 and the bottom of the guide die holder 3, the male die 32 can be embedded into the high seat plate 299, the guide holes 34 of the guide die holder 3 are vertically aligned and communicated with the pin holes in the high seat plate 299, the finger clamp 2 holding the capacitor 199 moves downwards at the same time, the pins of the capacitor 199 can be stably and accurately inserted into the high seat plate 299 along the guide holes 34 of the guide die holder 3, and therefore a small section at the front end of the pins of the capacitor 199 penetrates through the guide die holder 3 to be matched with the high seat plate 299 to complete primary pin inserting; at this time, the guide die holder 3 blocks the capacitor 199 from going down continuously, so that after the guide die 31 is driven to open, a space for the capacitor 199 to go down continuously is avoided, the buffer clamp 1 holding the capacitor 199 continues to move down, pins continue to penetrate through the high seat plate 299, the capacitor 199 is completely embedded into the high seat plate 299, and the capacitor 199 and the high seat plate 299 are assembled. Even if the low seat plate is assembled, the guide holes 34 of the guide die holder 3 can be attached to pin holes in the low seat plate to complete pin inserting and assembling, pin inserting precision in the whole process is high, pins can be directly inserted into the pin holes in the high seat plate 299 or the low seat plate in an aligned mode after entering the guide holes 34, efficiency is high, and the guide die holder can be universally used for assembling the low seat plate and the high seat plate 299.
Lifting and clamping principles of the buffer clamp 1: the buffer clamp 1 comprises a clamping assembly 10, the clamping assembly 10 comprises a driving seat 11 formed with a U-shaped sliding cavity 101 with a downward opening, a pair of sliding seats 13 arranged in parallel are arranged in the sliding cavity 101 in a sliding mode, two guide rails 130 in sliding fit with the sliding cavity 101 are arranged on the outer side wall of each sliding seat 13, the guide rails 130 are fixedly arranged through mounting grooves 134 formed in the sliding seats 13, each guide rail 130 specifically comprises a plurality of rotatable roll shafts 135, and the outer walls of the roll shafts 135 are in sliding fit with the groove walls of the sliding grooves 12; inclined grooves 14 which are longitudinally arranged and have opposite directions are formed on opposite surfaces of the two sliding seats 13 respectively, an inclined block assembly 17 which is in sliding fit with the inclined grooves 14 is installed in the driving seat 11 in a lifting and sliding mode, the inclined block assembly 17 is in sliding fit with the inclined grooves 14 in the vertical direction to drive the two sliding seats 13 to horizontally slide in the sliding grooves 12, the inclined block assembly 17 converts vertical force into horizontal force, when the inclined block assembly 17 slides in the lifting and sliding mode on the driving seat 11, the two sliding seats 13 respectively horizontally slide along the corresponding sliding grooves 12 through guide rails 130, the two guide rails 130 of each sliding seat 13 are respectively in sliding fit with the two sliding grooves 12 of the sliding cavity 101, one of the sliding seats 13 is provided with a left clamping arm 131, the other sliding seat 13 is provided with a right clamping arm 132, and the left clamping arm 131 or the right clamping arm 132 is provided with a capacitor clamp 133 for positioning a capacitor 199; the sliding stability is improved, the phenomenon of shaking cannot occur during sliding and static, the clamped capacitor 199 can accurately and stably clamp the capacitor 199, pins can be aligned to the jacks of the capacitor seat, and the pin penetrating assembly work is completed.
The clamping assembly 10 further comprises a clamp body 15, a sliding rod 16 is vertically installed in the clamp body 15, the sliding rod 16 respectively penetrates through the clamp body 15 and the driving seat 11 to be connected with an inclined block assembly 17, the inclined block assembly 17 comprises a guide block 171 capable of sliding up and down between the two sliding seats 13 and two driving inclined blocks 181 matched with the forming direction of the two inclined grooves 14, the two driving inclined blocks 181 are respectively formed on two sides of the guide block 171 and are embedded on the corresponding inclined grooves 14, the top of the guide block 171 is in threaded connection with the bottom of the sliding rod 16, a fixing seat 19 for fixing the clamp body 15 through an adjusting block 194 is arranged on one side of the clamping assembly 10, a pair of guide rods 191 capable of sliding up and down are arranged in the fixing seat 19 in a penetrating mode, the guide rods 191 horizontally fix the clamp body 15 through the adjusting block 194, linear bearings for the guide rods 191 to penetrate through are arranged in the fixing seat 19, and a reset spring not shown in the figure is sleeved on the outer side of the guide rods 191, one end of a return spring abuts against the fixed seat 19, the other end of the return spring abuts against a seat body at the upper end of the guide rod 191 to apply upward return force to the guide rod 191, a