A special assembly production equipment for POGOPIN connector
By designing special assembly production equipment for POGOPIN connectors, the coordination of limiting components and anti-collision devices is used to solve the problem of inaccurate alignment caused by machine lag and vibration during assembly, efficient and accurate assembly is achieved, and material loss rate is reduced.
Patent Information
- Application Number
- CN202510259067.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-03-06
AI Technical Summary
During the assembly process of connectors, due to machine lag and vibration, the alignment between the pin and the injection molding box seat is inaccurate, causing the pin or injection molding box seat to deform, increasing the material loss rate.
A special assembly and production equipment for POGOPIN connectors is designed, including a workbench, a mating mechanism, an assembly mechanism, a vibration feeding tray and a material transfer mechanism. Through the coordination of the limiting assembly and the anti-collision device, the injection molding box seat and pin are protected to avoid deformation due to impact. Through the coordination of the crank feed assembly and the feeding part, step-by-step feeding is achieved and the probability of assembly leakage is reduced.
It effectively avoids interference with the anti-collision seat on assembly operation, ensures the correct assembly of the pin and injection molded box seat, reduces the material loss rate, and improves the accuracy and efficiency of assembly.
Smart Images

Figure CN119764974B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field related to connector production equipment, and in particular to a special assembly production equipment for POGOPIN connectors. Background Art
[0002] In the final stage of connector manufacturing, dedicated assembly equipment is required to assemble the plated pins with the injection molded housing. There are two assembly methods: single plug-in and combined plug-in. Single plug-in means plugging one pin at a time, while combined plug-in means plugging multiple pins with the housing at the same time. No matter which plug-in method is used for assembly, it is necessary to ensure that all pins are not missing and are positioned correctly.
[0003] However, in the actual assembly process, misalignment may occur due to machine jamming, vibration, etc., which will not only cause the pins to fail to be correctly inserted into the connector holes of the injection molding box seat, but will also cause the pins to collide with the injection molding box seat or the equipment, causing the pins or the injection molding box seat to deform and increase the material loss rate. Summary of the invention
[0004] In order to solve the defects in the prior art, the present invention provides a special assembly production equipment for POGOPIN connectors.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions:
[0006] The present invention discloses a special assembly production equipment for POGOPIN connectors, comprising a workbench for supporting POGOPIN connector assembly components, a side panel, a track 1 and a track 2 for supporting an injection molding box seat, a support cover plate on the top of the side panel, and a movable opening on the support cover plate;
[0007] A matching mechanism disposed on the top of the workbench, the matching mechanism comprising a movable plate disposed above the supporting cover plate, a motor installed on one side of the side panel, a feeding piece, a crank feeding assembly for driving the feeding piece, an anti-collision device disposed in the movable opening, and a transmission assembly 1 for driving the anti-collision device, wherein the transmission assembly 1 is driven by the crank feeding assembly;
[0008] An assembly mechanism for assembling the pin on the injection molding box seat is arranged on one side of the matching mechanism, the assembly mechanism is composed of a driving component and an assembly head driven by the driving component, and a limit assembly for use with the bumper is arranged on one side of the assembly head;
[0009] A vibration feeding tray 1 for conveying the injection molding box seat and a vibration feeding tray 2 for conveying the pins;
[0010] A conveyor engaged with a discharge port of a vibrating feed tray;
[0011] A material transfer mechanism is arranged at one end of the conveyor, and the material transfer mechanism is composed of a retaining frame for blocking the injection molding box seat, a movable track arranged between track one and track two, and a transmission component two for driving the movable track and the retaining frame.
[0012] As a preferred technical solution of the present invention, the crank feeding assembly includes a transmission shaft, a crank and a transmission rack reset by means of a slide rail assembly, one end of the crank is movably connected to the connecting arm of the feeding piece through a rotating shaft, one side of the fan-shaped portion is provided with an arc-shaped rack meshing with the transmission rack, one end of the transmission shaft is provided with a transmission gear meshing with the transmission rack, and the matching mechanism also includes a support vertical plate installed on the rear side of the track, the rear side of the support vertical plate is provided with a belt transmission assembly directly connected to the motor output shaft and used to drive the crank, and the transmission shaft is rotatably arranged on the support vertical plate.
