A soldering machine for power strip production

By using separate components and automated cleaning devices, the problem of inaccurate positioning caused by the tight arrangement of the power strip housings has been solved, achieving precise welding and self-cleaning, and improving welding quality and equipment adaptability.

CN122322609APending Publication Date: 2026-07-03SHENZHEN JIAYI PRECISION AUTOMATION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN JIAYI PRECISION AUTOMATION TECH CO LTD
Filing Date
2026-05-28
Publication Date
2026-07-03

AI Technical Summary

Technical Problem

Existing power strip soldering equipment suffers from inaccurate positioning due to the tightly packed sockets and lack of spacing control, which can easily lead to incomplete or missing solder joints and affect the quality of the soldering.

Method used

The system employs a separator assembly consisting of cylinder 2, baffle, hinge rod, hinge block, slide rod, slide groove, sliding frame, and partition to automatically block the current socket housing and push away subsequent components, forming a stable spacing. The position of the limiting plate is adjusted by adjusting rod, bevel gear, and rotary wheel to accommodate socket housings of different widths. The piston cylinder, piston rod, and cleaning block work together to achieve self-cleaning of the soldering iron tip.

Benefits of technology

Ensure precise alignment of the soldering iron, improve the stability of soldering quality, adapt to different shell widths, achieve automated cleaning, and avoid cold solder joints or missing solder joints caused by positioning misalignment.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the field of automatic assembly technology for electronic components, and particularly relates to a soldering machine for power strip production. It includes a base, controller, bracket, electric slide rails, wire feeders, a discharge port, vision sensors, and an electric slider. The controller is mounted on the upper right side of the base, the bracket is mounted on the upper rear side of the base, two electric slide rails are mounted on the upper part of the bracket, two wire feeders are mounted on the upper rear side of the base with discharge ports, two vision sensors are mounted on the upper front side of the bracket, and an electric slider slides along the electric slide rails. Through the use of cylinder two, baffle, hinge rod, hinge block, slide rod, slide groove one, slide groove two, sliding frame, and partition in the separation assembly, the machine can automatically block the current component and push away the subsequent component when the power strip shell reaches the soldering station, forming a stable spacing. This effectively avoids positioning offset caused by tight contact between the power strip shells and ensures precise alignment of the soldering iron tip.
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Description

Technical Field

[0001] This invention belongs to the field of automatic assembly technology of electronic components, and particularly relates to a soldering machine for the production of power strips. Background Technology

[0002] Power strips are widely used electrical connection devices in daily electricity use. Their core structure includes a plastic shell and metal terminal assemblies installed inside the shell. During the production process of power strips, the terminal assemblies must be firmly fixed to the shell of the power strip using a soldering process to ensure safe and reliable electrical connections.

[0003] While existing power strip soldering equipment can achieve continuous conveying and soldering of power strip housings, the housings are usually arranged closely together on the conveyor belt, lacking effective spacing control. This results in inaccurate positioning of the housings when they reach the soldering station. Once the position deviates, the solder head cannot be accurately aligned with the solder joint, which can easily lead to cold solder joints or missing solder joints, seriously affecting the soldering quality.

[0004] Therefore, there is a particular need for a soldering machine for producing power strips to solve the above problems. Summary of the Invention

[0005] In order to overcome the shortcomings of existing power strip soldering equipment, which suffers from inaccurate positioning due to the tight arrangement of the power strip housings and lack of spacing control, easily leading to poor soldering or missing soldering and affecting the soldering quality, this invention provides a soldering machine for power strip production.

[0006] This invention is achieved through the following technical means: A soldering machine for producing power strips includes a base, a conveying assembly, a controller, a bracket, an electric slide rail, a wire feeder, a discharge port, a vision sensor, an electric slider, a cylinder, a soldering iron, and a separating assembly. The controller is installed on the upper right side of the base, and the bracket is installed on the upper rear side of the base. Two electric slide rails are installed on the upper part of the bracket. Two wire feeders are installed on the upper rear side of the base, and each wire feeder has a discharge port. Two vision sensors are installed on the upper front side of the bracket. An electric slider is slidably mounted on the electric slide rail, and a cylinder is mounted on the electric slider. A soldering iron is installed at the end of the piston rod of the cylinder. The electric slide rail, the vision sensor, the electric slider, the cylinder, and the soldering iron are all electrically connected to the controller.

