An automatic assembly production line and process method for a magazine-type FPC connector

By designing the automatic assembly production line of clamp FPC connectors, the combination of clamp plates and multiple workbenches and devices is used to solve the problems of low efficiency and low pass rate of existing production lines, and efficient and stable assembly of FPC connectors is achieved, reducing costs and safety risks.

CN107645113BActive Publication Date: 2025-06-13HONG RI DA TECH CO LTD
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Patent Information

Application Number
CN201710893247.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2017-09-27
Publication Date
2025-06-13
Estimated Expiration
2037-09-27

AI Technical Summary

Technical Problem

The existing FPC connector production lines have low production efficiency, low pass rate, high product cost, and frequent safety accidents.

Method used

An automatic assembly production line of magazine-type FPC connectors is designed. Through the arrangement of the first workbench, the second workbench and the third workbench, combined with the arrangement main body device, the quick plug front terminal device, the quick plug rear terminal device, the insertion cover device, the quick plug cover ear buckle device and the discharge device, the clamp plate is used to realize the movement of the workpiece and the rapid and efficient positioning and assembly.

Benefits of technology

It improves production efficiency and product qualification rate, reduces the occurrence of safety accidents, liberates the operators from dangerous, monotonous and heavy physical labor, effectively reduces labor costs, and has a compact structure, convenient disassembly and maintenance, simple process, and good stability in the production line.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a magazine-type FPC connector automatic assembly production line and process method, which includes first, second, and third workbenches. An array main body device and a quick-insert front terminal device are successively arranged on the first workbench. A quick-insert rear terminal device and an inserting cover device are successively arranged on the second workbench. A quick-insert cover ear buckle device and a discharging device are successively arranged on the third workbench. The array main body device and the inserting cover device have the same structural principle. The quick-insert front terminal device is the same as the quick-insert rear terminal device and the quick-insert cover ear buckle device in terms of structural principle. The array main body device, the quick-insert front terminal device, the quick-insert rear terminal device, the inserting cover device, the quick-insert cover ear buckle device, and the discharging device are respectively matched with a magazine tray. The present invention realizes a production line for the movement of workpieces between different devices and the rapid and efficient positioning and assembly into FPC connectors, improves production efficiency and product qualification rate, and reduces safety accidents and labor costs.
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Description

Technical Field

[0001] The present invention relates to the technical field of FPC connector assembly equipment, and in particular to a magazine-type FPC connector automatic assembly production line and a process method. Background Art

[0002] With the increasing popularity of mobile phones, the quantity and quality requirements for mobile phone components are getting higher and higher. As one of the mobile phone components, the FPC (Flexible Printed Circuit) connector is composed of five parts: a main body 7, a cover 10, a front terminal 8, a rear terminal 9, and a cover ear buckle 11. Among them, the main body 7 and the cover 10 are plastic parts, and the front terminal 8, the rear terminal 9, and the cover ear buckle 11 are sheet metal parts, which are in tape packaging. The existing FPC connectors have low production efficiency and low product qualification rate under the full manual assembly method or semi-automatic assembly method, resulting in high product costs and low competitiveness, and can no longer meet the market demand. In view of this situation, there is an urgent need for a production line that can quickly and automatically assemble FPC connectors to improve production efficiency, reduce the occurrence of safety accidents, liberate operators from dangerous, monotonous, and heavy physical labor, and effectively reduce labor costs, etc. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to design a magazine-type FPC connector automatic assembly production line and a process method to solve the technical problems of low existing production efficiency, low qualification rate, high product cost, and frequent safety accidents.

[0004] To solve the above technical problems, the present invention provides a magazine-type FPC connector automatic assembly production line, which includes:

[0005] A first workbench, a second workbench, and a third workbench. An arranging main body device and a quick-insert front terminal device are sequentially arranged on the first workbench. A quick-insert rear terminal device and an inserting cover device are sequentially arranged on the second workbench. A quick-insert cover ear buckle device and a discharging device are sequentially arranged on the third workbench. Among them, the arranging main body device and the inserting cover device have the same structural principle. The quick-insert front terminal device has the same structural principle as the quick-insert rear terminal device and the quick-insert cover ear buckle device respectively. The arranging main body device, the quick-insert front terminal device, the quick-insert rear terminal device, the inserting cover device, the quick-insert cover ear buckle device, and the discharging device are respectively matched with a magazine tray.