[0013] As a preferred technical solution of the present invention, the transmission component 1 includes an eccentric wheel arranged at the other end of the transmission shaft and a transmission plate arranged at the top of the eccentric wheel, and the top of the transmission plate is symmetrically provided with a sliding rod connected to the movable plate at the top, and the outer sleeve of the sliding rod is provided with a connecting spring 1, and the two ends of the connecting spring 1 are respectively connected to the movable plate and the support cover plate.
[0014] As a preferred technical solution of the present invention, the anti-collision device includes a stepped anti-collision seat arranged on one side of the movable plate, an anti-collision baffle for shielding the injection molding box seat, and a power assembly for driving the anti-collision baffle. The anti-collision seat is provided with a receiving groove capable of accommodating the anti-collision baffle, and an installation cavity connected to the receiving groove is also provided inside the anti-collision seat, and a plug hole is connected to one side of the installation cavity;
[0015] The power assembly includes a power rod rotatably arranged in the installation cavity, a power plate slidably arranged in the installation cavity, and a power tooth plate cooperating with the power plate. A gear ring meshing with the power tooth plate is fixedly connected to the outer shell of the power rod, one end of which is connected to the anti-collision baffle, and a guide block slidably engaged with the socket is provided at the bottom of one end of the power plate, a trapezoidal mating opening is opened on the power plate, and a mating inclined surface that interferes with the trapezoidal mating opening is provided on the power tooth plate.
[0016] As a preferred technical solution of the present invention, the limit assembly includes an L-shaped connector installed on one side of the assembly head, and a limit plug-in is installed on the top of the L-shaped connector, which can be inserted into the hole and abut against the guide block, and a push plate is provided on the top of the limit plug-in for pushing the anti-collision seat.
[0017] As a preferred technical solution of the present invention, the power assembly also includes four guide rods 1 fixed in the installation cavity and a guide rod 2 arranged at one end of the power tooth plate. The four guide rods 1 are distributed in a rectangular shape, and the guide rods 2 and two of the guide rods 1 are each provided with a connecting spring 2.
[0018] As a preferred technical solution of the present invention, the second transmission assembly includes a driving cylinder, a U-shaped bracket for supporting the movable track, a transmission bracket installed on one side of the U-shaped bracket, and a mounting substrate installed on the top of the workbench. A connecting bracket is installed at the piston end of the driving cylinder. The top of the connecting bracket is connected to the blocking bracket through a connecting plate. A transmission inclined rod is installed at the lower part of the connecting bracket, and an inclined slideway that slidably cooperates with the transmission inclined rod is provided on one side of the transmission bracket.
[0019] As a preferred technical solution of the present invention, damping slide rails are symmetrically provided on the top of the mounting substrate. The moving body of the damping slide rail is fixedly connected to the U-shaped bracket, and the top of the mounting substrate is connected to the U-shaped bracket through a buffer spring.
[0020] As a preferred technical solution of the present invention, the feeding mechanism further includes a support bracket installed at the rear side of the workbench for supporting the driving cylinder, and the support bracket is connected to the side wall plate through bolts.
[0021] As a preferred technical solution of the present invention, a plurality of feeding teeth arranged side by side are provided on the top of the feeding member. The feeding teeth are used to push the injection molding box seat, and the feeding teeth can also clamp and fix the injection molding box seat by cooperating with the anti-collision seat.
[0022] The beneficial effects of the present invention are:
[0023] 1. For this special assembly production equipment for POGOPIN connectors, during the assembly process, the assembly head will first move with the limiting component. After the limiting plug is inserted into the jack, the moving limiting plug will drive the power component, and drive the anti-collision baffle to rotate into the receiving groove through the power rod. The anti-collision baffle no longer blocks the injection molding box seat. At this time, the push plate contacts the anti-collision seat, and the assembly head continues to move. While inserting the pin into the insertion hole of the injection molding box seat, the push plate pushes the anti-collision seat to move within the movable opening, which can avoid the interference of the anti-collision seat on the assembly operation, so as to smoothly complete the assembly work of the connector. During the entire assembly work, through the cooperation of the limiting component and the anti-collision device, the injection molding box seat and the pin are protected to avoid deformation of the injection molding box seat and the pin due to impact, thereby reducing the material loss rate.
