Rust-proof treatment device for alloy anti-skid nails

By designing a cover plate and a motor-driven rotating roller in conjunction with a sliding frame, the anti-slip nails are continuously tumbled in the rust-preventive oil, solving the problem of uneven contact on the surface of the anti-slip nails, achieving full contact and rapid drying, and significantly improving the rust-preventive treatment effect.

CN224195108UActive Publication Date: 2026-05-05ZHUZHOU JINXIN CEMENTED CARBIDE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHUZHOU JINXIN CEMENTED CARBIDE
Filing Date
2025-05-28
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In existing rust-preventive oil immersion rust-preventive treatment devices, the alloy anti-slip nails pile up together, causing some surfaces to be unable to contact the rust-preventive oil, making it difficult to ensure full contact and affecting the rust-preventive treatment effect.

Method used

An alloy anti-slip nail rust prevention treatment device was designed. By setting a cover plate and a motor-driven rotating roller in conjunction with a sliding frame, the material frame is made to vibrate up and down continuously, ensuring that the anti-slip nails are fully in contact with the rust-preventive oil. The device also achieves rapid drying through the cooperation of a cylinder and a drying chamber, thereby improving the rust prevention treatment effect.

Benefits of technology

It achieves full contact between the anti-slip nails and the rust-preventive oil, significantly improving the rust prevention effect, and further enhances the overall efficiency of the rust prevention treatment through rapid drying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-rust treatment device for alloy anti-skid nails, which belongs to the technical field of alloy anti-skid nails and comprises a base plate, two first supports and two second supports are fixedly mounted on the upper surface of the base plate, a treatment box and a drying box are fixedly mounted between the two first supports, and openings are formed in the upper surfaces of the treatment box and the drying box. A backflow pipe is installed between the treatment box body and the drying box body in a communicating mode, a discharge pipe is installed on the side face of the treatment box body in a penetrating mode, and a drying heating plate is fixedly installed on the inner wall of the drying box body. A cover plate is arranged to be matched with the treatment box body for use, a material frame is detachably mounted below a mounting plate, a rotating plate is driven by a motor to rotate, and a rotating roller is matched with a sliding frame to drive the mounting plate to drive the material frame to move up and down, so that the material frame can continuously oscillate up and down, and anti-skid nails can continuously roll over; and the anti-skid nail can make comprehensive contact with anti-rust oil, and the anti-rust treatment effect on the anti-skid nail is greatly improved.
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Description

Technical Field

[0001] This utility model belongs to the field of alloy anti-slip nail technology, specifically relating to an alloy anti-slip nail rust prevention treatment device. Background Technology

[0002] Studs are fasteners designed to increase grip and traction. They are typically installed on objects where stability is needed, such as shoe soles and tires, to enhance grip on wet or soft surfaces. Studs are usually designed with sharp, protruding structures that penetrate deep into the ground to provide additional traction.

[0003] Alloy materials are most commonly used in anti-slip studs. Alloy anti-slip studs need to be rust-proofed before production. For batches of alloy anti-slip studs, the common rust-proofing method is immersion in rust-preventive oil. However, existing rust-preventive oil immersion treatment devices directly immerse the anti-slip studs in the treatment tank containing rust-preventive oil. When anti-slip studs are piled up together, the surface of the studs may not come into contact with the rust-preventive oil, making it difficult to ensure full contact with the rust-preventive oil. Therefore, we propose an alloy anti-slip stud rust-proofing treatment device. Utility Model Content