[0006] Further, the arrangement main body device includes a first linear module, a second linear module, a first motor, a first magazine fixture, a second motor, a first feeding chute, a first push rod, a first cylinder, a first bracket and a first sliding guide rail. The first motor is drivingly connected to the first linear module. The second linear module is movably arranged on the first linear module, and the first linear module and the second linear module are vertically fixedly connected. The second linear module is drivingly connected to the second motor. The first magazine fixture is movably arranged on the slider of the second linear module, and the first magazine fixture is in clamping cooperation with the magazine tray. The magazine tray is in vertical contact cooperation with the first push rod. The first push rod is slidably arranged on the first sliding guide rail, and the first push rod is connected to the first cylinder. The first cylinder and the first sliding guide rail are respectively arranged on the first bracket. The first bracket and the first linear module are respectively arranged on the first workbench. The front end of the first sliding guide rail is connected to the first vibrating disk through the first feeding chute, and the first vibrating disk is arranged on the first workbench.

[0007] Further, the quick-insert front-end terminal device includes a third motor, a third linear module, a second magazine fixture, a third cylinder, a first cylinder seat, a second sliding guide rail, a support, a feeding mechanism, a clamping mechanism, a cutting mechanism and a waste removing mechanism. The feeding mechanism is arranged on the support, and the feeding mechanism is respectively in cooperation with the clamping mechanism and the cutting mechanism. The clamping mechanism is arranged on the first cylinder seat. The first cylinder seat is slidably arranged on the second sliding guide rail, and the first cylinder seat is connected to the cylinder rod of the third cylinder. The third cylinder and the second sliding guide rail are respectively fixedly arranged on the support. The cutting mechanism is arranged at the bottom of the support and is in cooperation with the clamping mechanism. The waste removing mechanism is arranged between the support and the third linear module. The third linear module is arranged on the first workbench and is drivingly connected to the third motor. The second magazine fixture is slidably arranged on the slider of the third linear module, and the magazine tray is in clamping cooperation with the second magazine fixture.

[0008] Further, the feeding mechanism includes a motor seat, a fourth motor, a feeding tray and a second feeding chute. The motor seat is arranged on the support. The fourth motor is fixedly arranged on the motor seat, and the rotating shaft of the fourth motor passes through the motor seat and is connected to the feeding tray. The feeding tray is in rotational cooperation with the front-end terminal tape in the second feeding chute. The second feeding chute is arranged on the support.

[0009] Further, the clamping mechanism includes a first pin, a second pin, a second cylinder, a pressing block, a pressing lever, and a third pin. The pressing block is movably matched with the second feeding chute along the vertical direction of the first cylinder seat, and the pressing block is connected to one end of the pressing lever through the first pin. The middle of the pressing lever is rotationally connected to the first cylinder seat through the second pin, and the other end of the pressing lever is rotationally connected to the cylinder rod of the second cylinder through the third pin. The second cylinder is fixedly arranged on the first cylinder seat.

[0010] Further, the cutting mechanism includes a fourth cylinder, a support column, a fourth pin, a cutting lever, a lever support, a fifth pin, a sixth pin, and a cutting rod. The support is connected to the fourth cylinder through the support column. The cylinder rod of the fourth cylinder is rotationally connected to one end of the cutting lever through the fourth pin. The middle of the cutting lever is connected to the lever support through the fifth pin. The lever support is fixedly arranged on the support. The other end of the cutting lever is connected to the cutting rod through the sixth pin. The cutting rod is slidably arranged inside the support, and the cutting rod is matched with the pressing block and the second feeding chute.