[0024] 2. For this special assembly production equipment for POGOPIN connectors, by using the meshing transmission of the arc-shaped rack on the crank and the transmission rack, the transmission rack moves. Through the meshing transmission of the transmission rack and the transmission gear, the transmission shaft drives the eccentric wheel. The transmission plate will move downward under the elastic force of the first connecting spring. The transmission plate drives the movable plate through the slide rod, and then drives the anti-collision device to move downward to the top of the first track, and clamps the injection molding box seat through the anti-collision seat and the feeding teeth.
[0025] 3. For this special assembly production equipment of the POGOPIN connector, when the assembly head retracts, the motor continues to drive the crank through the belt drive assembly. The arc-shaped rack no longer meshes with the transmission rack, and the slide rail assembly resets the transmission rack. The anti-collision device is driven upward through the first transmission assembly, and no longer clamps the injection molding box seat. The rotating crank drives the feeding part, and the injection molding box seat is pushed through the feeding teeth for step feeding.
[0026] 4. For this special assembly production equipment of the POGOPIN connector, after the assembly head retracts, the anti-collision seat resets under the action of the elastic force of the third connecting spring. After the limit plug is disengaged from the jack, the power plate is driven by the second connecting spring, and the anti-collision baffle rotates out of the accommodation groove to prepare for the next assembly.
[0027] 5. For this special assembly production equipment of the POGOPIN connector, the driving cylinder drives the connecting bracket, so that the blocking frame no longer blocks the injection molding box seat on the conveyor. The injection molding box seat is sent to the movable track. The connecting bracket drives the transmission inclined rod, and through the sliding fit between the transmission inclined rod and the inclined slideway, the transmission bracket drives the movable track through the C-shaped bracket, so that the movable track is joined with the first track and the second track. Then, through the cooperation of the crank feeding assembly and the feeding part, the injection molding box seat on the movable track can be pushed to the first track to achieve feeding one by one, reducing the probability of missing parts in the assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. In the drawings:
[0029] Figure 1 is the first perspective structural schematic diagram of a special assembly production equipment of a POGOPIN connector according to the present invention;
[0030] Figure 2 is the second perspective structural schematic diagram of a special assembly production equipment of a POGOPIN connector according to the present invention;
[0031] Figure 3 is the distribution schematic diagram of the first track, the second track, the material transfer mechanism and the cooperation mechanism of a special assembly production equipment of a POGOPIN connector according to the present invention;
[0032] Figure 4 is the front structural schematic diagram of the cooperation mechanism of a special assembly production equipment of a POGOPIN connector according to the present invention;
[0033] Figure 5 is the back structural schematic diagram of the cooperation mechanism of a special assembly production equipment of a POGOPIN connector according to the present invention;
[0034] Figure 6It is a schematic structural diagram of a collision preventer of a special assembly production device for a POGOPIN connector of the present invention;
[0035] Figure 7 It is a partially sectional view of a collision prevention seat of a special assembly production device for a POGOPIN connector of the present invention;
[0036] Figure 8 It is a schematic structural diagram of a power component of a special assembly production device for a POGOPIN connector of the present invention;
[0037] Fig. 9 It is a schematic structural diagram of a power component (omitting the power rod and the gear ring) of a special assembly production device for a POGOPIN connector of the present invention;
[0038] Fig.10 It is a schematic structural diagram of a first perspective of a material transfer mechanism of a special assembly production device for a POGOPIN connector of the present invention;
[0039] Fig.11 It is a schematic structural diagram of a second perspective of a material transfer mechanism of a special assembly production device for a POGOPIN connector of the present invention.
