Tin soldering device for data line production
By designing a data line production solder device with a driving plate and a loading rod, the problems of low welding efficiency and poor accuracy in the prior art are solved, efficient loading and unloading of terminals and precise positioning are achieved, and welding efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202421638779.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-11
AI Technical Summary
The existing soldering device cannot achieve continuous welding when welding the connecting wires and terminals, resulting in low welding efficiency and inability to accurately locate the terminals, resulting in poor welding accuracy.
A data line production solder device is designed, adopting a combined structure of a driving plate and a loading rod. The loading rod is driven to push the material through a motor drive transmission chain, so that the terminals are moved accurately below the solder gun, and the terminals are accurately positioned by clamping components.
The solder gun continuously solderes multiple sets of terminals, improves the welding efficiency, and improves the welding accuracy through precise positioning.
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Figure CN223043785U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of solder welding for data cable production, in particular to a solder welding device for data cable production. Background Art
[0002] With the improvement of people's living standards, mobile phones are becoming more and more popular. The data cable used to connect mobile phones and computers has become an indispensable part. During the manufacturing process of the data cable, terminal assembly is usually required, and the connecting wire and the terminal are connected by soldering. Therefore, a soldering device is needed.
[0003] A Chinese patent with the publication number CN116921797A discloses a soldering device, especially a soldering device for mobile phone data cable production. The purpose of the present invention is to provide a soldering device for mobile phone data cable production that can solder more fully and improve the subsequent soldering quality. A soldering device for mobile phone data cable production includes a main frame, a top bracket, a servo motor, a lifting soldering mechanism, etc.; the bottom of the main frame is a convex mechanism in an H shape, the top of the main frame is fixedly connected with a top bracket, the top of the top bracket is provided with a servo motor, and the lifting soldering mechanism is arranged on the main frame and connected to the output shaft of the servo motor. The fixed cam will drive two fixed push blocks to rotate. One of the fixed push blocks will push the fixed turntable to reverse. The fixed cam will drive the two fixed push blocks to continue rotating, so that when the soldering iron head solders the mobile phone data cable, it can rotate and separate and lift, which can effectively reduce the adhesion of the tin liquid wire to the soldering iron head, and thus can improve the soldering quality of the mobile phone data cable.
[0004] During the process of soldering the connecting wire and the terminal with the existing soldering device, continuous soldering cannot be performed, resulting in low soldering efficiency; therefore, a solder welding device for data cable production is proposed for the above problems. Content of the Utility Model
[0005] In order to make up for the deficiencies of the prior art and solve the problems existing in the prior art, the utility model proposes a solder welding device for data cable production.
[0006] The technical solution adopted by the present utility model to solve its technical problems is as follows: A soldering device for data cable production according to the present utility model includes a footrest, on which a base is installed. A feeding groove is provided on the base, and multiple groups of terminals are placed in the feeding groove. A connecting wire is placed on the terminals. A groove is provided on the base, and a feeding component is provided on the base. The feeding component includes two support plates, which are fixedly connected to the bottom side of the base. A motor is installed on one of the support plates through a machine base. A first rotating shaft and a second rotating shaft are respectively rotatably installed on the two support plates. A first gear is fixedly sleeved on the first rotating shaft, and a second gear is fixedly sleeved on the second rotating shaft. A transmission chain is sleeved on the first gear and the second gear. A first connecting rod is fixedly sleeved on the first rotating shaft, and a second connecting rod is fixedly sleeved on the second rotating shaft. The other ends of the first connecting rod and the second connecting rod are rotatably installed with a driving plate, and multiple feeding rods are installed on the driving plate. During the rotation of the driving plate, the multiple feeding rods on it push the materials. Each terminal will accurately move to the lower part of the soldering gun for soldering processing. After the processing is completed, it is pushed away from the welding position by the feeding rod, realizing the efficient feeding and discharging of the terminals, enabling the soldering gun to continuously solder multiple groups of terminals, which is beneficial to improving the soldering efficiency.
