Metallic wire processing system and processing method

By designing a cleaning device that uses a transmission wheel to drive a sponge ring for scrubbing, a horizontal pipe for water supply, and a spiral groove shaft for scraping, the problem of poor cleaning effect in existing technologies has been solved. This device achieves efficient dust removal, ensures the surface of gold and silver wires is clean, and improves cleaning efficiency and quality.

CN121869749APending Publication Date: 2026-04-17胡向远
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
胡向远
Filing Date
2023-12-21
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the current gold and silver wire production process, the cleaning equipment has poor cleaning effect and is difficult to effectively remove dust, which affects the quality of the gold and silver wire.

Method used

A cleaning device was designed, comprising a drive wheel that rotates symmetrically on both sides and a sponge ring. The drive wheel drives the sponge ring to rotate and clamp and scrub, while the device uses a horizontal pipe for water supply and a spiral groove shaft for scraping. Combined with a water tank and a mesh filter, a multi-layer cleaning effect is achieved.

Benefits of technology

It improves the cleaning effect of gold and silver wire, effectively removes dust, ensures the surface of gold and silver wire is clean, adapts to different dust levels, and improves cleaning efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of metallic yarn machining, in particular to a metallic yarn machining system and method.The metallic yarn machining system comprises a cleaning device used for cleaning metallic yarns, the cleaning device comprises a frame with transmission wheels symmetrically and rotationally arranged on the two sides, sleeves slidably arranged in the two transmission wheels through keys and annular plates fixed to the inner ends of the two sleeves correspondingly; sponge rings are arranged on the inner side faces of the two annular plates, springs are arranged between the transmission wheels and the corresponding annular plates, and the two sponge rings abut against each other. Transverse pipes are arranged in the two sleeves, and water outlets are formed in the lower ends of the middles of the transverse pipes. A water supply pipe is fixed to the middle of the transverse pipe and extends backwards to penetrate through the frame. A sliding frame is connected to the frame, and a block wheel is rotationally arranged at the lower end of the sliding frame and located above the rear portion of the transverse pipe. The gold and silver wire cleaning device can clean gold and silver wires with a good effect.
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Description

Technical Field

[0001] This invention relates to the field of gold and silver wire processing, and in particular to a gold and silver wire processing system and method. Background Technology

[0002] In the existing gold and silver wire production and processing technology, after a series of treatments, the gold and silver wires are moved and processed by the rotation and pulling of the conveyor rollers. After a long period of operation, a certain amount of dust and static electricity will accumulate in the warehouse where the production line is located. The dust is easy to adhere to the gold and silver wires, so they need to be cleaned before they are collected and stored.

[0003] Most existing cleaning devices use a fixed sponge, allowing the gold and silver threads to move and be wiped clean, resulting in poor cleaning effect. Summary of the Invention

[0004] The purpose of this invention is to provide a gold and silver wire processing system and method that can effectively clean gold and silver wires.

[0005] The objective of this invention is achieved through the following technical solution:

[0006] A gold and silver wire processing system includes a cleaning device for cleaning gold and silver wire. The cleaning device includes a frame with drive wheels rotating symmetrically on both sides. Each drive wheel has a sleeve that slides through a key, and ring plates are respectively fixed to the inner ends of the two sleeves. The inner sides of the two ring plates are provided with sponge rings. A spring is provided between the drive wheels and the corresponding ring plates to make the two sponge rings press against each other.

[0007] The two sleeves are equipped with horizontal pipes, and the lower end of the middle of the horizontal pipes is equipped with a water outlet.

[0008] A water supply pipe is fixed in the middle of the horizontal tube, and the water supply pipe extends backward through the frame.

[0009] A carriage is connected to the frame, and a stop wheel rotates at the lower end of the carriage. The stop wheel is located above and behind the horizontal tube.

[0010] An adjusting screw is rotatably mounted on the carriage, and the adjusting screw is threadedly connected to the frame.

[0011] The frame has a rotating helical groove shaft in the middle, which is located in the lower part between two sponge rings.