[0040] In the figure: 001, injection molding box seat; 1, workbench; 11, support cover plate; 2, second vibration feeding tray; 3, first vibration feeding tray; 4, conveyor; 5, material transfer mechanism; 51, driving cylinder; 52, retaining frame; 53, movable track; 54, C-shaped support; 55, mounting substrate; 551, damping slide rail; 552, buffer spring; 56, transmission inclined rod; 57, transmission support; 58, connecting support; 59, support bracket; 6, matching mechanism; 61, movable plate; 62, support vertical plate; 63, crank feeding assembly; 631, transmission gear; 632, transmission rack; 633, crank; 6331, arc rack; 634, belt transmission assembly; 64, feeding part; 65, motor; 66, guiding rod; 67, first transmission assembly; 671, eccentric wheel; 672, transmission plate; 673, first connecting spring; 674, slide rod; 68, collision preventer; 681, collision prevention seat; 6811, receiving groove; 6812, jack; 682, collision prevention baffle; 683, power rod; 6831, gear ring; 684, first guiding rod; 685, power plate; 6851, guiding block; 686, second connecting spring; 687, second guiding rod; 688, power tooth plate; 6881, mating inclined surface; 7, first track; 8, limiting assembly; 81, L-shaped connecting piece; 82, limiting plug-in piece; 83, push plate; 9, second track; 10, assembly mechanism. Detailed implementation manners
[0041] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0042] Example: Figure 1-3 As shown, a POGOPIN connector assembly production device of the present invention includes a workbench 1 for supporting POGOPIN connector assembly components, a side panel, a track 7 and a track 9 for carrying an injection molding box seat 001 are arranged on the top of the workbench, a support cover 11 is arranged on the top of the side panel, and a movable opening is opened on the support cover 11; a sliding through hole for allowing a slide bar 674 to pass through is opened on the support cover 11, which is convenient for the slide bar 674 to move; an avoidance opening for avoiding a connecting bracket 58 is opened on the side panel, which is convenient for the operation of a material conveying mechanism 5;
[0043] A matching mechanism 6 is arranged on the top of the workbench 1, and the matching mechanism 6 includes a movable plate 61 arranged above the support cover plate 11, a motor 65 installed on one side of the side panel, a feeding member 64, a crank feeding assembly 63 for driving the feeding member 64, an anti-collision device 68 arranged in the movable opening, and a transmission assembly 67 for driving the anti-collision device 68, and the transmission assembly 67 is driven by the crank feeding assembly 63;
[0044] An assembly mechanism 10 is provided on one side of the matching mechanism 6 for assembling the pin on the injection molding box seat 001. The assembly mechanism 10 is composed of a driving component and an assembly head driven by the driving component. One side of the assembly head is provided with a limit assembly 8 used in conjunction with the bumper 68;
[0045] A vibration feeding tray 1 3 for conveying the injection molding box seat 001 and a vibration feeding tray 2 2 for conveying the pins;
[0046] A conveyor 4 connected to a discharge port of a vibrating feed tray 3;
[0047] A material transfer mechanism 5 is provided at one end of the conveyor 4, and the material transfer mechanism 5 is composed of a baffle 52 for blocking the injection molding box seat 001, a movable track 53 provided between track 1 7 and track 2 9, and a transmission component 2 for driving the movable track 53 and the baffle 52.
[0048] Specifically, a plurality of feeding teeth arranged in a side-by-side manner are provided on the top of the feeding member 64 , and the feeding teeth are used to push the injection molding box seat 001 . The feeding teeth can also clamp and fix the injection molding box seat 001 by cooperating with the anti-collision seat 681 .
[0049] Among them, Figure 3 , Figure 4 and Figure 5As shown, the crank feeding assembly 63 includes a transmission shaft, a crank 633 and a transmission rack 632 which is reset by means of a slide rail assembly, one end of the crank 633 is movably connected to the connecting arm of the feeding member 64 through a rotating shaft, and one side of the fan-shaped portion thereof is provided with an arc-shaped rack 6331 which meshes with the transmission rack 632, one end of the transmission shaft is provided with a transmission gear 631 which meshes with the transmission rack 632, and the matching mechanism 6 also includes a support vertical plate 62 installed on the rear side of the track 7, the rear side of the support vertical plate 62 is provided with a belt transmission assembly 634 which is directly connected to the output shaft of the motor 65 and is used to drive the crank 633, and the transmission shaft is rotatably arranged on the support vertical plate 62.
[0050] After the motor 65 is started, it will drive the crank 633 through the belt transmission component 634, and the rotating crank 633 will drive the feeding member 64, which will push the injection box seat 001 through the feeding teeth to perform step feeding.