[0011] Further, the waste removing mechanism includes a fifth cylinder, a second cylinder seat, a moving guide rail, and a cutting block. The moving guide rail is arranged on the support. The cutting block is slidably arranged on the moving guide rail and is matched with the second magazine fixture. The bottom end of the cutting block is connected to the fifth cylinder. The fifth cylinder is fixedly arranged on the second cylinder seat.

[0012] Further, the discharging device includes a third cylinder seat, a third sliding guide rail, a sixth cylinder, a connecting piece, a discharging claw, a third magazine fixture, a collecting box, and a slider. The third cylinder seat is arranged on the third workbench. The sixth cylinder is fixedly arranged on the third cylinder seat. The sixth cylinder is connected to the discharging claw through the connecting piece. The connecting piece and the discharging claw are respectively fixedly arranged on the slider. The slider is slidably arranged on the third sliding guide rail. The third sliding guide rail is arranged on the third cylinder seat. The third magazine fixture is arranged below the discharging claw. The third magazine fixture clamps the magazine tray. The magazine tray is matched with the discharging claw. The third magazine fixture is arranged above the collecting box. The collecting box is arranged on the third workbench.

[0013] The present invention also provides a method for automatically assembling a magazine - type FPC connector, which includes the following steps:

[0014] S1. Place the FPC connector body, front terminal tape, rear terminal tape, cover, and cover ear buckle into the alignment body device, quick-insert front terminal device, quick-insert rear terminal device, cover insertion device, and quick-insert cover ear buckle device respectively;

[0015] S2. Horizontally place the magazine tray into the first magazine fixture, and the alignment body device aligns the bodies onto the magazine tray;

[0016] S3. Vertically place the magazine tray into the second magazine fixture, and the quick-insert front terminal device completes the processes of front terminal tape loading, clamping, cutting, overall insertion into the body, and waste removal;

[0017] S4. Vertically and reversely place the magazine tray onto the magazine fixture in the quick-insert rear terminal device to complete the processes of rear terminal tape loading, clamping, cutting, overall insertion into the body, and waste removal;

[0018] S5. Horizontally place the magazine tray onto the magazine fixture in the cover insertion device to complete the insertion of the cover into the body;

[0019] S6. Vertically place the magazine tray onto the magazine fixture in the quick-insert cover ear buckle device to complete the insertion of the cover ear buckle;

[0020] S7. Horizontally place the magazine tray into the third magazine fixture, and the discharging device discharges the finished workpieces.

[0021] Advantages of the present invention: The magazine tray connects in series the alignment body device, quick-insert front terminal device, quick-insert rear terminal device, cover insertion device, quick-insert cover ear buckle device, and discharging device, realizing the movement of workpieces between different devices and the fast and efficient positioning and assembly of the FPC connector production line. It improves production efficiency and product qualification rate, reduces the occurrence of safety accidents, liberates operators from dangerous, monotonous, and heavy physical labor, and effectively reduces labor costs; in addition, the present invention has a compact structure, is convenient for disassembly and maintenance, has a simple process flow, and good production line stability. Brief Description of the Drawings

[0022] The following further clarifies the specific embodiments of the present invention in conjunction with the drawings.

[0023] Figure 1 It is a structural diagram of the finished product of the magazine-type FPC connector of the present invention;

[0024] Figure 2 It is an assembly schematic diagram of the magazine-type FPC connector of the present invention;

[0025] Figure 3 It is a structural diagram of the magazine tray of the present invention;

[0026] Figure 4 It is a structural schematic diagram of the automatic assembly production line of the present invention;

[0027] Figure 5 Schematic structural diagram of the arrangement main body device of the present invention;

[0028] Figure 6 Front schematic structural diagram of the quick-insert front terminal device of the present invention;

[0029] Figure 7 Reverse schematic structural diagram of the quick-insert front terminal device of the present invention;

[0030] Figure 8 Partial cross-sectional view of the quick-insert front terminal device of the present invention;

[0031] Figure 9 Schematic structural diagram of the discharge device of the present invention. Specific embodiments

