Device for assembling plug connector

By designing a connector assembly device, the automatic flipping and pressing of copper and plastic parts is achieved, solving the problems of complexity and low efficiency of manual operation, improving production efficiency and product quality, and aligning with the trend of intelligentization and automation in the motor industry.

CN223573869UActive Publication Date: 2025-11-21NANTONG HUARUI MACHINERY CO LTD
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Patent Information

Application Number
CN202423284378.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-21
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In existing technologies, the pressing of copper and plastic parts requires manual placement and flipping, resulting in low efficiency and misalignment of orientations, necessitating manual flipping.

Method used

A connector assembly device was designed, including a base, a conveyor belt, a flipping device, and a pressing device, to realize the automatic flipping and pressing of copper and plastic parts, and to ensure directional consistency through a precise mechanical structure and transmission system.

Benefits of technology

It significantly improved production efficiency, reduced labor intensity, decreased defect rate, enhanced product quality and market competitiveness, saved production space, and improved equipment reliability and service life.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223573869U_ABST
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Abstract

The utility model provides a device for assembling a plug connector. The device mainly comprises a base, a first conveying belt, a first conveying device, a first turnover device, a first moving device, a second conveying belt, a second conveying device, a second turnover device, a pressing device and a second moving device. According to the device, through the first conveying belt and the second conveying belt which are arranged in parallel and the corresponding conveying, overturning and moving devices, automatic interval conveying, overturning and pressing of the plastic parts and the copper parts are achieved, and the production efficiency is effectively improved. The device is mainly characterized in that a first conveying belt and a second conveying belt are arranged in parallel, and a first moving device is located at the end point of the first conveying belt and the second conveying belt and corresponds to a pressing device; the first turnover device is located on the inlet side of the first conveying belt, and the first conveying device is located on one side. The second turnover device is located on the inlet side of the second conveying belt, and the second conveying device is located on one side.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of plastic parts especially relates to a device of plug -in part assembly. BACKGROUND

[0002] In the prior art, with the development of the times, intelligentization is an important development trend of the current motor industry. By applying technologies such as the Internet of Things and artificial intelligence in motors, automatic control and remote monitoring of motors are realized, and work efficiency and safety are improved. Intelligent motors can also interconnect with other intelligent devices to realize smart home, smart factory and other application scenarios. At the same time, the demand for such indispensable accessories as flashing in motors is increasing, and it is very important to simplify the process and speed up production efficiency.

[0003] When copper parts and plastic parts need to be pressed together, manual placement is required, which reduces efficiency and the direction of the copper parts does not correspond to the direction of installation, so manual turning is required. UTILITY MODEL CONTENT

[0004] The device of plug-in part assembly provided by the embodiments of the present application solves the problem in the prior art that when copper parts and plastic parts need to be pressed together, manual placement is required, which reduces efficiency and the direction of the copper parts does not correspond to the direction of installation, so manual turning is required.

[0005] The technical solutions adopted by the embodiments of the present application are as follows.

[0006] A device of plug-in part assembly, comprising a base, a first conveyor belt provided on the base, a first conveying device for spacing transmission of plastic parts, a first turnover device for turning over the plastic parts, a first moving device for moving the plastic parts to another station, a second conveyor belt provided on the base, a second conveying device for spacing transmission of copper parts, a second turnover device for turning over the copper parts, a pressing device for pressing the plastic parts and the copper parts together, and a second moving device for feeding the completed workpieces into a finished product area; the first conveyor belt and the second conveyor belt are arranged in parallel; the first moving device is arranged at the terminal point of the first conveyor belt and the second conveyor belt; the first moving device is arranged on the base; the acting end of the first moving device corresponds to the first conveyor belt, the second conveyor belt and the pressing device; the first turnover device is arranged on the inlet side of the first conveyor belt; the first conveying device is arranged on one side of the first turnover device; the second turnover device is arranged on the inlet side of the second conveyor belt; and the second conveying device is arranged on one side of the second turnover device.

[0007] As a further improvement of the above technical solution: the first overturning device comprises a first rotating member, a first block arranged at the action end of the first rotating member; a first slot is arranged on the first block; the action end of the first conveying device is provided with a first pushing rod; the first pushing rod corresponds to the first slot; the first slot corresponds to the first conveying belt.

[0008] As a further improvement of the above technical solution: the second conveying device comprises a supporting block, a first pushing member arranged on the supporting block, a pushing device for synchronously pushing the copper member, a second block arranged on the supporting block, a third block rotating on the second block, and a fourth block rotating on the second block; a driving member is arranged on the second block; the action end of the driving member is connected to the third block; a synchronizing member is arranged on the rotating shafts of the third block and the fourth block; when the driving member drives the third block to rotate, the fourth block is driven to rotate through the synchronizing member; the pushing device is arranged through the supporting block and corresponds to the third block and the fourth block.