[0051] Specifically, the belt drive assembly 634 includes a driving wheel, two tensioning wheels and two driven wheels. A driving shaft rotatably connected to the support vertical plate 62 is provided in the center hole of the driving wheel, one end of the driving shaft is connected to the output shaft of the motor 65, a rotating shaft rotatably connected to the support vertical plate 62 is provided in the center hole of the tensioning wheel, a driven shaft rotatably connected to the support vertical plate 62 is provided in the center hole of the driven wheel, and the crank 633 is sleeved and fixed on the driven shaft. The driving wheel, the tensioning wheel and the driven wheel are connected by a transmission belt. After the motor 65 is started, the driving wheel rotates, and the driven wheel is driven by the transmission connection of the transmission belt, and finally the driven shaft drives the crank 633 to rotate.
[0052] Specifically, the power structure of the slide rail assembly that enables the transmission rack 632 to move can be a spring structure, an electromagnetic structure, etc., and its specific structure is not limited here, so it is not marked in the drawings of the specification.
[0053] Specifically, the transmission assembly 67 includes an eccentric wheel 671 arranged at the other end of the transmission shaft and a transmission plate 672 arranged at the top of the eccentric wheel 671, and the top of the transmission plate 672 is symmetrically provided with a slide rod 674 connected to the movable plate 61, and the outer sleeve of the slide rod 674 is provided with a connecting spring 673, and the two ends of the connecting spring 673 are respectively connected to the movable plate 61 and the support cover plate 11, and the connecting spring 673 plays a resetting role.
[0054] When the rotating crank 633 drives the feeding piece 64, the feeding teeth will contact with the injection box seat 001, and the transmission rack 632 will be moved by the meshing transmission of the arc-shaped rack 6331 on the crank 633 and the transmission rack 632. The transmission rack 632 will be meshed with the transmission gear 631 to drive the transmission shaft to drive the eccentric wheel 671. The transmission plate 672 will move downward under the elastic force of the connecting spring 673, and the transmission plate 672 will drive the movable plate 61 through the slide bar 674, and then move down to the top of the track 7 with the anti-collision device 68, and clamp the injection box seat 001 through the anti-collision seat 681 and the feeding teeth.
[0055] Among them, Figure 2 and Figure 6-9 As shown, the anti-collision device 68 includes a stepped anti-collision seat 681 provided on one side of the movable plate 61, an anti-collision baffle 682 for shielding the injection molding box seat 001, and a power assembly for driving the anti-collision baffle 682. The anti-collision seat 681 is provided with a receiving groove 6811 capable of accommodating the anti-collision baffle 682, and a mounting cavity connected to the receiving groove 6811 is also provided therein, and a plug hole 6812 is provided on one side of the mounting cavity;
[0056] Specifically, the power assembly includes a power rod 683 rotatably arranged in the installation cavity, a power plate 685 slidably arranged in the installation cavity, and a power tooth plate 688 cooperating with the power plate 685. The power rod 683 is connected to the outer shell with a gear ring 6831 meshing with the power tooth plate 688, one end of which is connected to the anti-collision baffle 682, and the bottom of one end of the power plate 685 is provided with a guide block 6851 that slidably cooperates with the socket 6812. A trapezoidal matching opening is opened on the power plate 685, and a matching inclined surface 6881 that interferes with the trapezoidal matching opening is provided on the power tooth plate 688.
[0057] Specifically, the limiting component 8 includes an L-shaped connector 81 installed on one side of the assembly head, and a limiting plug-in 82 that can be inserted into the socket 6812 and abut against the guide block 6851 is installed on the top of the L-shaped connector 81. A push plate 83 for pushing the anti-collision seat 681 is provided on the top of the limiting plug-in 82.