[0032] Combined with Figures 1-9 , the magazine-type FPC connector automatic assembly production line of the present invention includes: a first workbench 19, a second workbench 13 and a third workbench 14. An arrangement main body device 1 and a quick-insert front terminal device 2 are sequentially arranged on the first workbench 19. A quick-insert rear terminal device 3 and an insertion lid device 4 are sequentially arranged on the second workbench 13. A quick-insert lid ear buckle device 5 and a discharge device 6 are sequentially arranged on the third workbench 14. Among them, the arrangement main body device 1 and the insertion lid device 4 have the same structural principle, and the quick-insert front terminal device 2 has the same structural principle as the quick-insert rear terminal device 3 and the quick-insert lid ear buckle device 5 respectively. The arrangement main body device 1, the quick-insert front terminal device 2, the quick-insert rear terminal device 3, the insertion lid device 4, the quick-insert lid ear buckle device 5 and the discharge device 6 are respectively matched with the magazine tray 12. The assembly process of the magazine-type FPC connector of the present invention is as Figure 2 shown. The front terminal 8, the rear terminal 9, the lid 10 and the lid ear buckle 11 are sequentially inserted into the main body 7 according to the arrows shown in the figure. The present invention adopts a positioning tray similar to the magazine tray 12. As Figure 3 shown, each magazine tray 12 loads 280 workpieces (35 columns, 8 rows). Through the transfer of the magazine tray 12, the arrangement main body device 1, the quick-insert front terminal device 2, the quick-insert rear terminal device 3, the insertion lid device 4, the quick-insert lid ear buckle device 5 and the discharge device 6, the transfer, positioning and assembly of the workpieces are realized.

[0033] The present invention connects the arrangement main body device 1, the quick-insert front terminal device 2, the quick-insert rear terminal device 3, the insertion lid device 4, the quick-insert lid ear buckle device 5 and the discharge device 6 in series through the magazine tray 12, realizing the movement of workpieces between different devices and the fast and efficient positioning and assembly into an FPC connector production line, improving the production efficiency and product qualification rate, reducing the occurrence of safety accidents, liberating the operators from dangerous, monotonous and heavy physical labor, and effectively reducing the labor cost; in addition, the present invention has a compact structure, is convenient for disassembly and maintenance, has a simple technological process, and has good production line stability.

[0034] Specifically, the arrangement main body device 1 includes a first linear module 101, a second linear module 102, a first motor 103, a first magazine fixture 104, a second motor 105, a first feeding chute 106, a first push rod 107, a first cylinder 108, a first bracket 109 and a first sliding guide rail 110. The first motor 103 is drivingly connected to the first linear module 101. The second linear module 102 is movably arranged on the first linear module 101, and the first linear module 101 and the second linear module 102 are vertically fixedly connected. The second linear module 102 is drivingly connected to the second motor 105. The first magazine fixture 104 is movably arranged on the slider of the second linear module 102, and the first magazine fixture 104 is in clamping cooperation with the magazine tray 12. The magazine tray 12 is in vertical contact and cooperation with the first push rod 107. The first push rod 107 is slidably arranged on the first sliding guide rail 110, and the first push rod 107 is connected to the first cylinder 108. The first cylinder 108 and the first sliding guide rail 110 are respectively arranged on the first bracket 109. The first bracket 109 and the first linear module 101 are respectively arranged on the first workbench 19. The front end of the first sliding guide rail 110 is connected to the first vibrating disk 111 through the first feeding chute 106. The first vibrating disk 111 is arranged on the first workbench 19. In the present invention, the empty magazine tray 12 is horizontally loaded into the first magazine fixture 104. The main body 7 is sorted by the vibrating disk and continuously arranged into the first feeding chute 106. When a main body 7 reaches the first sliding guide rail 110, the first cylinder 108 pushes the first push rod 107 to insert the main body 7 into the magazine tray 12, and then the two-axis motion platform of the first linear module 101 and the second linear module 102 moves the magazine tray 12 to the next position. The insertion position sequence of the main body changes in a continuous S shape. After the magazine tray 12 is quickly loaded with 280 main bodies 7, the magazine tray 12 is taken out manually and transferred to the front terminal insertion device 2.

