Oxygen-free copper production device

By introducing a protective frame and protective plate into the oxygen-free copper production unit, combined with a motor-driven grinding disc, the problem of waste chips splashing during grinding was solved, and a safe oxygen-free copper grinding process was achieved.

CN223998061UActive Publication Date: 2026-03-17SHANDONG HAITE ELECTRONIC MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing oxygen-free copper production equipment has a problem where waste chips easily fly up during grinding, causing injury to workers.

Method used

An oxygen-free copper production device was designed, which includes a protective frame, a protective plate, a feeding assembly, a lifting assembly, and a motor. The protective frame and the protective plate work together to prevent waste from splashing, and the motor drives the grinding disc for grinding.

Benefits of technology

It effectively prevents waste from splashing, reduces injury to workers, and facilitates the polishing operation of oxygen-free copper.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oxygen-free copper production device, which belongs to the technical field of oxygen-free copper production, and comprises a placing table and a protective frame arranged on the placing table, a protective plate is arranged on the protective frame, a feeding hole is formed in the protective plate, a material pushing assembly is arranged on the placing table, a limiting assembly is arranged on the placing table, and a lifting assembly is arranged on the protective frame. A motor is installed at the output end of the lifting assembly, and a grinding disc is installed at the output end of the motor. According to the oxygen-free copper polishing device, the protection frame and the protection plate are arranged to be matched with each other, oxygen-free copper is moved into the protection frame to be polished, when the oxygen-free copper is polished, scraps are not prone to splashing, then workers are not prone to being hurt, the motor is arranged, the motor is started to drive the polishing disc to rotate, and the oxygen-free copper can be conveniently polished.
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Description

Technical Field

[0001] This utility model relates to a production apparatus, and more particularly to an oxygen-free copper production apparatus, belonging to the field of oxygen-free copper production technology. Background Technology

[0002] Due to different manufacturing processes, the oxygen content and appearance of the produced copper rods vary. Copper rods produced by top drawing have an oxygen content below 20 ppm and are called oxygen-free copper rods. Copper rods produced by continuous casting and rolling are hot-rolled under protective conditions, with an oxygen content in the range of 200-500 ppm, but sometimes as high as 700 ppm or more. Generally, copper produced by this method has a bright surface and is commonly known as a bright rod. However, the surface of oxygen-free copper rods is not very smooth during the production process, which leads to the widespread use of surface polishing equipment for oxygen-free copper rods.

[0003] However, in actual use, the waste shavings generated during grinding in existing oxygen-free copper production equipment are prone to flying and can easily cause injury to workers. Utility Model Content

[0004] The main purpose of this invention is to solve the problem of waste chips easily splashing during grinding, and to provide an oxygen-free copper production device.

[0005] The objective of this utility model can be achieved by adopting the following technical solution:

[0006] An oxygen-free copper production apparatus includes a placement platform and a protective frame installed on the placement platform. A protective plate is installed on the protective frame, and a feed port is opened on the protective plate. A pushing component is installed on the placement platform, and a limiting component is installed on the placement platform. A lifting component is installed on the protective frame, and a motor is installed at the output end of the lifting component. A grinding disc is installed at the output end of the motor.

[0007] Preferably, the protective plate is connected to the protective frame by a first bolt.

[0008] Preferably, the pushing assembly includes a first hydraulic telescopic rod and a push plate, the first hydraulic telescopic rod is mounted on the placement platform, and the push plate is mounted on the output end of the first hydraulic telescopic rod.

[0009] Preferably, the limiting assembly includes a connecting plate, a guide rod, a guide ring, a second side rod, a mounting block, and a limiting frame. The connecting plate is mounted on the placement platform, the guide rod is mounted on the connecting plate, the guide ring is slidably mounted on the guide rod, the second side rod is mounted on the guide ring, a mounting block is mounted on one end of the second side rod, and a limiting frame is mounted on the mounting block.

[0010] Preferably, the limiting frame is equipped with a plug block, and the mounting block has a slot that cooperates with the plug block.

[0011] Preferably, the mounting block is connected to the insert block by a second bolt.