[0058] After the injection molding box seat 001 is fixed, the assembly mechanism 10 is operated, and the driving component controls the assembly head to insert the pin into the plug hole of the injection molding box seat 001 to complete the assembly of the connector. During the assembly process, the assembly head will first move with the limit component 8. If the positioning is accurate, the limit plug-in 82 will be inserted into the plug hole 6812. As the assembly head moves, the limit plug-in 82 first contacts the guide block 6851, and then pushes the power plate 685 through the guide block 6851. By using the matching bevel 6881 and the trapezoidal matching mouth, the moving power plate 685 will drive the power tooth plate 688 to mesh with the gear ring 6831 for transmission, so that the power rod 683 drives the anti-collision baffle 682 to rotate into the accommodating groove 6811, and the anti-collision baffle 682 no longer blocks the injection molding box seat 001. At this time, the push plate 83 contacts the anti-collision seat 681, and the assembly head continues to move. While inserting the pin into the plug-in hole of the injection molding box seat 001, the push plate 83 pushes the anti-collision seat 681 to move it in the movable mouth, which can avoid the anti-collision seat 681 from interfering with the assembly operation so that the assembly of the connector can be completed smoothly. If the positioning is inaccurate, due to the protection of the limit plug-in 82 and the anti-collision baffle 682, the injection molding box seat 001 and the pin will not be deformed due to impact, thereby reducing the material loss rate.
[0059] Specifically, the power assembly also includes four guide rods 1 684 fixed in the installation cavity and a guide rod 2 687 arranged at one end of the power tooth plate 688. The four guide rods 1 684 are distributed in a rectangular shape. The guide rod 2 687 and two of the guide rods 1 684 are each provided with a connecting spring 2 686 on the outside. The connecting spring 2 686 plays a resetting role to reset the power tooth plate 688 and the power plate 685.
[0060] Specifically, the power plate 685 and the power tooth plate 688 are respectively provided with guide holes that can accommodate the guide rod 1 684 and the guide rod 2 687 to pass through. The guide rod 1 684 and the guide rod 2 687 slide in cooperation with the guide holes to play a guiding role, which can effectively prevent the movement direction of the power plate 685 and the power tooth plate 688 from being offset, thereby making the operation of the power assembly more stable.
[0061] Specifically, a guide rod 66 is provided on one side of the movable plate 61, and a connecting spring three is provided on the outer sleeve of the guide rod 66. One end of the guide rod 66 is a T-shaped head. The connecting spring three is located between the T-shaped head and the anti-collision seat 681. A mounting through hole for slidingly cooperating with the guide rod 66 is provided on the upper part of the anti-collision seat 681. The connecting spring three is used to reset the anti-collision seat 681. When the assembly is completed and the assembly head retracts, the anti-collision seat 681 is reset under the action of the elastic force of the connecting spring three. After the limiting plug-in 82 is disengaged from the socket 6812, the anti-collision baffle 682 is screwed out of the accommodating groove 6811.
[0062] Among them, Figure 2 , Fig.10 and Fig.11As shown in the figure, the second transmission assembly includes a driving cylinder 51, a U-shaped bracket 54 for supporting the movable track 53, a transmission bracket 57 installed on one side of the U-shaped bracket 54, and a mounting substrate 55 installed on the top of the workbench 1. The piston end of the driving cylinder 51 is installed with a connecting bracket 58. The top of the connecting bracket 58 is connected to the blocking frame 52 through a connecting plate. The lower part of the connecting bracket 58 is installed with a transmission inclined rod 56, and an inclined slideway for slidingly cooperating with the transmission inclined rod 56 is provided on one side of the transmission bracket 57.
[0063] By driving the connecting bracket 58 through the driving cylinder 51, the blocking frame 52 no longer blocks the injection molding box seat 001 on the conveyor 4. The injection molding box seat 001 is sent onto the movable track 53. By driving the transmission inclined rod 56 with the connecting bracket 58, through the sliding cooperation between the transmission inclined rod 56 and the inclined slideway, the transmission bracket 57 drives the movable track 53 through the U-shaped bracket 54, so that the movable track 53 is engaged with the first track 7 and the second track 9. After that, the injection molding box seat 001 on the movable track 53 can be pushed onto the first track 7 by the cooperation of the crank feeding assembly 63 and the feeding member 64.
[0064] Specifically, damping slide rails 551 are symmetrically provided on the top of the mounting substrate 55. The moving body of the damping slide rail 551 is fixedly connected to the U-shaped bracket 54. The top of the mounting substrate 55 is connected to the U-shaped bracket 54 through a buffer spring 552. The provided buffer spring 552 plays a buffering role. Cooperating with the damping slide rail 551 can improve the stability of the U-shaped bracket 54 during movement.