[0012] An expanding pipe I is slidably mounted on the water supply pipe, and an expanding pipe II is slidably mounted on the expanding pipe I. Both expanding pipes I and II are threadedly connected to control screws, and both control screws are rotatably connected to the frame.

[0013] The cleaning device also includes a water tank, with support plates fixed on both sides of the water tank. A square rod rotates between the two support plates, and multiple frames slide through the square rod. Each frame has a tightening screw rotating on it, and the multiple tightening screws tighten the square rod. A worm rotates on one of the support plates, and the worm meshes with the worm wheel at the end of the square rod for transmission.

[0014] The water tank is inclined with a mesh plate, and a frame is slidably fitted on the water tank. A vertical screw is threadedly connected to the frame.

[0015] The processing method of the gold and silver wire processing system includes the following steps:

[0016] S1. Move the gold and silver wires from front to back through the two sponge rings to wipe and clean the gold and silver wires.

[0017] S2. Simultaneously drive the two sleeves to rotate, which in turn drives the two sponge rings to rotate, forming a situation where the two sponge rings clamp and scrub the gold and silver wires while also rotating and scrubbing them.

[0018] S3. By supplying clean water to the horizontal pipe, the clean water flows out through the outlet at the lower end of the horizontal pipe, moistening the two sponge rings and further improving the cleaning effect of the two sponge rings on the gold and silver wires. Attached Figure Description

[0019] Figure 1 and Figure 2 This is a schematic diagram of the cleaning device;

[0020] Figure 3 This is a structural diagram of the water tank;

[0021] Figure 4 This is a structural diagram of the framework;

[0022] Figure 5 This is a partial structural diagram of the cleaning device;

[0023] Figure 6 yes Figure 5 A partial structural diagram;

[0024] Figure 7 This is a structural diagram of the framework;

[0025] Figure 8 This is a schematic diagram of the sponge ring structure;

[0026] Figure 9 This is a structural diagram of the guard wheel;

[0027] Figure 10 This is a schematic diagram of the spiral groove shaft;

[0028] Figure 11This is a schematic diagram of the structure of expansion tube I and expansion tube II;

[0029] Figure 12 This is a cross-sectional structural diagram showing the gold and silver wires being cleaned.

[0030] In the picture:

[0031] Water tank 101; mesh panel 102; support plate 103; frame 104; vertical screw 105; square rod 106; worm gear 107;

[0032] Frame 201; Horizontal pipe 202; Outlet 203; Water supply pipe 204; Tightening screw 205;

[0033] Drive wheel 301; Sleeve 302; Ring plate 303; Sponge ring 304; Spring 305;

[0034] Carriage 401; Guard wheel 402; Adjusting screw 403;

[0035] Spiral groove shaft 501; Increasing diameter tube I 502; Control screw 503; Increasing diameter tube II 504. Detailed Implementation

[0036] like Figure 1-12 As shown:

[0037] A gold and silver wire processing system includes a cleaning device for cleaning gold and silver wire. The cleaning device includes a frame 201 with drive wheels 301 rotating symmetrically on both sides. Each drive wheel 301 has a sleeve 302 slidingly inside it via a key, and ring plates 303 are respectively fixed to the inner ends of the two sleeves 302. The inner surfaces of the two ring plates 303 are provided with sponge rings 304. A spring 305 is provided between the drive wheel 301 and the corresponding ring plate 303 to make the two sponge rings 304 press against each other.

[0038] After the gold and silver wires are processed and before they are wound and collected, in order to prevent dust from adhering to the gold and silver wires, the gold and silver wires are passed between two sponge rings 304. As the gold and silver wires move, the two sponge rings 304 will wipe the gold and silver wires, thereby removing the dust adhering to them and cleaning the gold and silver wires.

[0039] Moreover, the elastic force of the two springs 305 will push the two ring plates 303 to bring the two sponge rings 304 closer together and squeeze them, thereby ensuring the clamping of the gold and silver wires and thus ensuring the cleaning effect.

[0040] At the same time, by simultaneously driving the two sleeves 302 to rotate, the two sponge rings 304 are driven to rotate, thus forming a situation where the two sponge rings 304 clamp and scrub the gold and silver wires while also rotating and scrubbing, improving the cleaning effect. Furthermore, by changing the contact position between the two sponge rings 304 and the gold and silver wires, the cleaning effect is further improved.