[0007] Furthermore, the discharge port is fixedly connected to the soldering iron on the same side.

[0008] Furthermore, a conveying assembly is provided on the upper part of the machine base. The conveying assembly includes a drive motor, conveying rollers, a conveyor belt, and support blocks. Two drive motors are installed on the front side of the machine base. Four conveying rollers are rotatably arranged on the upper part of the machine base, distributed from left to right. A conveyor belt is rotatably arranged between two longitudinally aligned conveying rollers. Multiple support blocks are evenly distributed on the surface of the conveyor belt.

[0009] Furthermore, the support frame is equipped with a partition assembly, which includes a second cylinder, a baffle, a sliding frame, a partition, a hinge rod, a hinge block, and a slide rod. The second cylinder is installed on the upper part of the support frame and is electrically connected to the controller. A baffle is installed at the end of the piston rod of the second cylinder. The lower surfaces of the left and right sides of the baffle are respectively in close contact with the upper surfaces of the two conveyor belts. Two sliding frames are slidably installed on the upper part of the machine base. Two partitions are fixed to the sides of the two sliding frames that are far apart from each other. The bottom surface of the partition is in contact with the upper surface of the corresponding conveyor belt. A guide slope is provided on the front side of the partition. A hinge rod is rotatably installed on the front side of the upper part of the baffle. A hinge block is rotatably installed at the front end of the hinge rod. A slide rod is fixed to the hinge block. A first sliding groove is opened on the upper part of the sliding frame. The slide rod slides into the two first sliding grooves. A second sliding groove is opened on the rear side of the upper part of the machine base. The slide rod slides into the second sliding groove.

[0010] Furthermore, the slide bar is initially located at the front end of slide groove two and two slide grooves one.

[0011] Furthermore, it also includes a limit plate, an adjusting rod, a bevel gear one, a rotating wheel, and a bevel gear two. Two limit plates are slidably arranged side by side on the upper part of the machine base. The bottom surface of the limit plate is in contact with the top surface of the support block on the same side. Two adjusting rods are rotatably arranged on the front side of the upper part of the machine base. The adjusting rods pass horizontally through the corresponding limit plates and form a threaded engagement with the limit plates. The ends of the two adjusting rods that are close to each other are fixedly connected to bevel gear one. Two rotating wheels are rotatably arranged on the front side of the upper part of the machine base. The rear end of the rotating wheel is fixedly connected to bevel gear two. Bevel gear one meshes with the corresponding bevel gear two.

[0012] Furthermore, it also includes a piston cylinder, piston rod one, piston block one, connecting plate, piston rod two, piston block two, fixing frame, and cleaning block. Two piston cylinders are fixedly connected to the electric slider. Piston rod one is slidably arranged in the vertical section of the piston cylinder. Piston block one is fixedly arranged at the upper end of piston rod one. Piston block one forms a tight sliding fit with the inner wall of the piston cylinder. A connecting plate is fixedly connected between the lower ends of the two piston rods on the same side. The connecting plate is fixedly connected to the baffle. Piston rod two is slidably arranged in the horizontal section of the piston cylinder. Piston block two is fixedly arranged at the rear end of piston rod two. Piston block two forms a tight sliding fit with the inner wall of the piston cylinder. Piston block one is initially located at the lower end of the piston cylinder. Piston block two is initially located at the front end of the piston cylinder. A fixing frame is fixedly connected between the front ends of the two piston rod two on the same side. A cleaning block is embedded in the fixing frame.

[0013] Furthermore, a notch is provided on the mounting bracket, and the top surface of the cleaning block is higher than the notch.

[0014] Furthermore, it also includes guide rails and guide blocks. Two guide rails are installed on the top of the bracket, and a guide block is installed on the upper part of the cylinder. The guide block and the guide rail on the same side form a sliding fit.