[0012] Preferably, the guide ring is connected to the connecting plate by a spring.

[0013] Preferably, the lifting assembly includes a second hydraulic telescopic rod, a support frame, and a support column. The support column is installed on the protective frame, a support frame is installed at one end of the support column, the second hydraulic telescopic rod is installed on the support frame, and the motor is installed at the output end of the second hydraulic telescopic rod.

[0014] Preferably, a limit rod is installed on the protective frame, a limit ring is slidably installed on the limit rod, a first side rod is installed on the limit ring, a connecting frame is installed at one end of the first side rod, and the motor is installed on the connecting frame.

[0015] The beneficial technical effects of this utility model are as follows:

[0016] 1. According to the oxygen-free copper production device of this utility model, by setting up a protective frame and a protective plate in cooperation, the oxygen-free copper is moved into the protective frame for grinding. This makes it less likely for waste chips to fly during the grinding of oxygen-free copper, thus reducing the risk of injury to workers.

[0017] 2. By setting up a motor, the motor starts and drives the grinding disc to rotate, which facilitates the grinding of oxygen-free copper. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the grinding disc structure of this utility model;

[0020] Figure 3 This is a schematic diagram of the insert structure of this utility model;

[0021] Figure 4 This is a schematic diagram of the guide ring structure of this utility model;

[0022] Figure 5 This is a schematic diagram of the connecting frame structure of this utility model;

[0023] Figure 6 This is a schematic diagram of the support frame structure of this utility model.

[0024] In the diagram: 1. Placement platform; 2. First hydraulic telescopic rod; 3. Push plate; 4. Protective frame; 5. Protective plate; 6. First bolt; 7. Connecting plate; 8. Guide rod; 9. Spring; 10. Guide ring; 11. Second hydraulic telescopic rod; 12. Motor; 13. Grinding disc; 14. Connecting frame; 15. First side rod; 16. Limiting ring; 17. Limiting rod; 18. Support frame; 19. Support column; 20. Limiting frame; 21. Mounting block; 22. Second bolt; 23. Insert block; 24. Second side rod. Detailed Implementation

[0025] To enable those skilled in the art to understand the technical solution of this utility model more clearly, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings, but the implementation of this utility model is not limited thereto.

[0026] like Figures 1-6 As shown, the oxygen-free copper production apparatus provided in this embodiment includes a placement platform 1 and a protective frame 4 installed on the placement platform 1. A protective plate 5 is installed on the protective frame 4, and a feed port is opened on the protective plate 5. A pushing component is installed on the placement platform 1, and a limiting component is installed on the placement platform 1. A lifting component is installed on the protective frame 4, and a motor 12 is installed at the output end of the lifting component. A grinding disc 13 is installed at the output end of the motor 12. By setting the protective frame 4 and the protective plate 5 to cooperate with each other, the oxygen-free copper is moved into the protective frame 4 for grinding. When grinding oxygen-free copper, the waste chips are not easily splashed, thus reducing the risk of injury to the workers. By setting the motor 12, the motor 12 drives the grinding disc 13 to rotate, which facilitates the grinding of oxygen-free copper.

[0027] In this embodiment, as Figure 1 As shown, the protective plate 5 is connected to the protective frame 4 by the first bolt 6. By setting the first bolt 6, the protective plate 5 can be easily disassembled and replaced. The pushing assembly includes a first hydraulic telescopic rod 2 and a push plate 3. The first hydraulic telescopic rod 2 is installed on the placement table 1. The push plate 3 is installed at the output end of the first hydraulic telescopic rod 2. By setting the first hydraulic telescopic rod 2, the first hydraulic telescopic rod 2 is activated to drive the push plate 3 to move and thus push the oxygen-free copper. When the oxygen-free copper passes the grinding disc 13, the grinding disc 13 grinds the oxygen-free copper.