[0009] As a further improvement of the above technical solution: the fourth block and the third block are both provided with a second slot; a third slot is arranged on the second slot; the pushing device comprises a fifth block, a first rod rotating on the fifth block, a second rod for pushing the copper member, a third rod connecting the two second rods, a fourth rod for pushing the copper member, and a fifth rod connecting the two fourth rods; the action end of the first pushing member is hingedly connected to the middle of the first rod; the two ends of the first rod are both provided with a fourth slot; the third rod and the fifth rod pass through the two fourth slots respectively; the second rod corresponds to the third slot on the third block; the fourth rod corresponds to the third slot on the fourth block; the second slot corresponds to the position of the copper member, and four groups of second slots are arranged in a circumferential array.

[0010] As a further improvement of the above technical solution: the second slot on the fourth block corresponds to the second slot on the third block.

[0011] One or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:

[0012] 1、The core function of the device is to realize the automatic overturning and pressing of the plastic parts and copper parts. This innovative design greatly simplifies the complexity of manual operation, significantly reduces the labor intensity, and thus improves the overall production efficiency. Specifically, compared with the traditional manual placement method, the present application can effectively reduce the time consumption in the production process, speed up the production rhythm, and perfectly fit the modern motor industry intelligent and automated technology development trend; further, the present application ensures the consistency of the direction of the copper part in the installation process with the designed direction through the precise mechanical structure and transmission system design. This feature not only avoids the errors that may occur due to manual overturning operation, but also reduces the efficiency loss caused by improper operation. Therefore, the present application improves the product quality while greatly reducing the defective rate, thereby effectively reducing the production cost and providing a strong guarantee for the economic benefit of the enterprise; in addition, the first overturning device and the second overturning device in the present application are carefully designed to ensure the stability of the plastic parts and copper parts during the entire transmission process. This design makes the plastic parts and copper parts still maintain the continuity and stability of transmission after rotation, thereby effectively ensuring the safety and appearance quality of the products and improving the market competitiveness of the products; in terms of structural design, the device exhibits high rationality and high integration, not only saving valuable production space, but also being conducive to realizing the compact layout of the factory and improving the space utilization efficiency. The modular design concept makes the subsequent maintenance and upgrading work more convenient, greatly improves the reliability and service life of the equipment, and thus realizes the automatic overturning and pressing of the plastic parts and copper parts. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a structure schematic view of the device for assembling the plug-in part in the utility model.

[0014] Figure 2 It is a structure schematic view of the second transmission device in the utility model.

[0015] Figure 3 It is a sectional view of the second transmission device in the utility model.

[0016] Figure 4 It is a structure schematic view of the device for assembling the plug-in part in the utility model. Figure 1 It is a local enlarged view of A in the utility model.

[0017] In the figure: 1, base; 10, pressing device; 11, second moving device; 2, first conveying belt; 3, first conveying device; 31, first pushing rod; 4, first overturning device; 41, first rotating piece; 42, first block; 421, first slot; 5, first moving device; 7, second conveying belt; 8, second conveying device; 81, supporting block; 82, first pushing piece; 83, pushing device; 831, fifth block; 832, first rod; 8321, fourth slot; 833, second rod; 834, third rod; 835, fourth rod; 836, fifth rod; 84, second block; 841, driving piece; 85, third block; 851, second slot; 852, third slot; 86, fourth block; 87, synchronizing piece; 9, second overturning device. DETAILED DESCRIPTION

[0018] The device for assembling plug-in connectors provided by the embodiments of the present application solves the problem in the prior art that when copper pieces and plastic pieces need to be pressed together, manual placement is required, which reduces efficiency and the direction of the copper pieces does not correspond to the direction of installation, so manual turning over is required.

[0019] The technical solutions in the embodiments of the present application are as follows to solve the above problems

[0020] In order to better understand the above technical solutions, the above technical solutions will be described in detail below in combination with the drawings of the specification and specific embodiments.

[0021] A device for assembling plug-in connectors includes a base 1, a first conveying belt 2 arranged on the base 1, a first conveying device 3 for spacing transmission of plastic pieces, a first overturning device 4 for overturning the plastic pieces, a first moving device 5 for moving the plastic pieces to another station, a second conveying belt 7 arranged on the base 1, a second conveying device 8 for spacing transmission of copper pieces, a second overturning device 9 for overturning the copper pieces, a pressing device 10 for pressing the plastic pieces and the copper pieces together, and a second moving device 11 for feeding the finished workpieces into a finished product area; the first conveying belt 2 and the second conveying belt 7 are arranged in parallel; the first moving device 5 is arranged at the end of the first conveying belt 2 and the second conveying belt 7; the first moving device 5 is arranged on the base 1; the acting end of the first moving device 5 corresponds to the first conveying belt 2, the second conveying belt 7, and the pressing device 10; the first overturning device 4 is arranged on the inlet side of the first conveying belt 2; the first conveying device 3 is arranged on one side of the first overturning device 4; the second overturning device 9 is arranged on the inlet side of the second conveying belt 7; and the second conveying device 8 is arranged on one side of the second overturning device 9.