[0015] Furthermore, it also includes soft pads, with two soft pads fixedly installed on the sliding frame.

[0016] The beneficial effects are as follows: 1. By using cylinder 2, baffle, hinge rod, hinge block, slide rod, slide groove 1, slide groove 2, slide frame and partition in the partition component, the current component can be automatically blocked and the subsequent component can be pushed away when the socket shell reaches the soldering station, forming a stable gap, effectively avoiding the positioning offset caused by the tight contact of the socket shell, and ensuring the precise alignment of the soldering iron tip.

[0017] 2. By setting the adjusting rod, bevel gear one, rotating wheel and bevel gear two, the position of the limiting plate can be adjusted so that the limiting plate can be adapted to the socket shell of different widths, thereby improving the versatility and adaptability of the equipment.

[0018] 3. By setting up a piston cylinder, piston rod one, piston block one, connecting plate, piston rod two, piston block two, fixing frame and cleaning block, the air pressure change generated by the lifting and lowering movement of the baffle can drive the cleaning block to automatically contact or detach from the soldering iron tip, realizing the periodic self-cleaning of the soldering iron tip and ensuring the stability of welding quality. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0020] Figure 2 This is a three-dimensional structural diagram of the components of the present invention, such as the conveyor roller, conveyor belt, and support block.

[0021] Figure 3 This is a partial cross-sectional view of the base component of the present invention.

[0022] Figure 4 This is a three-dimensional structural diagram of the support, wire feeder, and vision recognition device of the present invention.

[0023] Figure 5 This is a three-dimensional structural diagram of the components of the present invention, including the electric slide rail, wire feeder, and discharge port.

[0024] Figure 6 This is a three-dimensional structural diagram of the components of the present invention, including cylinder one, soldering iron, and cylinder two.

[0025] Figure 7 This is a three-dimensional structural diagram of the sliding frame, partition, and cushion components of the present invention.

[0026] Figure 8 This is a three-dimensional structural diagram of the baffle, slide bar, and slide groove components of the present invention.

[0027] Figure 9 This is a three-dimensional structural diagram of the piston cylinder, piston rod, and connecting plate of the present invention.

[0028] Figure 10 This is a three-dimensional structural diagram of the piston rod, fixing frame, and cleaning block components of the present invention.

[0029] Figure 11 This is a partial cross-sectional view of the piston cylinder component of the present invention.

[0030] Figure 12 This is a three-dimensional structural diagram of the bracket and hinge rod components of the present invention.

[0031] Figure 13 For the present invention Figure 12 Enlarged diagram of point A in the middle.

[0032] Component names and serial numbers in the diagram: 1. Machine base, 2. Drive motor, 21. Conveyor roller, 22. Conveyor belt, 23. Support block, 3. Limiting plate, 31. Adjusting rod, 32. Bevel gear one, 33. Rotary wheel, 34. Bevel gear two, 4. Controller, 5. Bracket, 51. Electric slide rail, 52. Wire feeder, 53. Discharge port, 54. Vision recognition device, 55. Electric slider, 56. Guide rail, 57. Cylinder one 58. Soldering iron; 59. Cylinder II; 510. Baffle; 511. Guide block; 6. Piston cylinder; 61. Piston rod I; 611. Piston block I; 62. Connecting plate; 63. Piston rod II; 631. Piston block II; 64. Fixing bracket; 65. Cleaning block; 7. Sliding bracket; 71. Partition; 72. Soft pad; 73. Hinge rod; 74. Hinge block; 75. Slide rod; 76. Slide groove I; 77. Slide groove II. Detailed Implementation