[0004] The purpose of this utility model is to provide an alloy anti-slip nail rust prevention treatment device to solve the problem mentioned in the background art that the existing rust prevention oil immersion rust prevention treatment devices directly put the anti-slip nails into the treatment box containing rust prevention oil for immersion. When the anti-slip nails are piled up together, the nail surface is prone to not contacting the rust prevention oil, making it difficult to ensure full contact with the rust prevention oil.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an alloy anti-slip nail rust prevention treatment device, comprising a base plate, two brackets 1 and two brackets 2 fixedly mounted on the upper surface of the base plate, a treatment chamber and a drying chamber, both with open upper surfaces, fixedly mounted between the two brackets 1, a return pipe connected between the treatment chamber and the drying chamber, a discharge pipe through the side of the treatment chamber, a drying heating plate fixedly mounted on the inner wall of the drying chamber, a sliding plate slidably mounted between the two brackets 2, and a fixed plate on the side of one of the brackets 2. There is a cylinder one, the piston rod end of the cylinder one is fixedly connected to a sliding plate, a cylinder two is fixedly mounted on the sliding plate, a cover plate is fixedly mounted on the bottom end of the cylinder two, the cover plate is used in conjunction with the processing box and the drying box, a motor is fixedly mounted on the surface of the cover plate, a rotating plate is fixedly mounted on the end of the output shaft of the motor, a rotating roller is rotatably mounted on the side of the rotating plate, a sliding frame is slidably mounted on the cover plate, the rotating roller rolls against the inner wall of the sliding frame, an mounting plate is fixedly mounted on the bottom end of the sliding frame, and a material frame is detachably mounted on the lower surface of the mounting plate.

[0006] Using the above scheme, a cover plate is set up to work with the processing chamber. The material frame is detachably installed under the mounting plate. A motor drives the rotating plate to rotate, and the rotating rollers and sliding frame drive the mounting plate to move the material frame up and down. This causes the material frame to oscillate continuously, allowing the anti-slip nails to roll continuously and ensuring that the anti-slip nails come into full contact with the rust-preventive oil. This greatly improves the rust prevention effect of the anti-slip nails. By setting up cylinder one and cylinder two to work with the processing chamber and the drying chamber, rust prevention is performed when the cover plate is closed with the processing chamber. After rust prevention, the cover plate moves to close with the drying chamber, at which point the rust-preventive oil dries quickly, which can further improve the rust prevention effect.

[0007] In the above scheme, it should be noted that cylinder one, cylinder two, motor and drying heating plate are all electrically connected to an external power supply.

[0008] In a preferred embodiment, a plurality of guide rods are fixedly installed between the two brackets, and a plurality of guide sleeves are fixedly installed on the side of the sliding plate, with the guide sleeves slidably installed on the outer surface of the guide rods at corresponding positions.

[0009] By using the above solution, the guide rod and guide sleeve can be used to slide and guide the sliding plate, improve the stability of the movement, and prevent the sliding plate and the cover plate below the sliding plate from shaking.

[0010] In a preferred embodiment, a plurality of guide rods are slidably mounted on the sliding plate, and the bottom end of the guide rods is fixedly connected to the cover plate.

[0011] By adopting the above scheme and using the guide rod two in conjunction, the up-and-down movement of the cover plate can be guided, improving the stability of the movement and preventing the cover plate from shaking.

[0012] In a preferred embodiment, the lower surface of the cover plate is provided with an embedded groove, and the inner wall of the embedded groove is provided with a sealing ring.

[0013] By using the above solution, the embedded groove in conjunction with the sealing ring can ensure a good sealing effect when the cover plate comes into contact with the processing chamber or drying chamber, thus preventing rust-preventive oil from splashing out.

[0014] In a preferred embodiment, a plurality of sliding rods are slidably mounted on the cover plate, and the bottom ends of the sliding rods are fixedly connected to the mounting plate.

[0015] By using the above solution, the sliding rod can guide the up and down movement of the mounting plate, improving movement stability and preventing wobbling.

[0016] In a preferred embodiment, limit plates are rotatably mounted on the outer surfaces of both ends of the roller, and the limit plates are fitted and arranged on the side of the sliding frame.

[0017] By using the above solution and the use of a limiting plate, it can be ensured that the rotating roller will not detach from the sliding frame when used with the sliding frame, thus achieving a good limiting effect.

[0018] In a preferred embodiment, a plurality of trapezoidal inserts are fixedly mounted on the upper surface of the material frame, and a plurality of trapezoidal slots are provided on the lower surface of the mounting plate, with the trapezoidal inserts inserted into the inner wall of the trapezoidal slots.

[0019] By using the above solution, a trapezoidal insert plate is inserted into a trapezoidal slot, which facilitates the insertion of the material frame and can prevent the material frame from shaking and separating from the mounting plate.