driving bearing 192 is arranged at the top of the guide rod 191, a peripheral pressing mechanism presses down the driving bearing 192 and generates rolling fit to drive the guide rod 191 together with the adjusting block 194 and the clamping assembly 10 to descend together with the acting force of the return spring, the capacitor 199 clamped between the clamping arms descends to be assembled with the capacitor seat, a limiting part 193 is vertically arranged at the bottom of the adjusting block 194, the limiting part 193 can limit the pressing height of the guide rod 191, so that the descending height of the capacitor 199 is determined, and the capacitor 199 is prevented from being collided with the high seat plate 299 due to the fact that the pressing distance of the capacitor 199 is too large.
The clamping principle of the finger clamp 2 is as follows: the finger clamp 2 comprises a supporting seat 1 formed with a seat plate groove 201 and further comprises a cam mechanism 22, a clamping piece 21 with an elastic clamping function is arranged on the periphery of the supporting seat 20, the clamping piece 21 penetrates through the supporting seat 20 to clamp and position a high seat plate 299 in the seat plate groove 201, and the clamping piece 20 comprises a stress end 23 matched with the cam mechanism 22; when the cam mechanism 22 is not in contact with the stressed end 213 of the clamping piece 21, the clamping piece 21 is subjected to self elastic force, and always keeps a clamping state on the high seat plate 299 in the supporting seat 20, and when the cam mechanism 22 is in contact with the stressed end 213, the clamping piece 21 can be opened under the action of thrust, and at the moment, the high seat plate 299 can be taken out and replaced by a new high seat plate 299 for assembly; the high seat plate 299 on the seat plate groove 201 is clamped or opened in a reciprocating mode, the elastic force of the elastic clamping clamps the high seat plate 299 in the supporting seat 20 slightly, the high seat plate 299 can be clamped, the positioning can be carried out, the phenomenon of damage caused by pressing cannot occur, and pins of capacitors can penetrate to complete assembly.
The working principle of the cam mechanism 22 and the clamping piece 21 is as follows: the cam mechanism 22 comprises a rotary table 221 and a cam block 222 rotatably arranged on the rotary table 221, the cam block 222 is controlled by a motor to rotate, a plurality of clamping pieces 21 are arranged on the rotary table 221 in an equidistant array around the cam block 222, the number of the supporting seats 20 is the same as that of the clamping pieces 21, at least five supporting seats 20 are arranged at equal intervals along the side wall of the rotary table 221, the seat plate groove 201 is located below the clamping piece 21, the clamping piece 21 comprises a left clamping arm 211 and a right clamping arm 212, a stress end 213 is a driving block extending from the left clamping arm 211 to the cam block 222, a rolling bearing 214 in rolling fit with the cam block 222 is mounted on the driving block, the clamping piece 21 further comprises a rotating shaft 215 connected with the left clamping arm 211 and the right clamping arm 212, and when the cam block 222 rotates, the cam block is in rolling fit with the rolling bearing 214, and the left clamping arm 211 and the right clamping arm 212 make opening and closing movements around the rotating shaft 215.
A penetrating embedding opening 203 is further formed in the left side wall and the right side wall of the seat plate groove 201, the left clamping arm 211 and the right clamping arm 212 respectively extend towards the periphery of the supporting seat 20, clamping blocks 216 matched with the embedding opening 203 are formed at the end portions of the left clamping arm 211 and the right clamping arm 212 respectively, the clamping blocks 216 horizontally move in the embedding opening 203, when the clamping elements 21 are matched by rolling of the cam block 222, the clamping elements 21 are integrally opened, and the clamping blocks 216 slide to the outer side of the embedding opening 203; the supporting seat 20 is formed with an opening 202 for embedding the high seat plate 299 into the seat plate groove 201, the front end of the opening 202 is formed with a slope 204 beneficial to element embedding, the high seat plate 299 can enter the seat plate groove 201 along the slope 204 of the opening 202 more easily through a push block mechanism, a vibrating plate feeding mechanism 23 is arranged on one side of the supporting seat 20, the high seat plate 299 slides to the end part through vibration of a vibrating plate component 231 along a flow channel, the high seat plate 299 overcomes the spring acting force of the clamping member 21 through the pushing force of a pushing block 232 at the same time, and can be embedded into the seat plate groove 201, and after embedding, the clamping member 21 and the seat plate groove 201 simultaneously carry out slight elastic clamping and positioning on the high seat plate 299.