[0007] Preferably, clamping components are symmetrically installed on the base. The clamping components include a plate groove, in which a clamping plate is assembled. A connecting plate is installed on the clamping plate, and a roller is installed on the connecting plate. A triangular plate is assembled in the plate groove. A connecting groove is provided on the inner wall of the plate groove, and a connecting block is assembled in the connecting groove. The connecting block is fixedly connected to the triangular plate. The triangular plate is tangent to the roller. A placement groove is provided on the base, and an electric telescopic rod is assembled in the placement groove. A push rod is connected to the electric telescopic rod, and the push rod is fixedly connected to the side wall of the triangular plate. A support seat is fixedly installed on the base, and a hydraulic cylinder is fixedly installed on the support seat. A hydraulic rod is connected to the hydraulic cylinder, and a lifting block is connected to the bottom side of the hydraulic rod. A soldering gun is installed on the lifting block. A sliding groove is provided on the support seat, and a sliding block is assembled in the sliding groove. The sliding block is fixedly connected to the lifting block. When the feeding rod pushes the terminal to move to the lower part of the soldering gun, the two clamping plates clamp and fix the terminal. At this time, the terminal is stably clamped directly below the soldering gun, realizing the accurate positioning of the terminal, which is beneficial to improving the accuracy of soldering.
[0008] The beneficial effects of the present utility model are as follows:
[0009] 1. In the present utility model, during the rotation of the driving plate, the multiple feeding rods on it push the materials. Each terminal will accurately move to the lower part of the soldering gun for soldering processing. After the processing is completed, it is pushed away from the welding position by the feeding rod, realizing the efficient feeding and discharging of the terminals, enabling the soldering gun to continuously solder multiple groups of terminals, which is beneficial to improving the soldering efficiency.
[0010] 2. When the feeding rod of the present utility model pushes the terminal to move below the soldering gun, the two groups of clamping plates clamp and fix the terminal. At this time, the terminal is stably clamped directly below the soldering gun, achieving precise positioning of the terminal, which is beneficial to improving the precision of soldering. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0012] Figure 1 is a first - perspective three - dimensional structure diagram;
[0013] Figure 2 is a three - dimensional structure diagram of the base;
[0014] Figure 3 is a three - dimensional structure diagram at the driving plate;
[0015] Figure 4 is a three - dimensional structure diagram at the clamping plate;
[0016] Figure 5 is a three - dimensional structure diagram at the soldering gun.
[0017] In the figure: 1, footrest; 2, base; 3, feeding groove; 4, plate groove; 5, clamping plate; 6, connecting plate; 7, roller; 8, triangular plate; 9, connecting groove; 10, connecting block; 11, placement groove; 12, electric telescopic rod; 13, push rod; 14, support seat; 15, hydraulic cylinder; 16, hydraulic rod; 17, lifting block; 18, soldering gun; 19, sliding groove; 20, slider; 21, groove; 22, support plate; 23, motor; 24, first rotating shaft; 25, second rotating shaft; 26, first gear; 27, second gear; 28, transmission chain; 29, first connecting rod; 30, second connecting rod; 31, driving plate; 32, feeding rod; 33, terminal; 34, connecting wire. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only some, not all, of the embodiments of the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.
[0019] Please refer to Figures 1-3 As shown in the figure, a soldering device for data cable production includes a footrest 1, on which a base 2 is installed. A feeding groove 3 is opened on the base 2, and multiple groups of terminals 33 are placed in the feeding groove 3. A connecting wire 34 is placed on the terminals 33. A groove 21 is opened on the base 2, and a feeding component is arranged on the base 2. The feeding component includes two support plates 22, and the support plates 22 are fixedly connected to the bottom side of the base 2. A motor 23 is installed on one of the support plates 22 through a machine base. A first rotating shaft 24 and a second rotating shaft 25 are respectively rotatably installed on the two support plates 22. A first gear 26 is fixedly sleeved on the first rotating shaft 24, and a second gear 27 is fixedly sleeved on the second rotating shaft 25. A transmission chain 28 is sleeved on the first gear 26 and the second gear 27. A first connecting rod 29 is fixedly sleeved on the first rotating shaft 24, and a second connecting rod 30 is fixedly sleeved on the second rotating shaft 25. The other ends of the first connecting rod 29 and the second connecting rod 30 are rotatably installed with a driving plate 31, and multiple feeding rods 32 are installed on the driving plate 31; during operation, in the process of soldering the connecting wire 34 and the terminals 33 by the existing soldering device, continuous soldering cannot be performed, resulting in low soldering efficiency. By clamping the end of the connecting wire 34 in the terminal 33, and then placing the terminal 33 in the feeding groove 3, when the motor 23 operates, it drives the first rotating shaft 24 to rotate. The first rotating shaft 24 drives the first gear 26 to rotate. The first gear 26 drives the transmission chain 28 to rotate. The transmission chain 28 drives the second gear 27 to rotate. The second gear 27 drives the second rotating shaft 25 to rotate, that is, the first rotating shaft 24 and the second rotating shaft 25 rotate synchronously. The first rotating shaft 24 and the second rotating shaft 25 drive the first connecting rod 29 and the second connecting rod 30 to rotate synchronously. The first connecting rod 29 and the second connecting rod 30 drive the driving plate 31 thereon to rotate. During the rotation of the driving plate 31, the multiple feeding rods 32 thereon push the materials. Every time the driving plate 31 rotates one circle, the feeding rods 32 thereon push the terminal 33 to slide one grid in the feeding groove 3. Each terminal 33 will accurately move to the lower part of the soldering gun 18 for soldering processing. After the processing is completed, it is pushed away from the welding position by the feeding rod 32, realizing the efficient feeding and discharging of the terminal 33, enabling the soldering gun 18 to continuously solder multiple groups of terminals 33, which is beneficial to improving the soldering efficiency.
