Copper sheet surface cleaning device

By designing a copper sheet surface cleaning device and utilizing the combined structure of the water absorption component and the fixed cylinder and cylinder control, efficient removal of cutting fluid from the copper sheet surface is achieved, solving the problems of poor cleaning effect and high energy consumption in the existing technology, improving cleaning efficiency and reducing energy consumption.

CN223393889UActive Publication Date: 2025-09-30ZHEJIANG FADA COPPER
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Patent Information

Application Number
CN202422732843.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-09-30
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

In the prior art, the cleaning effect of cutting fluid on the surface of copper sheets is poor and energy consumption is high, making it difficult to efficiently remove the cutting fluid on the surface of copper sheets.

Method used

A copper sheet surface cleaning device was designed, which adopted a combined structure of a water absorption component and a fixed cylinder. The efficient suction of cutting fluid was achieved through the extrusion and rotation movement of the water absorption component and the fixed cylinder, combined with the different speed control of the cylinder.

Benefits of technology

The cleaning efficiency of the cutting fluid is improved, the energy consumption is reduced, the cutting fluid removal effect is enhanced, and the water-absorbing parts can be reused.

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Abstract

The utility model discloses a copper sheet surface cleaning device which comprises a cleaning assembly, the cleaning assembly comprises a fixing block, the outer wall of the fixing block is connected with a sliding block in a sliding mode, the sliding block can move left and right along the fixing block, the fixing block comprises two first side plates, and a fixing cylinder is installed between the two first side plates; the rotary drum can rotate along the axis of the rotary drum, the axis of the rotary drum is parallel to the axis of the fixed drum, the fixed drum is provided with an opening, the opening faces the rotary drum, the outer wall of the rotary drum is sleeved with a water absorption component, and the rotary drum can move left and right to enable the water absorption component to be inserted into the opening, so that the inner wall of the rotary drum extrudes the water absorption component; the side, away from the fixing cylinder, of the water absorption component can abut against a copper sheet, the copper sheet conveying direction is in the tangential direction of the water absorption component, and the copper sheet drives the water absorption component to rotate during conveying. The utility model provides a copper sheet surface cleaning device which improves the cleaning effect of cutting fluid on the surface of a copper sheet.
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Description

Technical Field

[0001] The utility model relates to copper processing production equipment, and more particularly to a copper sheet surface cleaning device. Background Art

[0002] In the current manufacturing process for alloy copper sheets, the copper sheets are pulled and stretched to form sheet structures exceeding several dozen meters in length. After being milled and thinned, they are then stretched and stretched to further thin the sheet. After milling, the cutting fluid on the copper sheet surface needs to be blown away. Currently, this is done with an air gun, which is ineffective and energy-intensive, resulting in drawbacks. Utility Model Content

[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a copper sheet surface cleaning device to improve the cleaning effect of the cutting fluid on the copper sheet surface.

[0004] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a copper sheet surface cleaning device, including a cleaning assembly, the cleaning assembly includes a fixed block, the outer wall of the fixed block is slidably connected to a slider, the slider can move left and right along the fixed block, the fixed block includes two side plates, and a fixed cylinder is installed between the two side plates; it also includes a rotating cylinder, which can rotate along its own axis, the axis of the rotating cylinder is arranged parallel to the axis of the fixed cylinder, the fixed cylinder is provided with an opening, the opening faces the rotating cylinder, and a water-absorbing component is sleeved on the outer wall of the rotating cylinder. The rotating cylinder can move left and right so that the water-absorbing component can be inserted into the opening, so that the inner wall of the rotating cylinder squeezes the water-absorbing component, and the water-absorbing component can abut against the copper sheet away from the fixed cylinder. The transmission direction of the copper sheet is tangential to the water-absorbing component, and the water-absorbing component is driven to rotate during transmission of the copper sheet.

[0005] The utility model is further configured such that a rotating drum is installed with a shaft rod, the shaft rod is inserted into the rotating drum, the rotating drum and the shaft rod are connected by a key so as to be able to rotate synchronously, a ring seat is installed on the outer wall of the shaft rod through a bearing, the ring seat is connected to a connecting rod, the connecting rod is located on the side of the ring seat away from the fixed drum, the connecting rod is connected to a bracket, and the bracket is connected to the slider.