In order to allow the elastic force of the clamping member 21 to clamp the high seat plate 299, the turntable 221 is provided with an elastic member elastically connected to the clamping member 21, the elastic member is a tension spring, which is not shown in the drawing, and is also called a tension spring, which is simply called a tension spring, and is a coil spring bearing axial tension, the tension spring is generally made of a circular section material, and when the tension spring is not bearing load, the coils of the tension spring are generally tight and have no gap. Many different end devices or "hooks" are used to ensure the source of tension in the tension spring, one end of which is fixed to the turntable 221 by a hook and the other end of which is connected to the left or right holding arm 211, 212 by a hook; when the cam block 222 is not in contact with the force-bearing end 213 of the clamping member 21, the left clamping arm 211 and the right clamping arm 212 keep the clamping member 21 in a clamping state through elastic force, so that the supporting seat 20 keeps the clamping state, and when the clamping member 21 is subjected to the force of the cam mechanism 22, the driving block of the left clamping arm 211 slides outwards to open the left clamping arm 211 and the right clamping arm 212 around the rotating shaft 215 by matching with the motion principle of the cam mechanism 22, and the opening and closing motion is completed by the cyclic reciprocating motion.
In order that the finger clamp 2 can be lifted to be matched with the guide die holder 3, the cam lifting mechanism 5 is arranged at the bottom of the rotary table 221, the up-and-down swinging end of the cam lifting mechanism 5 is connected to the bottom of the rotary table 221, the cam lifting mechanism 5 moves to drive the rotary table 221 to do reciprocating lifting motion on the vertical direction, so that the high seat plate 299 in the support seat 20 can be matched with the guide die holder 3, meanwhile, the fixing seat 19 of the buffer clamp 1 also does lifting motion simultaneously to be matched with the finger clamp 2 and the guide die holder 3 simultaneously, the insertion of pins is facilitated, and the pin penetrating assembly work is completed.
The lower part of the finger clamp 2 is provided with a lead wire split component 4, the lead wire split component 4 comprises a split seat 41, two triangular grooves 42 symmetrically arranged are formed at two ends of the split seat 41, the triangular grooves 42 serve as second chutes, the cross sections of the triangular grooves 42 are triangular, a through pin hole is formed in the bottom of a seat plate groove 201 of the support seat 20, a pin of the capacitor 199 penetrates through the high seat plate 299, the pin of the capacitor 199 can penetrate through the pin hole of the support seat 20 to contact the triangular groove 42 below, and when the pin continues to move downwards, the pin can be outwards split along the triangular groove 42, so that two pins of the capacitor 199 are splayed at the bottom of the high seat plate 299, and subsequent shaping process processing is facilitated.
The specific work flow of the feeding guide mechanism is as follows: the guide holes 34 of the guide die holder 3 are respectively coaxially aligned with pins of the capacitor 199, pin holes of the high seat plate 299 and inclined grooves 14 of the split seat 41 in the vertical direction, the finger clamp 2 for clamping the high seat plate 299 moves upwards through the cam lifting mechanism 5, the pin holes of the high seat plate 299 can be aligned and attached to the bottom of the guide holes 34 of the guide die holder 3, the buffer clamp 1 for clamping the capacitor 199 moves downwards at the same time, the pin aligned guide holes 34 are inserted into the pin holes of the high seat plate 299, after the guide die holder 3 is opened, the cam lifting mechanism 5 enables the rotary table 221 to descend, the finger clamp 2 descends, the buffer clamp 1 continues to press downwards, the rest parts of the pins of the capacitor 199 are continuously inserted, the inserted pins can touch the split seat 41 below, and until the whole capacitor 199 is completely embedded into the high seat plate 299, the triangular grooves 42 of the split seat 41 push the two pins into a shape of a Chinese character ba, at this time, the capacitor 199 can be clamped on the high seat plate 299 through a forked pin, the clamping piece 21 is matched with the cam mechanism 22 to enable the left clamping arm and the right clamping arm to be opened, the buffer clamp 1 clamps the assembled capacitor 299 from the finger clamp 2, the assembled capacitor seat plate is transferred to the next procedure, the finger clamp 2 and the buffer clamp 1 are controlled by a circumferential disc to rotate, a new round of processing is continued, the guide die holder 3 moves to the original position, and the next group of the capacitor 199 and the high seat plate 299 are to be assembled.
In conclusion, the present invention has the above-mentioned excellent characteristics, so that it can be used to enhance the effectiveness of the prior art and has practicability, and thus it is a product with practical value.
The above description is only for the preferred embodiment of the present invention, and for those skilled in the art, there are variations on the detailed description and the application scope according to the idea of the present invention, and the content of the description should not be construed as a limitation to the present invention.