[0041] like Figure 1-12 As shown:

[0042] The two sleeves 302 are equipped with horizontal pipes 202, and the lower end of the middle part of the horizontal pipes 202 is provided with a water outlet 203.

[0043] The horizontal tube 202 forms a coaxial limit for the two sleeves 302 and the two sponge rings 304. At the same time, clean water is supplied to the horizontal tube 202, and the clean water flows out through the outlet 203 at the lower end of the horizontal tube 202. Then, it enters the two sponge rings 304 at the lower end between the two sponge rings 304, moistening the two sponge rings 304, thereby further improving the cleaning effect of the two sponge rings 304 on the gold and silver wires.

[0044] like Figure 1-12 As shown:

[0045] A water supply pipe 204 is fixed in the middle of the horizontal tube 202, and the water supply pipe 204 extends backward and penetrates the frame 201.

[0046] The water supply pipe 204 provides clean water to the horizontal pipe 202. During cleaning, the gold and silver wires move from front to back, passing between the two sponge rings 304, i.e., above the horizontal pipe 202. Simultaneously, the two sponge rings 304 rotate in the opposite direction to the movement of the gold and silver wires. That is, the two sponge rings 304 first pass through the water outlet 203, then through the water supply pipe 204, and then move to the gold and silver wires to scrub them. Through the water supply pipe 204, after the two sponge rings 304 are supplied with water at the water outlet 203, the two sponge rings... The ring 304 contains a large amount of clean water. When it passes through the water supply pipe 204, the water supply pipe 204 will slide between the two sponge rings 304. During the sliding process, the pipe body of the water supply pipe 204 will work with the two ring plates 303 to squeeze the sponge ring 304, squeezing out the water inside the sponge ring 304 and dripping it. The dripping water will contain the dust that has been wiped off, thus cleaning the sponge ring 304. At the same time, it avoids the sponge ring 304, which has accumulated a lot of water, from wiping the gold and silver wires and causing too much water to remain on the gold and silver wires, which would affect the winding of the gold and silver wires.

[0047] like Figure 1-12 As shown:

[0048] A slide 401 is connected to the frame 201. A stop wheel 402 rotates at the lower end of the slide 401 and is located above and behind the horizontal tube 202.

[0049] When the gold and silver wire is cleaned by rotating the two sponge rings 304, the rotating sponge rings 304 will drive the gold and silver wire upward, causing the gold and silver wire to deviate from its original path until it slides out between the two sponge rings 304. The baffle wheel 402 is set to block the gold and silver wire at the position above and behind the two sponge rings, ensuring that the gold and silver wire always stays between the two sponge rings 304. At the same time, the baffle wheel 402 is designed with a large diameter at both ends and a small diameter in the middle to prevent the gold and silver wire from detaching from the baffle wheel 402.

[0050] like Figure 1-12 As shown:

[0051] An adjusting screw 403 is rotatably mounted on the slide 401, and the adjusting screw 403 is threadedly connected to the frame 201.

[0052] By rotating the adjusting screw 403, it will engage in threaded transmission with the frame 201, thereby causing the adjusting screw 403 to move axially. This movement, in turn, drives the guide wheel 402 to move via the slide 401, thus adjusting the position of the guide wheel 402 and ensuring the limiting of the gold and silver wires.

[0053] like Figure 1-12 As shown:

[0054] The frame 201 has a rotating spiral groove shaft 501 in the middle, which is located in the lower part between two sponge rings 304.

[0055] When the gold and silver wires are cleaned in the upper part between the two sponge rings 304, the spiral groove shaft 501 in the lower part between the two sponge rings 304 is driven to rotate forward, that is, in the opposite direction of rotation of the two sponge rings 304. Thus, the rotating spiral groove shaft 501 will scrape and wash the two sponge rings 304 through its spiral groove, pushing the dust and impurities stuck on the sponge rings 304 forward in a spiral until they are separated from the sponge rings 304, thereby achieving the purpose of cleaning the sponge rings 304 and further ensuring the cleaning effect of the gold and silver wires.

