Target material gap cleaning device

By designing a target cleaning device, which combines clamping components and friction threads, residues in the gaps of rotating target materials are automatically cleaned, solving the problem of time-consuming and labor-intensive manual cleaning in existing technologies and improving cleaning efficiency.

CN224309081UActive Publication Date: 2026-06-02广东银度光能科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
广东银度光能科技有限公司
Filing Date
2025-06-06
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

In the existing technology, cleaning the gap between adjacent target tubes of a rotating target relies on manual operation, which is time-consuming, labor-intensive, and has low cleaning efficiency.

Method used

A target cleaning device was designed, including a clamping component and a friction wire. The clamping component clamps the rotating target, and the friction wire automatically gets into the gap for friction cleaning. The friction wire is driven by a drive motor to move and rotate along the gap, thereby achieving automated cleaning.

Benefits of technology

It enables automated cleaning of the gaps in rotating target materials, saving time and effort and improving cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of rotating target material, especially target material gap cleaning device. It includes the clamping assembly for clamping rotating target material, and the friction fine line is equipped with the side of clamping assembly, and the friction fine line is clamped into the gap between the adjacent two target pipes in the rotating target material in clamping assembly, and the gap is cleaned by friction. The device is used for cleaning the gap of the rotating target material, the operator puts the bound rotating target material into the clamping assembly, the clamping assembly clamps the rotating target material, the friction fine line on the side of the clamping assembly is clamped into the gap between the adjacent target pipes of the rotating target material, and the gap is cleaned by friction automatically, the residues in the gap are cleaned by friction, compared with the existing gap cleaning by manual, time and labor are saved, and the cleaning efficiency is high.
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Description

Technical Field

[0001] This utility model relates to the field of rotating target materials, and in particular to a target material cleaning device. Background Technology

[0002] Rotary targets typically consist of a cylindrical back tube and multiple cylindrical target segments bound side-by-side to the outside of the back tube. During manufacturing, an operator places one cylindrical target segment onto the outside of the cylindrical back tube, aligning its axis with the back tube's axis. Since the inner diameter of the target segment is slightly larger than the outer diameter of the back tube, a gap is left between them. The operator injects a binding liquid, such as indium solution, into this gap. After the binding liquid cools and solidifies, this segment of the target segment is firmly bound to the outside of the back tube. The operator binds multiple target segments sequentially to the outside of the back tube in this manner to obtain the desired rotary target. Because the target generates a large amount of heat during use, a certain thermal expansion gap is left between adjacent target segments. During the target binding process, some of the binding liquid seeps into these gaps and solidifies, forming solid residues that affect the quality of the target and its subsequent use. Therefore, it is necessary to clean the residues in the gaps. Currently, this relies on manual cleaning with a scraper, segment by segment, which is time-consuming, labor-intensive, and inefficient. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a target material gap cleaning device that automatically cleans the gaps between adjacent target tubes of a rotating target material, saving time and effort and achieving high cleaning efficiency.

[0004] To solve the above problems, the target material gap cleaning device provided by this utility model includes a clamping assembly for clamping a rotating target material. A friction thread is provided on the side of the clamping assembly. The friction thread is inserted into the gap between two adjacent target tubes in the rotating target material in the clamping assembly to clean the gap by friction.

[0005] Furthermore, a second drive motor is provided to drive the friction wires to move along the gap for friction cleaning.

[0006] Furthermore, a first drive motor is provided to drive the target material to rotate around its own axis in a direction opposite to that of the friction lines.

[0007] Furthermore, a second slide rail is provided on the side of the clamping assembly, and a friction wire is mounted on the second slide rail, which can be moved along the second slide rail to align with the gap of the rotating target.

[0008] Furthermore, a tensioning bracket is installed on the second slide rail, and friction wires are installed on the tensioning bracket; a second telescopic motor is provided to drive the tensioning bracket to translate along the second slide rail.

[0009] Furthermore, a third telescopic motor is provided to drive the tensioning bracket to move closer to the clamping assembly so that the friction wire is engaged in the gap.