[0065] Specifically, the material conveying mechanism 5 further includes a support bracket 59 installed at the rear side of the workbench 1 for supporting the driving cylinder 51. The support bracket 59 is connected to the side panel through bolts to support the driving cylinder 51.
[0066] During operation, the injection molding box seat 001 and the pin are transported respectively by the vibration feeding plate 1 3 and the vibration feeding plate 2 2. After the injection molding box seat 001 comes out from the discharge port of the vibration feeding plate 1 3, it continues to be transported forward through the conveyor 4, and the injection molding box seat 001 at the end is blocked by the blocking frame 52. When loading is required, the blocking frame 52 is used to prevent the injection molding box seat 001 on the conveyor 4 from being blocked by the transmission component 2, so that the injection molding box seat 001 can be sent to the movable track 53, and the movable track 53 is engaged with the track 1 7 and the track 2 9. The started motor 65 drives the crank 633 through the belt transmission component 634, and the rotating crank 633 drives the feeding member 64, so that the feeding teeth contact the injection molding box seat 001, and the transmission component 1 67 drives the anti-collision device 68, and the injection molding box seat 001 is clamped through the anti-collision seat 681 and the feeding teeth. After that, the assembly mechanism 10 runs, and the driving component controls the assembly head to insert the pin into the plug hole of the injection box seat 001 to complete the assembly of the connector. During the assembly process, the injection box seat 001 and the pin are protected by the cooperation of the limit component 8 and the bumper 68 to prevent the injection box seat 001 and the pin from being deformed due to impact, thereby reducing the material loss rate. After the assembly is completed, the assembly head retreats, and the motor 65 continues to drive the crank 633 through the belt transmission component 634. The arc-shaped rack 6331 and the transmission rack 632 are no longer engaged, and the slide rail component resets the transmission rack 632, and drives the bumper 68 to move up through the transmission component 67, and no longer clamps the injection box seat 001, and performs step feeding. The assembled connector at the end of track 7 will leave track 7 along the unloading part of track 7.
[0067] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A POGOPIN connector special assembly production equipment, characterized in that: include: A workbench (1) is provided with a side panel, a track 1 (7) and a track 2 (9) for supporting an injection molding box seat (001) on its top, a support cover plate (11) is provided on the top of the side panel, and a movable opening is provided on the support cover plate (11); A matching mechanism (6) disposed on the top of the workbench (1), the matching mechanism (6) comprising a movable plate (61) disposed above the support cover plate (11), a motor (65) mounted on one side of the side panel, a feeding member (64), a crank feeding assembly (63) for driving the feeding member (64), an anti-collision device (68) disposed in the movable opening, and a transmission assembly (67) for driving the anti-collision device (68), wherein the transmission assembly (67) is driven by the crank feeding assembly (63); An assembly mechanism (10) provided on one side of the matching mechanism (6) and used for assembling the plug pin onto the injection molding box seat (001); A vibration feeding tray 1 (3) for conveying the injection molding box seat (001) and a vibration feeding tray 2 (2) for conveying the pins; A conveyor (4) connected to the discharge port of the vibrating feed tray (3); A material transfer mechanism (5) provided at one end of the conveyor (4); The anti-collision device (68) comprises a stepped anti-collision seat (681) arranged on one side of the movable plate (61), an anti-collision baffle (682) for shielding the injection molding box seat (001), and a power assembly for driving the anti-collision baffle (682); the anti-collision seat (681) is provided with a receiving groove (6811) capable of receiving the anti-collision baffle (682); a mounting cavity connected to the receiving groove (6811) is also provided inside the anti-collision seat; and a plug hole (6812) is provided on one side of the mounting cavity; The power assembly comprises a power rod (683) rotatably arranged in the installation cavity, a power plate (685) slidably arranged in the installation cavity, and a power tooth plate (688) cooperating with the power plate (685); a gear ring (6831) meshing with the power tooth plate (688) is fixedly connected to the outer shell of the power rod (683); one end of the gear ring (6831) is connected to the anti-collision baffle (682); a guide block (6851) slidably cooperating with the plug hole (6812) is provided at the bottom of one end of the power plate (685); a trapezoidal cooperating opening is provided on the power plate (685); and a cooperating inclined surface (6881) abutting against the trapezoidal cooperating opening is provided on the power tooth plate (688); The assembly mechanism (10) is composed of a driving assembly and an assembly head driven by the driving assembly. A limit assembly (8) for use with the anti-collision device (68) is provided on one side of the assembly head. The limit assembly (8) includes an L-shaped connecting piece (81) installed on one side of the assembly head. A limit plug-in (82) capable of being inserted into the socket (6812) and abutting against the guide block (6851) is installed on the top of the L-shaped connecting piece (81). A push plate (83) for pushing the anti-collision seat (681) is provided on the top of the limit plug-in (82).