[0020] Please refer to Figures 4-5As shown in the figure, clamping components are symmetrically installed on the base 2. The clamping components include a plate groove 4. A clamping plate 5 is assembled in the plate groove 4. A connecting plate 6 is installed on the clamping plate 5. A roller 7 is installed on the connecting plate 6. A triangular plate 8 is assembled in the plate groove 4. A connecting groove 9 is opened on the inner wall of the plate groove 4. A connecting block 10 is assembled in the connecting groove 9. The connecting block 10 is fixedly connected to the triangular plate 8. The triangular plate 8 is tangent to the roller 7. A placement groove 11 is opened on the base 2. An electric telescopic rod 12 is assembled in the placement groove 11. A push rod 13 is connected to the electric telescopic rod 12. The push rod 13 is fixedly connected to the side wall of the triangular plate 8. A support seat 14 is fixedly installed on the base 2. A hydraulic cylinder 15 is fixedly installed on the support seat 14. A hydraulic rod 16 is connected to the hydraulic cylinder 15. The bottom side of the hydraulic rod 16 is connected to a lifting block 17. A soldering gun 18 is installed on the lifting block 17. A sliding groove 19 is opened on the support seat 14. A sliding block 20 is assembled in the sliding groove 19. The sliding block 20 is fixedly connected to the lifting block 17; during operation, in the process of soldering the connecting wire 34 and the terminal 33 by the existing soldering device, due to the inability to accurately position the terminal 33, the accuracy of welding is poor. When the terminal 33 is pushed by the feeding rod 32 to move below the soldering gun 18, then the electric telescopic rod 12 operates, the push rod 13 extends from the electric telescopic rod 12, the push rod 13 pushes the triangular plate 8 to slide in the plate groove 4, the triangular plate 8 pushes the roller 7 to move, the roller 7 drives the connecting plate 6 to move horizontally, the connecting plate 6 drives the clamping plate 5 to move horizontally, so that the clamping plate 5 is attached to the side wall of the terminal 33, and the two clamping plates 5 clamp and fix the terminal 33. At this time, the terminal 33 is stably clamped directly below the soldering gun 18, realizing the accurate positioning of the terminal 33. Then the hydraulic cylinder 15 operates, the hydraulic rod 16 drives the lifting block 17 to move vertically downward, the lifting block 17 drives the soldering gun 18 to move vertically downward, and the soldering gun 18 performs soldering processing on the connecting wire 34 and the terminal 33, realizing the welding of the connecting wire 34 and the terminal 33. This structure can accurately position the terminal 33, which is beneficial to improving the accuracy of welding.