[0010] Furthermore, the friction wire is specifically a stainless steel wire.

[0011] Furthermore, the clamping assembly includes two clamping members with coincident axes, which clamp the rotating target placed between them relatively close to each other.

[0012] Furthermore, the clamping assembly includes a first slide rail and a first telescopic motor. Two clamping members are mounted on the first slide rail, and the first telescopic motor drives one of the clamping members to move along the first slide rail closer to the other clamping member.

[0013] Furthermore, a first drive motor is provided to drive the clamping assembly to rotate the rotating target.

[0014] Beneficial effects: The operator places the bound rotating target into the clamping assembly, which then clamps the rotating target. The friction wires on the side of the clamping assembly are inserted into the gaps between adjacent target tubes of the rotating target, automatically rubbing and cleaning the gaps to remove the residue. Compared with the existing method of manually cleaning the gaps, this method saves time and effort and has high cleaning efficiency. Attached Figure Description

[0015] Figure 1 This is a simplified structural diagram of the target material cleaning device.

[0016] Figure 2 This is a simplified left-side view of the target material cleaning device. The stainless steel wire is not inserted into the gap, and the clamping components are hidden.

[0017] Figure 3 This is a simplified left-side view of the target material cleaning device. The stainless steel wire has been inserted into the gap, and the clamping components are hidden.

[0018] Symbol explanation:

[0019] 1-Clamping assembly; 3-Rotating target; 4-Frame; 5-Start button; 11-Left bearing seat; 12-Right bearing seat; 13-Left clamping component; 14-Right clamping component; 15-First slide rail; 16-First drive motor; 21-Tension bracket; 22-Third telescopic motor; 23-Stainless steel wire; 24-V-shaped wheel; 25-Second telescopic motor; 26-Base; 27-Second slide rail; 31-Target tube; 32-Gap. Detailed Implementation

[0020] The present invention will be further described in detail below with reference to specific embodiments.

[0021] Target material cleaning device, such as Figure 1As shown, a clamping assembly 1 is installed on the front side of the top of the frame 4. The clamping assembly 1 includes a left clamping member 13 and a right clamping member 14 with their axes coincident. The top surface of the frame 4 is provided with a left-right horizontally arranged first slide rail 15. A left bearing seat 11 is fixedly installed on the left end of the first slide rail 15, and a right bearing seat 12 is slidably installed on the right end of the first slide rail 15 at the right end of the left bearing seat 11. The left clamping member 13 is installed on the right end of the left bearing seat 11, and the right clamping member 14 is installed on the left end of the right bearing seat 12. The operator places the bound rotating target 3 between the left and right clamping parts 13 and 14, aligning the axes of the left clamping part 13, the rotating target 3, and the right clamping part 14. Then, the operator presses the start button 5 located on the top right side of the frame 4. The right bearing seat 12 is then driven by the first telescopic motor (not shown in the attached figure) located at its right end to move left along the first slide rail 15, causing the right clamping part 14 to move left and close to the left clamping part 13, thus clamping the rotating target 3 between the left and right clamping parts 13 and 14.

[0022] The clamping assembly 1 is mounted on the rear side with a clamping device such as... Figure 2 The seam cleaning components shown are... Figure 2 The top rear side of the frame 4 is equipped with a second horizontally oriented slide rail 27, on which the base 26 of the seam cleaning assembly is mounted. A tensioning bracket 21 is mounted on the top of the base 26, and four V-shaped wheels 24 are mounted on the left end of the tensioning bracket 21. A stainless steel wire 23 is wound into a closed loop through the four V-shaped wheels 24. The wire 23 can be replaced with other materials such as nylon.