2. The POGO PIN connector assembly and production equipment according to claim 1, characterized in that: The crank feeding assembly (63) includes a transmission shaft, a crank (633), and a transmission rack (632) that is reset by means of a slide rail assembly. One end of the crank (633) is movably connected to the connecting arm of the feeding member (64) through a rotating shaft. An arc-shaped rack (6331) that meshes with the transmission rack (632) is provided on one side of its fan-shaped portion. A transmission gear (631) that meshes with the transmission rack (632) is provided at one end of the transmission shaft. The matching mechanism (6) further includes a support vertical plate (62) installed at the rear side of the first track (7). A belt transmission assembly (634) that is directly connected to the output shaft of the motor (65) and is used to drive the crank (633) is provided at the rear side of the support vertical plate (62). The transmission shaft is rotatably arranged on the support vertical plate (62).
3. The POGO PIN connector assembly and production equipment according to claim 2, characterized in that: The first transmission assembly (67) includes an eccentric wheel (671) provided at the other end of the transmission shaft and a transmission plate (672) provided at the top of the eccentric wheel (671). Slide rods (674) with their tops symmetrically connected to the movable plate (61) are provided at the top of the transmission plate (672). A first connecting spring (673) is sleeved outside the slide rod (674). The two ends of the first connecting spring (673) are respectively connected to the movable plate (61) and the support cover plate (11).
4. The POGO PIN connector assembly and production equipment according to claim 1, characterized in that: The power assembly further includes four first guiding rods (684) fixed in the installation cavity and a second guiding rod (687) provided at one end of the power tooth plate (688). The four first guiding rods (684) are distributed in a rectangular shape. A second connecting spring (686) is sleeved outside the second guiding rod (687) and two of the first guiding rods (684).
5. The POGO PIN connector assembly and production equipment according to claim 1, characterized in that: The material transfer mechanism (5) is composed of a stop frame (52) for blocking the injection molding box seat (001), a movable track (53) provided between the first track (7) and the second track (9), and a second transmission assembly for driving the movable track (53) and the stop frame (52). The second transmission assembly includes a driving cylinder (51), a U-shaped bracket (54) for supporting the movable track (53), a transmission bracket (57) installed on one side of the U-shaped bracket (54), and an installation substrate (55) installed on the top of the workbench (1). The piston end of the driving cylinder (51) is installed with a connecting bracket (58). The top of the connecting bracket (58) is connected to the stop frame (52) through a connecting plate. A transmission inclined rod (56) is installed at the lower part of the connecting bracket (58). An inclined slideway that slidably cooperates with the transmission inclined rod (56) is provided on one side of the transmission bracket (57).
6. The POGO PIN connector assembly and production equipment according to claim 5, characterized in that: Damping slide rails (551) are symmetrically provided on the top of the installation substrate (55). The moving body of the damping slide rail (551) is fixedly connected to the U-shaped bracket (54). The top of the installation substrate (55) is connected to the U-shaped bracket (54) through a buffer spring (552).
7. The POGO PIN connector assembly and production equipment according to claim 6, characterized in that: The material transfer mechanism (5) further includes a support bracket (59) installed at the rear side of the workbench (1) for supporting the driving cylinder (51). The support bracket (59) is connected to the side wall panel through bolts.
8. The POGO PIN connector assembly and production equipment according to claim 1, characterized in that: The top of the feeding piece (64) is provided with a plurality of feeding teeth arranged in a side-by-side manner, the feeding teeth are used to push the injection molding box seat (001), and the feeding teeth also clamp and fix the injection molding box seat (001) by cooperating with the anti-collision seat (681).
Citation Information
Patent Citations
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