[0028] In this embodiment, as Figure 1 , Figure 3 and Figure 4As shown, the limiting assembly includes a connecting plate 7, a guide rod 8, a guide ring 10, a second side rod 24, a mounting block 21, and a limiting frame 20. The connecting plate 7 is mounted on the placement platform 1. The guide rod 8 is mounted on the connecting plate 7. The guide ring 10 is slidably mounted on the guide rod 8. The second side rod 24 is mounted on the guide ring 10. A mounting block 21 is mounted on one end of the second side rod 24. The limiting frame 20 is mounted on the mounting block 21. When the first hydraulic telescopic rod 2 is activated, it drives the push plate 3 to move, thereby moving the oxygen-free copper and inserting one end of the oxygen-free copper into the limiting frame 20. The limiting frame 20 then controls the oxygen-free copper... The copper is limited, and the limiting frame 20 is equipped with a plug 23. The mounting block 21 has a slot that cooperates with the plug 23. By setting the plug 23 to engage with the slot, it is easy to disassemble and replace the limiting frame 20 of different sizes. The mounting block 21 is connected to the plug 23 by the second bolt 22. By setting the second bolt 22, it is easy to limit the installed limiting frame 20. The guide ring 10 is connected to the connecting plate 7 by the spring 9. The first hydraulic telescopic rod 2 is activated to drive the push plate 3 to reset. The extension of the spring 9 can drive the limiting frame 20 to move, thereby driving the oxygen-free copper to reset.

[0029] In this embodiment, as Figure 1 , Figure 2 , Figure 5 and Figure 6 As shown, the lifting assembly includes a second hydraulic telescopic rod 11, a support frame 18, and a support column 19. The support column 19 is installed on the protective frame 4, and the support frame 18 is installed at one end of the support column 19. The second hydraulic telescopic rod 11 is installed on the support frame 18, and a motor 12 is installed at the output end of the second hydraulic telescopic rod 11. By setting the second hydraulic telescopic rod 11, the second hydraulic telescopic rod 11 can drive the grinding disc 13 to descend, thereby adjusting the position of the grinding disc 13 so that the grinding disc 13 can grind oxygen-free copper of different sizes. By setting the support column 19 and the support frame 18 to cooperate with each other, the second hydraulic telescopic rod 11 can be easily supported. A limit rod 17 is installed on the protective frame 4, and a limit ring 16 is slidably installed on the limit rod 17. A first side rod 15 is installed on the limit ring 16, and a connecting frame 14 is installed at one end of the first side rod 15. A motor 12 is installed on the connecting frame 14. By setting the limit rod 17 and the limit ring 16 to cooperate with each other, the motor 12 can be easily guided and limited.

[0030] In this embodiment, as Figures 1-6 As shown, the working process of the oxygen-free copper production apparatus provided in this embodiment is as follows:

[0031] Step 1: The second hydraulic telescopic rod 11 is started, driving the motor 12 and the grinding disc 13 to move, driving the motor 12 and the grinding disc 13 to descend, adjusting the position of the grinding disc 13, and the motor 12 is started, driving the grinding disc 13 to rotate;

[0032] Step 2: Place the oxygen-free copper on the placement platform 1. Start the first hydraulic telescopic rod 2 to drive the push plate 3 to move, which in turn drives the oxygen-free copper to move. The grinding disc 13 grinds the oxygen-free copper. One end of the oxygen-free copper is inserted into the limiting frame 20. The limiting frame 20 limits the oxygen-free copper. The oxygen-free copper pushes the limiting frame 20 to move. The guide ring 10 slides on the guide rod 8 to limit the movement of the oxygen-free copper.