[0035] Specifically, the quick-insert front-end terminal device 2 includes a third motor 201, a third linear module 202, a second magazine fixture 203, a third cylinder 211, a first cylinder seat 214, a second sliding guide 215, a support 216, a feeding mechanism 15, a clamping mechanism 16, a cutting mechanism 17, and a waste removing mechanism 18. The feeding mechanism 15 is arranged on the support 216, and the feeding mechanism 15 cooperates with the clamping mechanism 16 and the cutting mechanism 17 respectively. The clamping mechanism 16 is arranged on the first cylinder seat 214. The first cylinder seat 214 is slidably arranged on the second sliding guide 215, and the first cylinder seat 214 is connected to the cylinder rod of the third cylinder 211. The third cylinder 211 and the second sliding guide 215 are respectively fixed on the support 216. The cutting mechanism 17 is arranged at the bottom of the support 216 and cooperates with the clamping mechanism 16. The waste removing mechanism 18 is arranged between the support 216 and the third linear module 202. The third linear module 202 is arranged on the first workbench 19 and is drivingly connected to the third motor 201. The second magazine fixture 203 is slidably arranged on the slider of the third linear module 202. The magazine tray 12 is clamped and cooperates with the second magazine fixture 203. Specifically, the feeding mechanism 15 includes a motor seat 218, a fourth motor 209, a loading tray 217, and a second loading chute 220. The motor seat 218 is arranged on the support 216. The fourth motor 209 is fixed on the motor seat 218, and the rotating shaft of the fourth motor 209 passes through the motor seat 218 and is connected to the loading tray 217. The loading tray 217 is rotationally cooperated with the front-end terminal tape in the second loading chute 220. The second loading chute 220 is arranged on the support 216. Specifically, the clamping mechanism 16 includes a first pin 204, a second pin 205, a second cylinder 206, a pressing block 207, a pressing lever 208, and a third pin 210. The pressing block 207 is movably arranged along the vertical direction of the first cylinder seat 214 and cooperates with the second loading chute 220. The pressing block 207 is connected to one end of the pressing lever 208 through the first pin 204. The middle part of the pressing lever 208 is rotationally connected to the first cylinder seat 214 through the second pin 205. The other end of the pressing lever 208 is rotationally connected to the cylinder rod of the second cylinder 206 through the third pin 210. The second cylinder 206 is fixed on the first cylinder seat 214.Specifically, the cutting mechanism 17 includes a fourth cylinder 212, a support column 219, a fourth pin 222, a cutting lever 223, a lever support 224, a fifth pin 225, a sixth pin 226, and a cutting rod 229. The support 216 is connected to the fourth cylinder 212 through the support column 219. The cylinder rod of the fourth cylinder 212 is rotatably connected to one end of the cutting lever 223 through the fourth pin 222. The middle of the cutting lever 223 is connected to the lever support 224 through the fifth pin 225. The lever support 224 is fixedly arranged on the support 216. The other end of the cutting lever 223 is connected to the cutting rod 229 through the sixth pin 226. The cutting rod 229 is slidably arranged inside the support 216 and cooperates with the pressing block 207 and the second feeding chute 220. Specifically, the waste removing mechanism 18 includes a fifth cylinder 213, a second cylinder seat 221, a moving guide rail 227, and a cutting block 228. The moving guide rail 227 is arranged on the support 216. The cutting block 228 is slidably arranged on the moving guide rail 227 and cooperates with the second magazine fixture 203. The bottom end of the cutting block 228 is connected to the fifth cylinder 213. The fifth cylinder 213 is fixedly arranged on the second cylinder seat 221. In the present invention, the front terminal tape enters the second feeding chute 220. The fourth motor 209 drives the feeding disk 217 to rotate. The teeth on the feeding disk 217 are inserted into the holes on the tape, causing the front terminal tape to move. When the front terminal tape feeds a certain distance, the second cylinder 206 drives the pressing block 207 to move downward through the pressing lever 208 to clamp the front terminal tape. Then, the fourth cylinder 212 drives the cutting rod 229 to move downward through the cutting lever 223 to cut out a fixed-length terminal tape. Then, the third cylinder 211 pushes the first cylinder seat 214 towards the magazine disk 12 to insert a section of the cut terminals into the corresponding body 7 in the magazine disk 12. Then, the fifth cylinder 213 pushes the cutting block 228 to move upward to remove the tape waste at the end of the terminal. Then, the third linear module 202 drives the magazine disk 12 to move downward for the next insertion. By driving the magazine disk 12 to displace different distances through the third linear module 202, the terminal insertion of 8 rows of workpieces in the magazine disk 12 is realized. Finally, the magazine disk 12 is manually transferred to the post-insertion terminal device 3.