[0056] Meanwhile, since the spiral groove shaft 501 is located at the lower part between the two sponge rings 304 and corresponds to the water outlet 203, it can better clean the dust and impurities on the two sponge rings 304 with clean water.

[0057] like Figure 1-12 As shown:

[0058] An expansion pipe I 502 is slidably mounted on the water supply pipe 204, and an expansion pipe II 504 is slidably mounted on the expansion pipe I 502. Both expansion pipe I 502 and expansion pipe II 504 are threadedly connected to control screws 503, and both control screws 503 are rotatably connected to the frame 201.

[0059] By rotating the control screw 503, the threaded transmission of the diameter-increasing tube I 502 can slide on the water delivery pipe 204 until the diameter-increasing tube I 502 slides between the two sponge rings 304, thereby increasing the diameter of the water delivery pipe 204. This further cooperates with the two ring plates 303 to squeeze the sponge rings 304, thus cleaning the sponge rings 304. At the same time, it avoids excessive water retention on the gold and silver wires, which would affect the winding of the gold and silver wires.

[0060] By rotating another control screw 503, the diameter-increasing pipe II 504 can slide on the diameter-increasing pipe I 502 until it slides between the two sponge rings 304, further increasing the diameter of the water supply pipe 204, achieving the purpose of two-stage adjustment of the diameter of the water supply pipe 204, and increasing the range of applicability of the device for cleaning.

[0061] like Figure 1-12 As shown:

[0062] The cleaning device also includes a water tank 101, with support plates 103 fixed on both sides of the water tank 101. A square rod 106 rotates between the two support plates 103. Multiple frames 201 slide through the square rod 106. Each frame 201 has a tightening screw 205 rotating on it. The multiple tightening screws 205 tighten the square rod 106. A worm gear 107 rotates on one of the support plates 103. The worm gear 107 is meshed with the worm wheel at the end of the square rod 106 for transmission.

[0063] By setting the square rod 106, multiple frames 201 can be supported side by side, so that the device can clean multiple gold and silver wires at the same time, improving cleaning efficiency; by sliding the frame 201 on the square rod 106, the position of each frame 201 can be adjusted, and after the adjustment is completed, the position of the frame 201 is locked by the tightening screw 205.

[0064] Furthermore, by rotating the worm gear 107, the transmission square rod 106 can be engaged and rotated, which in turn drives the frame 201 to rotate, thereby placing the spiral groove shaft 501 in a state of low front and high back, which can better cooperate with the clean water flowing out of the outlet 203 to clean the sponge ring 304; during cleaning, impurities will be scraped into the spiral groove by the edge of the rotating spiral groove, and at the same time, the water in the sponge ring 304 will be scraped into the spiral groove. The inclined spiral groove shaft 501 will cause the water and impurities to flow down the spiral groove, thereby improving the cleaning effect on the sponge ring 304;

[0065] Furthermore, the water output of the outlet 203 and the tilt angle of the spiral groove shaft 501 can be adjusted according to the amount of dust on the gold and silver wires.

[0066] like Figure 1-12 As shown:

[0067] The water tank 101 is inclinedly provided with a mesh plate 102, and a frame 104 is slidably fitted on the water tank 101. A vertical screw 105 is threadedly connected to the frame 104, and the vertical screw 105 is threadedly connected to the frame 104.

[0068] Wastewater squeezed out by the water pipe 204 will drip onto the mesh plate 102, pass through the filter of the mesh plate 102, and then enter the water tank 101, forming a water recycling system. The frame 104 forms a barrier around the upper part of the water tank 101 to prevent wastewater from flowing out along the mesh plate 102. When it is necessary to clean the impurities and dust on the mesh plate 102, rotate the vertical screw 105 to make the frame 104 slide on the water tank 101, thereby exposing the lower end of the mesh plate 102, so that the mesh plate 102 can be cleaned. After cleaning, restore it to its original state for continued use.