[0006] The utility model is further configured such that the slider includes two side panels located on both sides, and the two side panels are connected to the bracket.

[0007] The utility model is further configured to include a roller, which can rotate along its own axis. The roller is located between the water absorbing component and the fixed cylinder, and the distance between the top of the roller and the bottom of the water absorbing component is one-sixth to one-fifth of the wall thickness of the water absorbing component.

[0008] The present invention is further configured such that the axis of the roller is parallel to the axis of the fixing cylinder.

[0009] The utility model is further configured as follows: the side panel 1 is mounted with a bracket body 2, the top of the bracket body 2 is mounted with a plate body, the top of the plate body is mounted with a support rod, and the support rod is hinged to the roller.

[0010] The utility model is further configured as follows: a through hole is provided at the bottom of the fixing cylinder, a support frame is installed on the side plate, a box body is installed on the support frame, the top of the box body is open, and the box body is located below the through hole.

[0011] The utility model is further configured such that extension rods are installed at both axial ends of the fixing cylinder, and the extension rods are fixedly connected to a side plate.

[0012] The utility model is further configured such that two cleaning components are provided, and the two water absorbing components are located on both sides of the copper sheet transmission direction and are distributed up and down.

[0013] In summary, the present invention has the following beneficial effects:

[0014] 1. The water-absorbing component absorbs the cutting fluid from the copper sheet surface, improving the efficiency of removing the cutting fluid from the copper sheet surface. The fixed cylinder squeezes the water-absorbing component to reduce the cutting fluid content on the water-absorbing component, making it easier for the water-absorbing component to absorb water from the copper sheet again. Compared with the method of removing cutting fluid by blowing air, this method reduces energy consumption and improves the efficiency of removing cutting fluid.

[0015] 2. By providing a roller, the water-absorbing component rotates as it is driven by the cylinder to approach and insert into the fixed barrel. This allows the portion of the water-absorbing component that was not squeezed the first time to be squeezed the second time, thereby improving the squeezing effect. Furthermore, the extension and retraction rates of the cylinder output end are set to be different. This ensures that during the cylinder-driven back-and-forth movement of the water-absorbing component past the roller, the rotation of the water-absorbing component is different. When the water-absorbing component is inserted into the fixed barrel for the second time, its relative circumferential position will be different from that of the first insertion, thereby improving the squeezing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a cross-sectional view of an embodiment;

[0017] Figure 2 for Figure 1 Enlarged view of point A in the middle;

[0018] Figure 3 for Figure 2 Cross-sectional view along the MM direction.

[0019] Figure numerals: fixed rod 1, extension platform 11, cleaning assembly 2, fixed block 21, side panel 1 211, connecting plate 1 212, slider 22, side panel 2 221, connecting plate 2 222, fixed cylinder 23, opening 231, through hole 232, extension rod 24, bracket 25, extension frame 251, connecting rod 26, ring seat 27, bearing 271, shaft 28, rotating drum 29, water absorbing component 291, copper sheet 3, cylinder 4, support frame 1 5, box body 6, bracket body 2 7, plate body 71, roller 8. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0021] like Figure 1 、 Figure 2 As shown, this embodiment discloses a copper sheet surface cleaning device, including a cleaning component 2, the cleaning component 2 includes a fixing block 21, combined with Figure 3 The fixed block 21 is a U-shaped plate. It includes two side plates 211 and a connecting plate 212 between the two side plates 211. The outer wall of the side plate 211 is slidably connected to a slider 22, which can move left and right along the outer wall of the side plate 211. Specifically, the slider 22 is a U-shaped plate. The slider 22 includes two side plates 221 and a connecting plate 222 located between the two side plates 221. The inner wall of the side plate 221 is in contact with the outer wall of the side plate 1 211. A cylinder 4 is installed on the side of the connecting plate 1 212 away from the connecting plate 222. The output end of the cylinder 4 passes through the connecting plate 1 212 and is connected to the connecting plate 2 222. Driven by the cylinder 4, the side plate 221 moves left and right along the outer wall of the side plate 1 211.