[0036] In the present invention, the post-insertion terminal device 3 has the same principle and similar structure as the pre-insertion terminal device 2. The direction of inserting the post-terminal 9 into the body 7 is different by the different directions of inserting the magazine disk 12 into the magazine fixture. The lid insertion device 4 has the same principle and similar structure as the body arrangement device 1. By moving the magazine disk 12 along an S-shaped path by a corresponding distance through a two-axis motion platform, the lid insertion process of 280 workpieces is realized for the lid 10. The earring insertion device 5 has the same principle and similar structure as the pre-insertion terminal device 2. Since only two earrings 11 need to be inserted into one body 7, the magazine disk 12 is driven by a linear module to move vertically by a corresponding distance, and the earring insertion process of 280 workpieces is completed after 16 insertions for the earrings 11.

[0037] Specifically, the discharging device 6 includes a third cylinder base 601, a third sliding guide rail 602, a sixth cylinder 603, a connecting member 604, a discharging claw 605, a third magazine fixture 606, a collecting box 607, and a slider 608. The third cylinder base 601 is disposed on the third workbench 14. The sixth cylinder 603 is fixedly installed on the third cylinder base 601, and the sixth cylinder 603 is connected to the discharging claw 605 through the connecting member 604. The connecting member 604 and the discharging claw 605 are respectively fixedly installed on the slider 608. The slider 608 is slidably disposed on the third sliding guide rail 602. The third sliding guide rail 602 is disposed on the third cylinder base 601. A third magazine fixture 606 is disposed below the discharging claw 605. The third magazine fixture 606 clamps the magazine tray 12. The magazine tray 12 cooperates with the discharging claw 605. The third magazine fixture 606 is disposed above the collecting box 607. The collecting box 607 is disposed on the third workbench 14. The workpieces that have completed the first 5 processes are manually transferred into the discharging device 6 through the magazine tray 12, and the magazine tray 12 is loaded into the third magazine fixture 606. The sixth cylinder 603 pushes the discharging claw 605 downward, and 280 claws simultaneously push out the 280 workpieces in the magazine tray 12 and fall into the collecting box 607.

[0038] The automatic assembly process method of the magazine-type FPC connector of the present invention includes the following steps:

[0039] S1. Place the FPC connector body 7, the front terminal tape, the rear terminal tape, the cover 10, and the cover ear buckle 11 into the arranging main body device 1, the quick-insert front terminal device 2, the quick-insert rear terminal device 3, the cover inserting device 4, and the quick-insert cover ear buckle device 5 respectively;

[0040] S2. Horizontally place the magazine tray 12 into the first magazine fixture 104, and the arranging main body device 1 arranges the main body 7 onto the magazine tray 12;

[0041] S3. Vertically place the magazine tray 12 into the second magazine fixture 203, and the quick-insert front terminal device 2 completes the processes of front terminal tape loading, clamping, cutting, overall insertion into the main body 7, and waste removal;

[0042] S4. Vertically and reversely place the magazine tray 12 onto the magazine fixture in the quick-insert rear terminal device 3 to complete the processes of rear terminal tape loading, clamping, cutting, overall insertion into the main body 7, and waste removal;

[0043] S5. Horizontally place the magazine tray 12 onto the magazine fixture in the cover inserting device 4 to complete the insertion of the cover 10 into the main body 7;

[0044] S6. Vertically place the magazine tray 12 onto the magazine fixture in the quick-insert cover ear buckle device 5 to complete the insertion of the cover ear buckle;

[0045] S7. Horizontally place the magazine tray 12 into the third magazine fixture 606, and the discharging device 6 discharges the finished workpieces.