[0033] Example: A soldering machine for producing power strips, such as... Figures 1-13 As shown, the assembly includes a base 1, a conveying component, a controller 4, a bracket 5, an electric slide rail 51, a wire feeder 52, a discharge port 53, a vision recognition device 54, an electric slider 55, a cylinder 57, a soldering iron 58, and a separating component. The controller 4, a programmable logic controller (PLC) of model Huichuan Easy, is bolted to the upper right side of the base 1. The 521-24T4DT has a bracket 5 bolted to the upper rear side of the base 1. Two electric slide rails 51 are bolted to the upper part of the bracket 5. Two wire feeders 52 are bolted to the upper rear side of the base 1. The wire feeders 52 are equipped with a discharge port 53. Two vision recognition devices 54 are bolted to the upper front side of the bracket 5. An electric slider 55 is slidably mounted on the electric slide rail 51. A cylinder 57 is bolted to the electric slider 55. The piston rod of the cylinder 57 is bolted to the end of the cylinder 58. The discharge port 53 is fixedly connected to the soldering iron 58 on the same side and can supply solder wire to the soldering iron 58. The electric slide rail 51, vision recognition device 54, electric slider 55, cylinder 57 and soldering iron 58 are all electrically connected to the controller 4.

[0034] like Figures 1-4As shown, a conveying assembly is provided on the upper part of the base 1. The conveying assembly includes a drive motor 2, a conveying roller 21, a conveyor belt 22, and a support block 23. Two drive motors 2 are bolted to the front side of the base 1. Four conveying rollers 21 are rotatably arranged on the upper part of the base 1, and a conveyor belt 22 is rotatably arranged between two longitudinally aligned conveying rollers 21. Multiple support blocks 23 are evenly distributed on the surface of the conveyor belt 22.

[0035] like Figures 5-9 , Figure 12 and Figure 13 As shown, the support 5 is equipped with a partition assembly, which includes a second cylinder 59, a baffle 510, a sliding frame 7, a partition 71, a hinge rod 73, a hinge block 74, and a slide rod 75. The second cylinder 59 is bolted to the upper part of the support 5. The second cylinder 59 is electrically connected to the controller 4. The piston rod of the second cylinder 59 is bolted to the baffle 510. Initially, the piston rod of the second cylinder 59 is in the extended state. The lower surfaces of the left and right sides of the baffle 510 are respectively in close contact with the upper surfaces of the two conveyor belts 22 to prevent the connector housing from moving forward. Two sliding frames 7 are slidably arranged on the upper part of the base 1. The two sliding frames 7 are connected to each other. Two partitions 71 are fixedly connected to each other on opposite sides. The bottom surface of the partition 71 is attached to the upper surface of the corresponding conveyor belt 22. The front side of the partition 71 is provided with a guide slope, which can push it open when it contacts the housing of the plug. A hinge rod 73 is rotatably provided on the front side of the upper part of the baffle 510. A hinge block 74 is rotatably provided at the front end of the hinge rod 73. A slide rod 75 is fixedly connected to the hinge block 74. A slide groove 76 is provided on the upper part of the sliding frame 7. The slide rod 75 slides into the two slide grooves 76. A slide groove 77 is provided on the rear side of the upper part of the machine base 1. The slide rod 75 slides into the slide groove 77. The slide rod 75 is initially located at the front end of the slide groove 77 and the two slide grooves 76.

[0036] like Figures 1-3 As shown, it also includes a limiting plate 3, an adjusting rod 31, a first bevel gear 32, a rotating wheel 33, and a second bevel gear 34. Two limiting plates 3 are slidably arranged side by side on the upper part of the base 1. The bottom surface of the limiting plate 3 is in contact with the top surface of the support block 23 on the same side. Two adjusting rods 31 are rotatably arranged on the front side of the upper part of the base 1. The adjusting rods 31 pass horizontally through the corresponding limiting plate 3 and form a threaded engagement with the limiting plate 3. The ends of the two adjusting rods 31 that are close to each other are fixedly connected to the first bevel gear 32. Two rotating wheels 33 are rotatably arranged on the front side of the upper part of the base 1. The rear end of the rotating wheel 33 is fixedly connected to the second bevel gear 34. The first bevel gear 32 meshes with the corresponding second bevel gear 34.