Claims (10)

1. Guide pin mechanism of high bedplate of condenser, including the finger anchor clamps that are used for the buffering anchor clamps of centre gripping condenser and are used for the high bedplate of centre gripping, its characterized in that: the high seat plate inserting device is characterized by further comprising a guide die holder, a guide hole is formed in the guide die holder, the buffer clamp can move upwards to enable the high seat plate to be embedded into the bottom end of the guide die holder, the finger clamp which clamps the capacitor can move downwards to enable pins of the capacitor to be inserted into the insertion holes of the high seat plate through the guide hole of the guide die holder, and the finger clamp continues to move downwards after the guide die holder abdicating to enable the capacitor to be completely embedded into the high seat plate to complete inserting of pins.
2. The guide pin mechanism of the capacitor high seat plate as claimed in claim 1, wherein: the guide die holder comprises a pair of guide dies which are symmetrical to each other and have an opening and closing function, and the guide dies are opened to realize abdication.
3. The guide pin mechanism of the capacitor high seat plate as claimed in claim 2, wherein: the bottom of the guide die is provided with a male die matched with the high seat plate, the inner side wall of the guide die is vertically provided with two through guide grooves, and after the two guide dies are combined, the two opposite guide grooves form a complete guide hole.
4. The guide pin mechanism of the capacitor high seat plate as claimed in claim 1, wherein: the buffer clamp comprises a clamping assembly, the clamping assembly comprises a driving seat formed with a sliding cavity, a pair of sliding seats are slidably mounted in the sliding cavity, more than two guide rails in sliding fit with the sliding cavity are mounted on each sliding seat, opposite faces of the two sliding seats are respectively formed with chutes in opposite directions, the driving seat is internally provided with an oblique block assembly in sliding fit with the chutes in a lifting mode, and the oblique block assembly is in sliding fit with the chutes in a vertical direction to drive the two sliding seats to do horizontal sliding motion on the chutes.
5. The guide pin mechanism of the capacitor high seat plate as claimed in claim 4, wherein: the clamping assembly further comprises an fixture body, a sliding rod with an elastic function is vertically arranged in the fixture body, the sliding rod penetrates through the fixture body and a driving seat to be connected with an oblique block assembly, the oblique block assembly comprises a guide block which can slide up and down between two sliding seats and two driving oblique blocks which are matched with the forming directions of two chutes, the two driving oblique blocks are formed on two sides of the guide block and are embedded on the corresponding chutes respectively, and the top of the guide block is connected with the bottom of the sliding rod through threads.
6. The guide pin mechanism of the capacitor high seat plate as claimed in claim 1, wherein: the finger clamp comprises a supporting seat formed with a seat plate groove, a clamping piece is arranged on the periphery of the supporting seat, the clamping piece penetrates through the supporting seat to elastically clamp and position elements in the seat plate groove, and the finger clamp further comprises a releasing mechanism for driving the clamping piece to open.
7. The guide pin mechanism of the capacitor high seat plate as claimed in claim 6, wherein: the releasing mechanism is a cam mechanism, the cam mechanism comprises a rotary table and a cam block which is rotatably arranged on the rotary table, the clamping pieces are annularly distributed on the rotary table around the cam block, and the cam block can be periodically matched with each clamping piece and drives the clamping pieces to be opened when rotating.
8. The guide pin mechanism of the capacitor high seat plate as claimed in claim 7, wherein: the turntable is provided with an elastic piece which is elastically connected with the clamping piece, the elastic piece keeps the clamping piece in a clamping state through elasticity, one end of the elastic piece is fixed on the turntable through the mounting piece, and the clamping piece at the other end of the elastic piece is connected.
9. The guide pin mechanism of the capacitor high seat plate as claimed in claim 6, wherein: and a vibration disc feeding mechanism for feeding the high seat plate to the seat plate groove is arranged on one side of the supporting seat.
10. The guide pin mechanism of the capacitor high seat plate as claimed in claim 9, wherein: vibration dish feed mechanism includes the vibration dish subassembly, vibration dish subassembly one end is provided with the promotion piece that pushes away high bedplate into the bedplate inslot.
CN202121362546.3U 2021-06-18 2021-06-18 Guide pin mechanism of high seat plate of capacitor Active CN215069677U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121362546.3U CN215069677U (en) 2021-06-18 2021-06-18 Guide pin mechanism of high seat plate of capacitor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121362546.3U CN215069677U (en) 2021-06-18 2021-06-18 Guide pin mechanism of high seat plate of capacitor

Publications (1)

Publication Number Publication Date
CN215069677U true CN215069677U (en) 2021-12-07

Family

ID=79204121

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121362546.3U Active CN215069677U (en) 2021-06-18 2021-06-18 Guide pin mechanism of high seat plate of capacitor

Country Status (1)

Country Link
CN (1) CN215069677U (en)

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