[0046] In the above description, many specific details are set forth to facilitate a full understanding of the present invention. However, the above description is only a preferred embodiment of the present invention, and the present invention can be implemented in many other ways different from those described herein. Therefore, the present invention is not limited by the specific embodiments disclosed above. At the same time, any person skilled in the art can make many possible changes and modifications to the technical solution of the present invention by using the methods and technical contents disclosed above without departing from the scope of the technical solution of the present invention, or modify it into an equivalent embodiment with equivalent changes. All simple modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A magazine - type FPC connector automatic assembly production line, including a first workbench (19), a second workbench (13) and a third workbench (14), Characterized in that: An arrangement main body device (1) and a quick - insertion front terminal device (2) are successively arranged on the first workbench (19); a quick - insertion rear terminal device (3) and an inserting cover device (4) are successively arranged on the second workbench (13); a quick - insertion cover ear buckle device (5) and a discharging device (6) are successively arranged on the third workbench (14). Among them, the arrangement main body device (1) and the inserting cover device (4) have the same structural principle; the quick - insertion front terminal device (2) has the same structural principle as the quick - insertion rear terminal device (3) and the quick - insertion cover ear buckle device (5) respectively. The arrangement main body device (1), the quick - insertion front terminal device (2), the quick - insertion rear terminal device (3), the inserting cover device (4), the quick - insertion cover ear buckle device (5) and the discharging device (6) are respectively matched with a magazine tray (12); The arrangement main body device (1) includes a first linear module (101), a second linear module (102), a first motor (103), a first magazine fixture (104), a second motor (105), a first feeding chute (106), a first push rod (107), a first cylinder (108), a first bracket (109) and a first sliding guide rail (110). The first motor (103) is drivingly connected to the first linear module (101). The second linear module (102) is movably arranged on the first linear module (101), and the first linear module (101) and the second linear module (102) are vertically fixedly connected. The second linear module (102) is drivingly connected to the second motor (105). The first magazine fixture (104) is movably arranged on the slider of the second linear module (102), and the first magazine fixture (104) is clamping - matched with the magazine tray (12). The magazine tray (12) is in vertical contact - matching with the first push rod (107). The first push rod (107) is slidably arranged on the first sliding guide rail (110), and the first push rod (107) is connected to the first cylinder (108). The first cylinder (108) and the first sliding guide rail (110) are respectively arranged on the first bracket (109). The first bracket (109) and the first linear module (101) are respectively arranged on the first workbench (19). The front end of the first sliding guide rail (110) is connected to a first vibrating bowl (111) through the first feeding chute (106). The first vibrating bowl (111) is arranged on the first workbench (19); The quick-insert front terminal device (2) includes a third motor (201), a third linear module (202), a second magazine fixture (203), a third cylinder (211), a first cylinder seat (214), a second sliding guide rail (215), a support (216), a feeding mechanism (15), a clamping mechanism (16), a cutting mechanism (17), and a waste removing mechanism (18). The feeding mechanism (15) is arranged on the support (216), and the feeding mechanism (15) cooperates with the clamping mechanism (16) and the cutting mechanism (17) respectively. The clamping mechanism (16) is arranged on the first cylinder seat (214). The first cylinder seat (214) is slidably arranged on the second sliding guide rail (215), and the first cylinder seat (214) is connected to the cylinder rod of the third cylinder (211). The third cylinder (211) and the second sliding guide rail (215) are respectively fixed on the support (216). The cutting mechanism (17) is arranged at the bottom of the support (216) and cooperates with the clamping mechanism (16). The waste removing mechanism (18) is arranged between the support (216) and the third linear module (202). The third linear module (202) is arranged on the first workbench (19) and is drivingly connected to the third motor (201). The second magazine fixture (203) is slidably arranged on the slider of the third linear module (202). The magazine tray (12) is clamped and cooperated with the second magazine fixture (203).