[0022] The first turnover device 4 comprises a first rotating piece 41, a first block 42 arranged at the acting end of the first rotating piece 41, a first slot 421 arranged on the first block 42, an acting end of the first conveying device 3 provided with a first pushing rod 31, the first pushing rod 31 corresponding to the first slot 421, and the first slot 421 corresponding to the first conveying belt 2.

[0023] The second conveying device 8 comprises a supporting block 81, a first pushing piece 82 arranged on the supporting block 81, a pushing device 83 for synchronously pushing the copper piece, a second block 84 arranged on the supporting block 81, a third block 85 rotatably arranged on the second block 84, a fourth block 86 rotatably arranged on the second block 84, a driving piece 841 arranged on the second block 84, an acting end of the driving piece 841 connected to the third block 85, a synchronous piece 87 arranged on the rotating shafts of the third block 85 and the fourth block 86, the driving piece 841 driving the third block 85 to rotate and in turn driving the fourth block 86 to rotate through the synchronous piece 87, and the pushing device 83 penetrating through the supporting block 81 and corresponding to the third block 85 and the fourth block 86.

[0024] The fourth block 86 and the third block 85 are both provided with a second slot 851, the second slot 851 is provided with a third slot 852, the pushing device 83 comprises a fifth block 831, a first rod 832 rotatably arranged on the fifth block 831, a second rod 833 for pushing the copper piece, a third rod 834 connecting two second rods 833, a fourth rod 835 for pushing the copper piece, and a fifth rod 836 connecting two fourth rods 835, an acting end of the first pushing piece 82 hinged to the middle of the first rod 832, both ends of the first rod 832 provided with fourth slots 8321, the third rod 834 and the fifth rod 836 penetrating through the two fourth slots 8321 respectively, the second rod 833 corresponding to the third slot 852 on the third block 85, the fourth rod 835 corresponding to the third slot 852 on the fourth block 86, and the second slot 851 corresponding to the position of the copper piece and provided with four groups of circumferential arrays.

[0025] The second slot 851 on the fourth block 86 corresponds to the second slot 851 on the third block 85.

[0026] The core function of the device is to realize the automatic overturning and pressing of the plastic parts and copper parts. This innovative design greatly simplifies the complexity of manual operation, significantly reduces the labor intensity, and thus improves the overall production efficiency. Specifically, compared with the traditional manual placement method, the present application can effectively reduce the time consumption in the production process and accelerate the production rhythm, perfectly fitting the modern motor industry intelligent and automated technology development trend; further, the present application ensures the consistency of the direction of the copper parts in the installation process with the designed direction through the precise mechanical structure and transmission system design. This feature not only avoids the errors that may occur due to manual overturning operation, but also reduces the efficiency loss caused by improper operation. Therefore, the present application improves the product quality while greatly reducing the defective rate, thus effectively reducing the production cost and providing a strong guarantee for the improvement of the economic benefits of enterprises; in addition, the first overturning device 4 and the second overturning device 9 in the present application can ensure the stability of the plastic parts and copper parts during the entire transmission process. This design makes the plastic parts and copper parts still maintain the continuity and stability of transmission after rotation, thus effectively ensuring the safety and appearance quality of the products and improving the market competitiveness of the products; in terms of structural design, the present device exhibits high rationality and high integration, not only saving valuable production space, but also being conducive to realizing the compact layout of the factory and improving the space utilization efficiency. The modular design concept makes the subsequent maintenance and upgrading work more convenient, greatly improving the reliability and service life of the equipment.