[0023] See Figure 1 A first drive motor 16 is mounted on the top surface of the frame 4 at the left end of the left clamping member 13. Its output shaft 161 drives the left clamping member 13, along with the rotating target 3 and the right clamping member 14, to rotate around an axis relative to the left and right bearing seats 11 and 12. During this process, see... Figure 2 The base 26 of the seam cleaning assembly is powered by a second telescopic motor 25 located at the right end of the base 26 (see...). Figure 1 The drive moves left and right along the second slide rail 27 until the stainless steel wire 23 aligns with the gap 32 between two adjacent target tubes 31 in the rotating target 3. The tensioning bracket 21 is then driven forward by the third telescopic motor 22 behind it, moving closer to the rotating target 3. The stainless steel wire 23 then gets into the gap 32 and elastically deforms backward. Figure 3 As shown, the residue in the compression gap 32 is compressed. One of the V-shaped wheels 24 is driven by a second drive motor (not shown in the figure) mounted on the tensioning bracket 21, which acts as the driving wheel, causing the stainless steel wire 23 to rotate around the four V-shaped wheels 24. Figure 3During rotation, the portion of the stainless steel wire 23 that is engaged in the gap 32 moves upwards, while the gap 32 moves downwards in the opposite direction. The stainless steel wire 23 acts as a friction wire, cleaning the gap 32 and removing any residue. After cleaning one gap 32, the stainless steel wire 23 is driven out of that gap 32 by the third telescopic motor 22, and then driven by the second telescopic motor 25 to move to the next gap 32. This process is repeated until all gaps 32 on the rotating target 3 are cleaned, thus completing the cleaning of the rotating target 3. The frame 4 is equipped with a controller (not shown in the attached diagram) connected to the start button 5. The controller controls the various telescopic motors and drive motors mentioned above.

[0024] The above description is merely an embodiment of the present invention and does not limit the scope of patent protection. Any non-substantial changes or substitutions made by those skilled in the art based on the present invention will still fall within the scope of patent protection.

Claims

1. A target material cleaning device, characterized in that: It includes a clamping assembly (1) for clamping a rotating target (3), and a friction wire (23) is provided on the side of the clamping assembly (1). The friction wire (23) is inserted into the gap (32) between two adjacent target tubes (31) in the rotating target (3) in the clamping assembly (1) to perform friction cleaning on the gap (32).

2. The target material cleaning device as described in claim 1, characterized in that: A second drive motor is provided to drive the friction wire (23) to move along the gap (32) for friction cleaning.

3. The target material cleaning device as described in claim 2, characterized in that: A first drive motor (16) is provided to drive the rotating target (3) to rotate around its own axis in a direction opposite to that of the friction line (23).

4. The target material cleaning device as described in claim 1, characterized in that: A second slide rail (27) is provided on the side of the clamping assembly (1), and a friction wire (23) is installed on the second slide rail (27) and can be moved along the second slide rail (27) to the gap (32) aligned with the rotating target (3).

5. The target material cleaning device as described in claim 4, characterized in that: A tensioning bracket (21) is installed on the second slide rail (27), and the friction wire (23) is installed on the tensioning bracket (21); a second telescopic motor (25) is provided to drive the tensioning bracket (21) to translate along the second slide rail (27).

6. The target material cleaning device as described in claim 5, characterized in that: A third telescopic motor (22) is provided to drive the tensioning bracket (21) to move closer to the clamping assembly (1) so that the friction wire (23) is engaged in the gap (32).

7. The target material cleaning device as described in claim 1, characterized in that: The friction wire (23) is specifically a stainless steel wire (23).

8. The target material cleaning device as described in claim 1, characterized in that: The clamping assembly (1) includes two clamping members (13, 14) with their axes coincident, and the two clamping members (13, 14) clamp the rotating target (3) placed between them relatively close to each other.

9. The target material cleaning device as described in claim 8, characterized in that: The clamping assembly (1) includes a first slide rail (15) and a first telescopic motor. Two clamping members (13, 14) are mounted on the first slide rail (15). The first telescopic motor drives one of the clamping members (14) to move along the first slide rail (15) closer to the other clamping member (13).

10. The target material cleaning device as described in claim 1, characterized in that: A first drive motor (16) is provided to drive the clamping assembly (1) to rotate the rotating target (3).