[0033] In summary, in this embodiment, the oxygen-free copper production apparatus, by setting up a protective frame 4 and a protective plate 5 in cooperation, moves the oxygen-free copper into the protective frame 4 for grinding. This prevents waste from flying during grinding, thus minimizing the risk of injury to workers. The motor 12, when activated, rotates the grinding disc 13, facilitating the grinding of the oxygen-free copper. The first bolt 6 facilitates the removal and replacement of the protective plate 5. The first hydraulic telescopic rod 2, when activated, moves the push plate 3, thus pushing the oxygen-free copper. As the oxygen-free copper passes the grinding disc 13, the grinding disc 13 grinds it. The first hydraulic telescopic rod 2 then moves the push plate 3, further moving the oxygen-free copper until one end is inserted into the limiting frame 20. The limit frame 20 is used to limit the oxygen-free copper. By setting the insert 23 to engage with the slot, it is easy to disassemble and replace the limit frame 20 of different sizes. By setting the second bolt 22, it is easy to limit the limit frame 20 after installation. The first hydraulic telescopic rod 2 is activated to drive the push plate 3 to reset. The spring 9 extends to drive the limit frame 20 to move, thereby driving the oxygen-free copper to reset. By setting the second hydraulic telescopic rod 11, the second hydraulic telescopic rod 11 is activated to drive the grinding disc 13 to descend, which can adjust the position of the grinding disc 13 so that the grinding disc 13 can grind oxygen-free copper of different sizes. By setting the support column 19 and the support frame 18 to cooperate with each other, it is easy to support the second hydraulic telescopic rod 11. By setting the limit rod 17 and the limit ring 16 to cooperate with each other, it is easy to guide and limit the motor 12.

[0034] If certain terms are used in the specification and claims to refer to specific components, those skilled in the art will understand that hardware manufacturers may use different names to refer to the same component. This specification and claims do not distinguish components based on differences in name, but rather on differences in function. The term "comprising" as used throughout the specification and claims is an open-ended term and should be interpreted as "comprising but not limited to." "Approximately" means that within an acceptable margin of error, those skilled in the art can solve the technical problem and substantially achieve the technical effect within a certain margin of error.

[0035] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a product or system comprising a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a product or system. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the product or system that includes that element.

[0036] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.

Claims

1. An oxygen-free copper production apparatus, characterized in that, The utility model relates to a kind of polishing machine, including placing table (1) and protective frame (4) installed on the placing table (1), protective plate (5) is installed on the protective frame (4), feeding port is opened on the protective plate (5), pushing assembly is installed on the placing table (1), limiting assembly is installed on the placing table (1), lifting assembly is installed on the protective frame (4), motor (12) is installed on the output end of the lifting assembly, polishing disc (13) is installed on the output end of the motor (12).

2. The apparatus for producing oxygen-free copper according to claim 1, wherein The protective plate (5) is connected with the protective frame (4) by the first bolt (6).

3. The apparatus according to claim 1, wherein The pushing assembly includes first hydraulic telescopic rod (2) and push plate (3), first hydraulic telescopic rod (2) is installed on the placing table (1), and push plate (3) is installed on the output end of the first hydraulic telescopic rod (2).

4. The apparatus according to claim 1, wherein The limiting assembly includes connecting plate (7), guide rod (8), guide ring (10), second side rod (24), mounting block (21) and limiting frame (20), connecting plate (7) is installed on the placing table (1), guide rod (8) is installed on the connecting plate (7), guide ring (10) is slidably installed on the guide rod (8), second side rod (24) is installed on the guide ring (10), one end of the second side rod (24) is provided with mounting block (21), and limiting frame (20) is installed on the mounting block (21).

5. The apparatus for producing oxygen-free copper according to claim 4, wherein The limiting frame (20) is provided with plug block (23), and the mounting block (21) is provided with plug groove matched with the plug block (23).

6. The apparatus for producing oxygen-free copper according to claim 5, wherein The mounting block (21) is connected with the plug block (23) by the second bolt (22).

7. The apparatus according to claim 6, wherein The guide ring (10) is connected with the connecting plate (7) by spring (9).

8. The apparatus according to claim 1, wherein The lifting assembly includes second hydraulic telescopic rod (11), support frame (18) and support column (19), support column (19) is installed on the protective frame (4), one end of the support column (19) is provided with support frame (18), second hydraulic telescopic rod (11) is installed on the support frame (18), and the output end of the second hydraulic telescopic rod (11) is provided with the motor (12).

9. The apparatus according to claim 1, wherein Limiting rod (17) is installed on the protective frame (4), limiting ring (16) is slidably installed on the limiting rod (17), first side rod (15) is installed on the limiting ring (16), one end of the first side rod (15) is provided with connecting frame (14), and the motor (12) is installed on the connecting frame (14).