2. The magazine-type FPC connector automatic assembly production line according to claim 1, characterized in that: The feeding mechanism (15) includes a motor seat (218), a fourth motor (209), a loading tray (217), and a second loading chute (220). The motor seat (218) is arranged on the support (216). The fourth motor (209) is fixed on the motor seat (218), and the rotating shaft of the fourth motor (209) passes through the motor seat (218) and is connected to the loading tray (217). The loading tray (217) is rotationally cooperated with the front terminal tape in the second loading chute (220). The second loading chute (220) is arranged on the support (216).

3. The magazine-type FPC connector automatic assembly production line according to claim 2, characterized in that: The clamping mechanism (16) includes a first pin (204), a second pin (205), a second cylinder (206), a pressing block (207), a pressing lever (208), and a third pin (210). The pressing block (207) is movably matched with the second feeding chute (220) in the vertical direction of the first cylinder seat (214). The pressing block (207) is connected to one end of the pressing lever (208) through the first pin (204). The middle of the pressing lever (208) is rotatably connected to the first cylinder seat (214) through the second pin (205). The other end of the pressing lever (208) is rotatably connected to the cylinder rod of the second cylinder (206) through the third pin (210). The second cylinder (206) is fixedly arranged on the first cylinder seat (214).

4. The magazine-type FPC connector automatic assembly production line according to claim 3, characterized in that: The cutting mechanism (17) includes a fourth cylinder (212), a pillar (219), a fourth pin (222), a cutting lever (223), a lever support (224), a fifth pin (225), a sixth pin (226), and a cutting rod (229). The support (216) is connected to the fourth cylinder (212) through the pillar (219). The cylinder rod of the fourth cylinder (212) is rotatably connected to one end of the cutting lever (223) through the fourth pin (222). The middle of the cutting lever (223) is connected to the lever support (224) through the fifth pin (225). The lever support (224) is fixedly arranged on the support (216). The other end of the cutting lever (223) is connected to the cutting rod (229) through the sixth pin (226). The cutting rod (229) is slidably arranged inside the support (216). The cutting rod (229) is matched with the pressing block (207) and the second feeding chute (220).

5. The magazine-type FPC connector automatic assembly production line according to claim 4, characterized in that: The waste removing mechanism (18) includes a fifth cylinder (213), a second cylinder seat (221), a moving guide rail (227), and a cutting block (228). The moving guide rail (227) is arranged on the support (216). The cutting block (228) is slidably arranged on the moving guide rail (227) and is matched with the second magazine fixture (203). The bottom end of the cutting block (228) is connected to the fifth cylinder (213). The fifth cylinder (213) is fixedly arranged on the second cylinder seat (221).

6. The magazine-type FPC connector automatic assembly production line according to claim 5, characterized in that: The discharging device (6) includes a third cylinder base (601), a third sliding guide rail (602), a sixth cylinder (603), a connecting piece (604), a discharging claw (605), a third magazine fixture (606), a collection box (607) and a slider (608). The third cylinder base (601) is arranged on the third workbench (14). The sixth cylinder (603) is fixedly arranged on the third cylinder base (601), and the sixth cylinder (603) is connected to the discharging claw (605) through the connecting piece (604). The connecting piece (604) and the discharging claw (605) are respectively fixedly arranged on the slider (608). The slider (608) is slidably arranged on the third sliding guide rail (602), and the third sliding guide rail (602) is arranged on the third cylinder base (601). The third magazine fixture (606) is arranged below the discharging claw (605). The third magazine fixture (606) clamps the magazine tray (12). The magazine tray (12) cooperates with the discharging claw (605). The third magazine fixture (606) is arranged above the collection box (607), and the collection box (607) is arranged on the third workbench (14).

Citation Information

Patent Citations

  • Automatic assembly manufacturing line of clip type FPC connector

    CN207765779U