[0069] like Figure 1-12 As shown:

[0070] The processing method of the gold and silver wire processing system includes the following steps:

[0071] S1. The gold and silver wires are moved from front to back through the two sponge rings 304 to wipe and clean the gold and silver wires.

[0072] S2. Simultaneously drive the two sleeves 302 to rotate, which in turn drives the two sponge rings 304 to rotate, forming a situation where the two sponge rings 304 clamp and scrub the gold and silver wires while also rotating and scrubbing them.

[0073] S3. By supplying clean water to the horizontal pipe 202, the clean water flows out through the outlet 203 at the lower end of the horizontal pipe 202, which wets the two sponge rings 304, further improving the cleaning effect of the two sponge rings 304 on the gold and silver wires.

Claims

1. A gold and silver wire processing system characterized by: The device includes a cleaning apparatus for cleaning gold and silver wires. The cleaning apparatus includes a frame (201) with drive wheels (301) rotating symmetrically on both sides. Each drive wheel (301) has a sleeve (302) sliding inside it via a key. The sleeves (303) are fixed to the inner ends of the two sleeves (302). The inner surfaces of the two ring plates (303) are provided with sponge rings (304). A spring (305) is provided between the drive wheel (301) and the corresponding ring plate (303) to press the two sponge rings (304) together.

2. A gold and silver wire processing system according to claim 1, characterized in that: The two sleeves (302) are equipped with a horizontal pipe (202), and the lower end of the middle part of the horizontal pipe (202) is equipped with a water outlet (203).

3. A gold and silver wire processing system according to claim 2, characterized in that: A water supply pipe (204) is fixed in the middle of the horizontal tube (202), and the water supply pipe (204) extends backward through the frame (201).

4. The gold and silver wire processing system according to claim 3, characterized in that: A slide (401) is connected to the frame (201), and a stop wheel (402) rotates at the lower end of the slide (401). The stop wheel (402) is located above and behind the horizontal tube (202).

5. A gold and silver wire processing system according to claim 4, characterized in that: An adjusting screw (403) rotates on the slide (401), and the adjusting screw (403) is threadedly connected to the frame (201).

6. The gold and silver wire processing system according to claim 5, characterized in that: The frame (201) has a rotating helical groove shaft (501) in the middle, which is located in the lower part between two sponge rings (304).

7. The gold and silver wire processing system according to claim 6, characterized in that: An expansion pipe I (502) is slidably mounted on the water supply pipe (204), and an expansion pipe II (504) is slidably mounted on the expansion pipe I (502). Both expansion pipe I (502) and expansion pipe II (504) are threadedly connected to control screws (503), and both control screws (503) are rotatably connected to the frame (201).

8. A gold and silver wire processing system according to claim 7, characterized in that: The cleaning device also includes a water tank (101), with support plates (103) fixed on both sides of the water tank (101). A square rod (106) rotates between the two support plates (103). Multiple frames (201) slide through the square rod (106). Each frame (201) has a tightening screw (205) rotating on it. The multiple tightening screws (205) tighten the square rod (106). A worm gear (107) rotates on one of the support plates (103). The worm gear (107) is meshed with the worm wheel at the end of the square rod (106) for transmission.

9. A gold and silver wire processing system according to claim 8, characterized in that: The water tank (101) is inclined with a mesh plate (102), and a frame (104) is slidably fitted on the water tank (101). A vertical screw (105) is threadedly connected to the frame (104), and the vertical screw (105) is threadedly connected to the frame (104).

10. The processing method of a gold and silver wire processing system according to claim 1, characterized in that: The method includes the following steps: S1. The gold and silver wires are moved from front to back through the two sponge rings (304) to wipe and clean the gold and silver wires. S2. Simultaneously drive the two sleeves (302) to rotate, which in turn drives the two sponge rings (304) to rotate, forming a situation where the two sponge rings (304) clamp and scrub the gold and silver wires while also rotating and scrubbing them. S3. By supplying clean water to the horizontal pipe (202), the clean water flows out through the outlet (203) at the lower end of the horizontal pipe (202) to wet the two sponge rings (304), thereby further improving the cleaning effect of the two sponge rings (304) on the gold and silver wires.