[0027] The core function of the device is to realize the automatic overturning and pressing of the plastic part and the copper part. This innovative design greatly simplifies the complexity of manual operation, significantly reduces the labor intensity, and thus improves the overall production efficiency. Specifically, compared with the traditional manual placement method, the present application can effectively reduce the time consumption in the production process, speed up the production rhythm, and perfectly fit the modern motor industry intelligent and automated technology development trend. Further, the present application ensures the consistency of the direction of the copper part during installation with the designed direction through precise mechanical structure and transmission system design. This feature not only avoids errors that may occur due to manual overturning operation, but also reduces efficiency loss due to improper operation. Therefore, the present application improves product quality while significantly reducing the rate of defective products, thereby effectively reducing production costs and providing a strong guarantee for the economic benefit of enterprises. In addition, the first overturning device 4 and the second overturning device 9 in the present application are carefully designed to ensure the stability of the plastic part and the copper part during the entire transmission process. This design enables the plastic part and the copper part to maintain the continuity and stability of transmission after rotation, thereby effectively ensuring the safety and appearance quality of the product and improving the market competitiveness of the product. In terms of structural design, the device exhibits high rationality and high integration, saving valuable production space and facilitating the realization of compact layout of the factory and improving the space utilization efficiency. The modular design concept makes subsequent maintenance and upgrading work more convenient, greatly improves the reliability and service life of the equipment, and thus realizes the automatic overturning and pressing of the plastic part and the copper part.

[0028] Although the preferred embodiments of the present application have been described, those skilled in the art can make further changes and modifications to these embodiments once they know the basic inventive concept. Therefore, the appended claims are intended to be interpreted as including all changes and modifications falling within the scope of the present application.

[0029] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application also intends to include these modifications and variations.

Claims

1. An apparatus for assembling a plug-in, characterized by The utility model provides a kind of plastic and copper combined pressing device, including base (1), first conveyor belt (2) being arranged on the base (1), first conveying device (3) that plastic piece is spaced transmission, first turnover device (4) that plastic piece is overturned, first moving device (5) that plastic piece is moved to another station, second conveyor belt (7) being arranged on the base (1), second transmission device (8) that copper piece is spaced transmission, second turnover device (9) that copper piece is overturned, pressing device (10) that plastic piece is pressed with copper piece, and second moving device (11) that finished workpiece is sent into finished product area;The first conveyor belt (2) is arranged in parallel with the second conveyor belt (7);The first moving device (5) is arranged at the terminal point of the first conveyor belt (2) and the second conveyor belt (7);The first moving device (5) is arranged on the base (1);The acting end of the first moving device (5) corresponds with the first conveyor belt (2), the second conveyor belt (7) and the pressing device (10);The first turnover device (4) is arranged at the entry side of the first conveyor belt (2);The first conveying device (3) is arranged at one side of the first turnover device (4);The second turnover device (9) is arranged at the entry side of the second conveyor belt (7);The second transmission device (8) is arranged at one side of the second turnover device (9).

2. The device of claim 1, wherein, The first turnover device (4) includes first rotating piece (41), first block (42) being arranged on the acting end of the first rotating piece (41);First slot (421) is formed in the first block (42);The acting end of the first conveying device (3) is provided with first push rod (31);The first push rod (31) corresponds with the first slot (421);The first slot (421) corresponds with the first conveyor belt (2).

3. The apparatus for assembling connectors as described in claim 1, characterized in that, The second transmission device (8) includes support block (81), first pusher (82) being arranged on the support block (81), pushing device (83) that copper piece is synchronously pushed, second block (84) being arranged on the support block (81), third block (85) being rotated on the second block (84), fourth block (86) being rotated on the second block (84);Driving piece (841) is arranged on the second block (84);The acting end of the driving piece (841) is connected with the third block (85);Synchronous piece (87) is arranged on the rotation shaft of the third block (85) and the fourth block (86);When the third block (85) is rotated by the driving piece (841), the fourth block (86) is rotated by the synchronous piece (87);The pushing device (83) is arranged in the support block (81) and corresponds with the third block (85) and the fourth block (86).

4. The device of claim 3, wherein the plug assembly is configured to be inserted into the socket assembly. The fourth block (86) and the third block (85) are provided with a second slot (851); the second slot (851) is provided with a third slot (852); the pushing device (83) comprises a fifth block (831), a first rod (832) rotating on the fifth block (831), a second rod (833) for pushing the copper piece, a third rod (834) connecting the second rods (833) on both sides, a fourth rod (835) for pushing the copper piece, and a fifth rod (836) connecting the fourth rods (835) on both sides; the acting end of the first pushing piece (82) is hingedly connected to the middle of the first rod (832); both ends of the first rod (832) are provided with a fourth slot (8321); the third rod (834) and the fifth rod (836) pass through the fourth slots (8321) on both sides respectively; the second rod (833) corresponds to the third slot (852) on the third block (85); the fourth rod (835) corresponds to the third slot (852) on the fourth block (86); the second slot (851) corresponds to the position of the copper piece, and four groups of the second slots (851) are circumferentially arranged.

5. The device of claim 4, wherein the plug assembly is configured to be inserted into the socket assembly. The second slot (851) on the fourth block (86) corresponds to the second slot (851) on the third block (85).