[0021] Working principle: the existing soldering device cannot continuously solder the connecting wire 34 and the terminal 33 during the soldering process, resulting in low welding efficiency. The end of the connecting wire 34 is stuck in the terminal 33, and then the terminal 33 is placed in the loading trough 3. The motor 23 is operated to drive the first rotating shaft 24 to rotate, the first rotating shaft 24 drives the first gear 26 to rotate, the first gear 26 drives the transmission chain 28 to rotate, the transmission chain 28 drives the second gear 27 to rotate, and the second gear 27 drives the second rotating shaft 25 to rotate, that is, the first rotating shaft 24 and the second rotating shaft 25 are rotated. 5 synchronously rotates, the first rotating shaft 24 and the second rotating shaft 25 drive the first connecting rod 29 and the second connecting rod 30 to rotate synchronously, the first connecting rod 29 and the second connecting rod 30 drive the driving plate 31 thereon to rotate, and the multiple groups of feeding rods 32 thereon push the material during the rotation of the driving plate 31. When the driving plate 31 rotates one circle, the feeding rods 32 thereon push the terminal 33 to slide one grid in the feeding trough 3, and each terminal 33 will be accurately moved to the bottom of the soldering gun 18 for soldering processing. After the processing is completed, it will be pushed away from the welding position by the feeding rods 32, so that efficient feeding of the terminal 33 is realized. The soldering gun 18 can continuously solder multiple groups of terminals 33, which is beneficial to improving the welding efficiency. In the process of soldering the connecting wire 34 and the terminal 33, the existing soldering device cannot accurately position the terminal 33, resulting in poor welding accuracy. When the terminal 33 is pushed to the bottom of the soldering gun 18 by the feeding rod 32, the electric telescopic rod 12 is operated, and the push rod 13 is extended from the electric telescopic rod 12. The push rod 13 pushes the triangular plate 8 to slide in the plate groove 4, and the triangular plate 8 pushes the roller 7 to move. The roller 7 drives the connecting plate 6 to move horizontally, and the connecting plate 6 drives The clamping plate 5 moves horizontally so that the clamping plate 5 is in contact with the side wall of the terminal 33. The two groups of clamping plates 5 clamp and fix the terminal 33. At this time, the terminal 33 is stably clamped directly below the soldering gun 18, thereby achieving accurate positioning of the terminal 33. After that, the hydraulic cylinder 15 operates, and the hydraulic rod 16 drives the lifting block 17 to move vertically downward. The lifting block 17 drives the soldering gun 18 to move vertically downward. The soldering gun 18 performs soldering on the connecting wire 34 and the terminal 33, thereby achieving welding of the connecting wire 34 and the terminal 33. This structure can accurately position the terminal 33, which is beneficial to improving the accuracy of welding.
[0022] The above shows and describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only for explaining the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model may have various changes and improvements, and these changes and improvements fall within the scope of the utility model to be protected.
Claims
1. A data line production soldering device, characterized in that: The invention comprises a tripod (1), wherein a base (2) is mounted on the tripod (1), a loading groove (3) is provided on the base (2), a plurality of groups of terminals (33) are placed in the loading groove (3), a connecting line (34) is placed on the terminal (33), a groove (21) is provided on the base (2), a loading assembly is provided on the base (2), and the loading assembly comprises two groups of support plates (22), the support plates (22) are fixedly connected to the bottom side of the base (2), a motor (23) is mounted on one of the support plates (22) through a machine base, and first rotating shafts (23) are rotatably mounted on the two groups of support plates (22). 4) and a second rotating shaft (25), the first rotating shaft (24) being fixedly provided with a first gear (26), the second rotating shaft (25) being fixedly provided with a second gear (27), a transmission chain (28) being provided on the first gear (26) and the second gear (27), the first rotating shaft (24) being fixedly provided with a first connecting rod (29), the second rotating shaft (25) being fixedly provided with a second connecting rod (30), the other ends of the first connecting rod (29) and the second connecting rod (30) being rotatably mounted with a driving plate (31), and the driving plate (31) being mounted with a plurality of groups of feeding rods (32).
2. A data line soldering device according to claim 1, characterized in that: A clamping assembly is symmetrically mounted on the base (2), the clamping assembly comprising a plate groove (4), a clamping plate (5) is mounted in the plate groove (4), a connecting plate (6) is mounted on the clamping plate (5), and a roller (7) is mounted on the connecting plate (6).
3. A data line soldering device according to claim 2, characterized in that: A triangular plate (8) is installed in the plate groove (4), a connecting groove (9) is provided on the inner wall of the plate groove (4), a connecting block (10) is installed in the connecting groove (9), and the connecting block (10) is fixedly connected to the triangular plate (8).
4. A data line soldering device according to claim 3, characterized in that: The triangular plate (8) is tangent to the roller (7); a placement groove (11) is provided on the base (2); an electric telescopic rod (12) is installed in the placement groove (11); a push rod (13) is connected to the electric telescopic rod (12); and the push rod (13) is fixedly connected to the side wall of the triangular plate (8).
5. The data line soldering device according to claim 1, characterized in that: A support seat (14) is fixedly mounted on the base (2), a hydraulic cylinder (15) is fixedly mounted on the support seat (14), a hydraulic rod (16) is connected to the hydraulic cylinder (15), a lifting block (17) is connected to the bottom side of the hydraulic rod (16), and a soldering gun (18) is mounted on the lifting block (17).
6. The data line soldering device according to claim 5, characterized in that: The support seat (14) is provided with a slide groove (19), a slide block (20) is installed in the slide groove (19), and the slide block (20) is fixedly connected to the lifting block (17).
Citation Information
Patent Citations
Tin soldering device for mobile phone data line production
CN116921797A