[0022] like Figure 3 As shown, both side connecting plates 212 are connected to brackets 25, and brackets 25 include extension brackets 251, and extension brackets 251 are connected to connecting rods 26, and connecting rods 26 are connected to ring seats 27. Ring seats 27 are annular structures, and shafts 28 are installed on the inner wall of ring seats 27 through bearings. The shafts 28 are inserted into the corresponding ring seats 27 at both ends of the axis, and shafts 28 can rotate along their own axis. A rotating drum 29 is installed on the outer wall of the shaft 28 through a key connection, and the rotating drum 29 rotates synchronously with the shaft 28. The outer wall of the rotating drum 29 is covered with a water-absorbing component 291, and the water-absorbing component 291 is made of sponge material. The rotating drum 29 rotates synchronously with the water-absorbing component 291. The water-absorbing component 291 is used to remove the cutting fluid from the copper sheet 3, combined with Figure 2The copper sheet 3 is transported in an upward direction, the water absorbing component 291 abuts against one side of the copper sheet 3, and the transport direction of the copper sheet 3 is tangential to the water absorbing component 291. When the copper sheet 3 is transported, the water absorbing component 291 is driven to rotate.

[0023] like Figure 2 、 Figure 3 As shown, a fixed cylinder 23 is installed between the two side plates 211. The fixed cylinder 23 is a cylindrical structure, hollow inside and closed at both ends. The axis of the rotating cylinder 29 is arranged parallel to the axis of the fixed cylinder 23, and the fixed cylinder 23 is closed at both ends. Extension rods 24 are installed at both ends of the fixed cylinder 23, and the extension rods 24 are fixedly connected to the side plate 211 to maintain the position of the fixed cylinder 23. The side wall of the fixed cylinder 23 is provided with an opening 231, and the opening 231 faces the rotating cylinder 29. The rotating cylinder 29 can move left and right under the action of the cylinder 4, so that the water absorption component 291 can be inserted into the opening 231, thereby causing the inner wall of the rotating cylinder 29 to squeeze the water absorption component 291.

[0024] Figure 2 The center height of opening 231 is aligned with the axis height of rotating drum 29. The width of opening 231 is smaller than the outer diameter of water-absorbing member 291, so that water-absorbing member 291 is more strongly squeezed when entering opening 231, making it easier to squeeze out the cutting fluid. A through-hole 232 is provided at the bottom of fixed drum 23 to facilitate drainage. Support frame 1 5 is mounted on side panel 1 211, and box body 6 is mounted on support frame 1 5. Box body 6 has an open top and is located below through-hole 232. Box body 6 is used to collect the extruded cutting fluid.

[0025] like Figure 2As shown, side panel 1 211 is mounted with bracket body 2 7, bracket body 2 7 is mounted on top of plate body 71, plate body 71 is mounted on top of plate body 71, support rod is hinged to support rod with roller 8, roller 8 axis is parallel to the axis of fixed cylinder 23, roller 8 can rotate along its own axis, roller 8 is located between water absorbing component 291 and fixed cylinder 23, the distance between roller 8 top and bottom of water absorbing component 291 (i.e. the height difference between the two) is one-sixth to one-fifth of the wall thickness of water absorbing component 291. When water absorbing component 291 is inserted into fixed cylinder 23, copper sheet 3 stops transmitting, and a complete water squeezing operation requires water absorbing component 291 to be inserted into fixed cylinder 23 twice. Due to the setting of opening 231, part of water absorbing component 291 is not squeezed during the first squeezing operation. By setting roller 8, water absorbing component 291 rotates during the process of being approached and inserted into fixed cylinder 23 by cylinder 4, thereby making it possible for the part of water absorbing component 291 that was not squeezed during the first squeezing operation to be squeezed during the second squeezing operation, thereby improving the squeezing effect. The extension and retraction rates of the output end of the cylinder 4 are also set to be different. This results in a difference in the rotation of the water absorbing member 291 during its back-and-forth movement through the roller 8 driven by the cylinder 4. When the water absorbing member 291 is inserted into the fixed cylinder 23 for the second time, its circumferential relative position will be different from that of the first insertion, thereby improving the water squeezing effect. The fixed cylinder 23 squeezes the water absorbing member 291, reducing the amount of cutting fluid on the water absorbing member 291, thereby facilitating the water absorbing member 291 to absorb water from the copper sheet 3 again.