[0037] like Figure 5 , Figure 6 , Figure 7 , Figure 9 , Figure 10 and Figure 11As shown, it also includes a piston cylinder 6, a piston rod 61, a piston block 611, a connecting plate 62, a piston rod 63, a piston block 631, a fixing frame 64, and a cleaning block 65. Two piston cylinders 6 are fixedly connected to the electric slider 55. A piston rod 61 is slidably arranged in the vertical section of the piston cylinder 6. A piston block 611 is fixedly arranged at the upper end of the piston rod 61. The piston block 611 forms a tight sliding fit with the inner wall of the piston cylinder 6. A connecting plate 62 is fixedly connected between the lower ends of the two piston rods 61 on the same side. The connecting plate 62 is fixedly connected to the baffle 510. A piston rod is slidably arranged in the horizontal section of the piston cylinder 6. Piston block 631 is fixedly provided at the rear end of piston rod 63. Piston block 631 forms a tight sliding fit with the inner wall of piston cylinder 6. Piston block 611 is initially located at the lower end of piston cylinder 6, and piston block 631 is initially located at the front end of piston cylinder 6. A fixing bracket 64 is fixedly connected between the front ends of the two piston rods 63 on the same side. A cleaning block 65 is embedded in the fixing bracket 64. A notch is reserved on the fixing bracket 64 so that the soldering tip of the power soldering iron 58 can enter. The top surface of the cleaning block 65 is higher than the notch, so that when the soldering tip of the power soldering iron 58 enters through the notch, it can contact the surface of the cleaning block 65 with a certain pressure.

[0038] like Figure 5 , Figure 6 , Figure 7 and Figure 10 As shown, it also includes guide rails 56 and guide blocks 511. Two guide rails 56 are bolted to the top of the bracket 5, and guide blocks 511 are bolted to the upper part of cylinder 57. The guide blocks 511 and the guide rails 56 on the same side form a sliding fit, providing smooth guidance for the sliding of cylinder 57.

[0039] like Figure 7 and Figure 8 As shown, it also includes a soft pad 72. Two soft pads 72 are fixedly provided on the sliding frame 7 to buffer the impact when the power strip housing comes into contact with the sliding frame 7 and avoid damage to the power strip housing.

[0040] Before use, the operator rotates the rotating wheel 33, causing the bevel gear 2 34 to drive the bevel gear 1 32 and the adjusting rod 31 to rotate. The adjusting rod 31 then drives the limiting plate 3 to move inward to a position that matches the length of the power strip housing. After adjustment, the controller 4 starts the cylinder 2 59, controlling the piston rod of the cylinder 2 59 to retract, causing the baffle 510 to rise. The baffle 510 pulls the hinge rod 73 to rotate, and the hinge rod 73 pulls the hinge block 74 backward, causing the slide rod 75 to slide backward along the slide groove 2 77 and the two slide grooves 1 76. During the sliding process, the slide rod 75 pulls the two sliding frames 7 to move inward, and the partition 71 moves inward and separates from the upper surface of the conveyor belt 22. Then, the drive motor 2 is started, driving the two longitudinal conveyor rollers 21 to pull the conveyor belt 22 to rotate, conveying the power strip housing backward. During conveying, support block 23 supports the bottom of the connector housing, while limit plate 3 limits the connector housing from the side, keeping the connector housing conveyed in a straight line. When the first connector housing reaches the soldering station, vision recognition device 54 detects that the connector housing has arrived in place and transmits the arrival signal to controller 4. Controller 4 immediately controls the piston rod of cylinder 2 59 to extend, driving baffle 510 to descend, so that baffle 510 blocks the first connector housing. At the same time, baffle 510 pushes hinge rod 73 to rotate in the opposite direction. Hinges rod 73 pushes hinge block 74 forward, causing slide rod 75 to slide forward along slide groove 2 77 and two slide grooves 1 76. Slide rod 75 pushes two sliding frames 7 to move outward. Partition 71 moves outward synchronously and re-contacts the upper surface of conveyor belt 22. When partition 71 moves outward, the separation is in place. The controller 4 then issues a soldering command, activating the electric slide rail 51. The electric slider 55 drives the cylinder 57 to slide, aligning the soldering iron 58 with the terminal solder joint inside the socket. The piston rod of cylinder 57 extends, lowering the soldering iron 58 so that its tip enters the corresponding solder joint position inside the socket. The wire feeder 52 then feeds solder wire through the outlet 53 to the soldering tip of the soldering iron 58, enabling it to perform the soldering operation. After soldering is complete, the piston rod of cylinder 57 retracts. The process is repeated, causing the soldering iron 58 to rise. The electric slider 55 continues to move the cylinder 57 and the soldering iron 58 to the next solder joint position, repeating the above soldering action. After completing the specified number of solder joints, the soldering iron 58 rises to its reset position, the piston rod of the cylinder 59 retracts, and the baffle 510 rises. The soldered socket shell is then conveyed backward by the conveyor belt 22. When the next socket shell reaches the soldering station, the piston rod of the cylinder 59 extends again, causing the baffle 510 to descend, realizing the next round of separation. When the baffle 510 rises, it drives the piston rod 61 to rise synchronously through the connecting plate 62. The piston block 611 slides upward along the vertical section of the piston cylinder 6, and the resulting negative pressure pulls the piston block 631 to slide backward along the horizontal section of the piston cylinder 6.Piston rod 63 then moves the fixing bracket 64 backward, causing the soldering tip of the soldering iron 58 to passively contact the cleaning block 65 for self-cleaning. When the baffle 510 descends, piston rod 61 moves piston block 611 downward, generating positive pressure that pushes piston block 631 forward. This causes piston rod 63 to move the fixing bracket 64 forward to reset, disengaging the cleaning block 65 from the soldering tip of the soldering iron 58.