[0026] like Figure 1 As shown, the cleaning component 2 is provided with two, combined Figure 2 The two water absorbing components 291 are located on both sides of the copper sheet 3 in the transmission direction and are distributed up and down to simultaneously clean the cutting fluid on both sides of the copper sheet 3.

[0027] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, certain improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. A copper sheet surface cleaning device, characterized in that: The cleaning assembly (2) includes a fixed block (21), an outer wall of the fixed block (21) is slidably connected to a slider (22), and the slider (22) can move left and right along the fixed block (21). The fixed block (21) includes two side plates (211), and a fixed cylinder (23) is installed between the two side plates (211). The invention also includes a rotating drum (29), wherein the rotating drum (29) can rotate along its own axis, the axis of the rotating drum (29) is arranged parallel to the axis of the fixed drum (23), the fixed drum (23) is provided with an opening (231), the opening (231) faces the rotating drum (29), the outer wall of the rotating drum (29) is sleeved with a water absorbing component (291), the rotating drum (29) can move left and right so that the water absorbing component (291) can be inserted into the opening (231), so that the inner wall of the rotating drum (29) squeezes the water absorbing component (291), the side of the water absorbing component (291) away from the fixed drum (23) can be in contact with a copper sheet (3), the transmission direction of the copper sheet (3) is tangential to the water absorbing component (291), and the copper sheet (3) drives the water absorbing component (291) to rotate during transmission.

2. A copper sheet surface cleaning device according to claim 1, characterized in that: The rotating cylinder (29) is equipped with a shaft (28), the shaft (28) is inserted into the rotating cylinder (29), the rotating cylinder (29) and the shaft (28) are connected by a key so as to be able to rotate synchronously, the outer wall of the shaft (28) is equipped with a ring seat (27) through a bearing (271), the ring seat (27) is connected with a connecting rod (26), the connecting rod (26) is located on the side of the ring seat (27) away from the fixed cylinder (23), the connecting rod (26) is connected with a bracket (25), and the bracket (25) is connected to the slider (22).

3. A copper sheet surface cleaning device according to claim 2, characterized in that: The slider (22) includes a second side plate (221) located on both sides, and the second side plate (221) is connected to the bracket (25).

4. A copper sheet surface cleaning device according to claim 1, characterized in that: The invention also includes a roller (8) which is capable of rotating along its own axis. The roller (8) is located between the water absorbing component (291) and the fixed cylinder (23). The distance between the top of the roller (8) and the bottom of the water absorbing component (291) is one-sixth to one-fifth of the wall thickness of the water absorbing component (291).

5. A copper sheet surface cleaning device according to claim 4, characterized in that: The axis of the roller (8) is parallel to the axis of the fixed cylinder (23).

6. A copper sheet surface cleaning device according to claim 5, characterized in that: The side panel 1 (211) is installed with a bracket body 2 (7), the top of the bracket body 2 (7) is installed with a plate body (71), the top of the plate body (71) is installed with a support rod, and the support rod is hinged to the roller (8).

7. A copper sheet surface cleaning device according to claim 1, characterized in that: A through hole (232) is provided at the bottom of the fixing cylinder (23); a support frame (5) is installed on the side plate (211); a box body (6) is installed on the support frame (5); the top of the box body (6) is open; and the box body (6) is located below the through hole (232).

8. A copper sheet surface cleaning device according to claim 1, characterized in that: Extension rods (24) are installed at both axial ends of the fixed cylinder (23), and the extension rods (24) are fixedly connected to the side plate (211).

9. A copper sheet surface cleaning device according to claim 1, characterized in that: Two cleaning components (2) are provided, and the two water absorbing components (291) are located on both sides of the transmission direction of the copper sheet (3) and are distributed up and down.