Claims

1. A soldering machine for power strip production, characterized by, The machine includes a base (1), a conveying assembly, a controller (4), a bracket (5), an electric slide rail (51), a wire feeder (52), a discharge port (53), a vision recognition device (54), an electric slider (55), a cylinder (57), a soldering iron (58), and a separator assembly. The controller (4) is installed on the upper right side of the base (1), which drives the motor (2) to run, causing the two conveying rollers (21) to pull the conveyor belt (22) to rotate. The bracket (5) is installed on the upper rear side of the base (1), and two electric slide rails (51) are installed on the upper part of the bracket (5). Two wire feeders (52) are installed on the upper rear side of the base (1), and the wire feeders (52) are equipped with discharge ports (53). The bracket (5) Two vision recognition devices (54) are installed on the upper front side. An electric slider (55) is slidably set on the electric slide rail (51). A cylinder (57) is installed on the electric slider (55). A soldering iron (58) is installed at the end of the piston rod of the cylinder (57). The electric slide rail (51), vision recognition device (54), electric slider (55), cylinder (57) and soldering iron (58) are all electrically connected to the controller (4). The piston rod of cylinder (59) retracts, the baffle (510) rises, and the hinge rod (73) and hinge block (74) pull the slide rod (75) to slide backward along the slide groove (77) and the two slide grooves (76), thereby pushing the two sliding frames (7) to move inward synchronously.

2. The soldering machine for manufacturing a power strip according to claim 1, wherein The discharge port (53) is fixedly connected to the soldering iron (58) on the same side.

3. A soldering machine for producing power strips according to claim 2, characterized in that, The upper part of the base (1) is provided with a conveying assembly, which includes a drive motor (2), a conveying roller (21), a conveyor belt (22) and a support block (23). Two drive motors (2) are installed on the front side of the base (1). Four conveying rollers (21) are rotatably arranged on the upper part of the base (1) and distributed on the left and right. A conveyor belt (22) is rotatably arranged between two longitudinally aligned conveying rollers (21). Multiple support blocks (23) are evenly distributed on the surface of the conveyor belt (22).

4. A soldering machine for producing power strips according to claim 3, characterized in that, The bracket (5) is provided with a partition assembly, which includes a second cylinder (59), a baffle (510), a sliding frame (7), a partition (71), a hinge rod (73), a hinge block (74), and a slide rod (75). The second cylinder (59) is installed on the upper part of the bracket (5). The second cylinder (59) is electrically connected to the controller (4). The piston rod end of the second cylinder (59) is equipped with a baffle (510). The lower surfaces of the left and right sides of the baffle (510) are respectively in close contact with the upper surfaces of the two conveyor belts (22). Two sliding frames (7) are slidably arranged on the upper part of the machine base (1). Two partitions (71) are fixedly connected to each other on the opposite side. The bottom surface of the partition (71) is attached to the upper surface of the corresponding conveyor belt (22). A guide slope is provided on the front side of the partition (71). A hinge rod (73) is rotatably provided on the front side of the upper part of the baffle (510). A hinge block (74) is rotatably provided at the front end of the hinge rod (73). A slide rod (75) is fixedly connected on the hinge block (74). A slide groove (76) is opened on the upper part of the sliding frame (7). The slide rod (75) slides into the two slide grooves (76). A slide groove (77) is opened on the rear side of the upper part of the machine base (1). The slide rod (75) slides into the slide groove (77).

5. A soldering machine for producing power strips according to claim 4, characterized in that, The slide bar (75) is initially located at the front end of the slide groove 2 (77) and the two slide grooves 1 (76).

6. A soldering machine for producing power strips according to claim 5, characterized in that, It also includes a limit plate (3), an adjusting rod (31), a bevel gear one (32), a rotating wheel (33) and a bevel gear two (34). Two limit plates (3) are slidably arranged side by side on the upper part of the machine base (1). The bottom surface of the limit plate (3) is in contact with the top surface of the support block (23) on the same side. Two adjusting rods (31) are rotatably arranged on the front side of the upper part of the machine base (1). The adjusting rods (31) pass horizontally through the corresponding limit plate (3) and form a threaded fit with the limit plate (3). The ends of the two adjusting rods (31) that are close to each other are fixedly connected to bevel gear one (32). Two rotating wheels (33) are rotatably arranged on the front side of the upper part of the machine base (1). The rear end of the rotating wheel (33) is fixedly connected to bevel gear two (34). Bevel gear one (32) meshes with the corresponding bevel gear two (34).

7. A soldering machine for producing power strips according to claim 6, characterized in that, It also includes a piston cylinder (6), a piston rod (61), a piston block (611), a connecting plate (62), a piston rod (63), a piston block (631), a fixing frame (64), and a cleaning block (65). Two piston cylinders (6) are fixedly connected to the electric slider (55). A piston rod (61) is slidably arranged in the vertical section of the piston cylinder (6). A piston block (611) is fixedly arranged at the upper end of the piston rod (61). The piston block (611) forms a tight sliding fit with the inner wall of the piston cylinder (6). A connecting plate (62) is fixedly connected between the lower ends of the two piston rods (61) on the same side. 2) The connecting plate (62) is fixedly connected to the baffle (510). A piston rod (63) is slidably arranged in the horizontal section of the piston cylinder (6). A piston block (631) is fixedly arranged at the rear end of the piston rod (63). The piston block (631) forms a tight sliding fit with the inner wall of the piston cylinder (6). The piston block (611) is initially located at the lower end of the piston cylinder (6). The piston block (631) is initially located at the front end of the piston cylinder (6). A fixing frame (64) is fixedly connected between the front ends of the two piston rods (63) on the same side. A cleaning block (65) is embedded in the fixing frame (64).

8. A soldering machine for producing power strips according to claim 7, characterized in that, A notch is provided on the fixing frame (64), and the top surface of the cleaning block (65) is higher than the notch.

9. A soldering machine for producing power strips according to claim 8, characterized in that, It also includes guide rails (56) and guide blocks (511). Two guide rails (56) are installed on the top of the bracket (5), and a guide block (511) is installed on the upper part of cylinder one (57). The guide block (511) and the guide rail (56) on the same side form a sliding fit.

10. A soldering machine for producing power strips according to claim 9, characterized in that, It also includes a soft pad (72), and two soft pads (72) are fixedly provided on the sliding frame (7).