[0020] In a preferred embodiment, a positioning rod is slidably mounted on the mounting plate, and an operating plate is fixedly mounted on the top of the positioning rod. A positioning groove for the positioning rod to be inserted is provided on the upper surface of the material frame. A cavity is provided on the mounting plate opposite the positioning rod, and a spring is fixedly mounted on the inner wall of the cavity. A limiting plate is fixedly mounted on the outer surface of the positioning rod, and the limiting plate is located inside the cavity and fixedly connected to the spring.

[0021] Using the above solution, the spring force can be used to drive the positioning rod to quickly insert into the positioning slot, thereby realizing the installation and locking of the material frame. The setting of the limit plate can prevent the positioning rod from sliding out of the positioning slot, thus achieving a good limiting effect.

[0022] Compared with the prior art, the beneficial effects of this utility model are:

[0023] This alloy anti-slip nail rust prevention treatment device uses a cover plate in conjunction with the treatment box. The material frame can be detachably installed under the mounting plate. The rotating plate is driven by a motor, and the rotating roller and sliding frame drive the mounting plate to move the material frame up and down. This causes the material frame to oscillate up and down continuously, allowing the anti-slip nails to roll continuously. This ensures that the anti-slip nails come into full contact with the rust-preventive oil, greatly improving the rust prevention effect of the anti-slip nails.

[0024] The alloy anti-slip nail rust prevention treatment device uses cylinder one and cylinder two in conjunction with the treatment chamber and the drying chamber. When the cover plate is closed with the treatment chamber, rust prevention treatment is performed. After rust prevention treatment, the cover plate moves to close with the drying chamber, at which point the rust-preventive oil is dried quickly, which can further improve the rust prevention treatment effect. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of this utility model;

[0026] Figure 2 This is a schematic diagram of the structure of the bracket of this utility model;

[0027] Figure 3 This is a schematic diagram of the structure of the second bracket of this utility model;

[0028] Figure 4 This is a structural schematic diagram of the cover plate, mounting plate, and material frame of this utility model;

[0029] Figure 5 This is a schematic diagram of the rotating plate and sliding frame of this utility model;

[0030] Figure 6 This is an exploded structural diagram of the mounting plate and material frame of this utility model;

[0031] Figure 7 This is a structural schematic diagram of the cross-section of the mounting plate of this utility model.

[0032] In the diagram: 1. Base plate; 2. Support 1; 3. Processing chamber; 4. Drying chamber; 5. Return pipe; 6. Discharge pipe; 7. Drying heating plate; 8. Support 2; 9. Cylinder 1; 10. Sliding plate; 11. Cylinder 2; 12. Cover plate; 13. Motor; 14. Rotating plate; 15. Rotating roller; 16. Sliding frame; 17. Mounting plate; 18. Material box; 19. Guide rod 1; 20. Guide sleeve; 21. Guide rod 2; 22. Sealing ring; 23. Sliding rod; 24. Limiting plate; 25. Trapezoidal insert plate; 26. Positioning rod; 27. Limiting plate; 28. Spring; 29. ​​Operation panel. Detailed Implementation

[0033] Please see Figure 1-7This utility model provides an alloy anti-slip nail rust prevention treatment device, including a base plate 1. Two brackets 1 2 and two brackets 2 8 are fixedly installed on the upper surface of the base plate 1. A treatment chamber 3 and a drying chamber 4, both with open upper surfaces, are fixedly installed between the two brackets 1 2. A return pipe 5 is installed between the treatment chamber 3 and the drying chamber 4. A discharge pipe 6 is installed through the side of the treatment chamber 3. A drying heating plate 7 is fixedly installed on the inner wall of the drying chamber 4. A sliding plate 10 is slidably installed between the two brackets 2 8. A cylinder 1 9 is fixedly installed on the side of one of the brackets 2 8. The piston rod end of the cylinder 1 9 A cylinder 11 is fixedly connected to a sliding plate 10. A cover plate 12 is fixedly installed on the bottom of the cylinder 11. The cover plate 12 is used in conjunction with the processing box 3 and the drying box 4. A motor 13 is fixedly installed on the surface of the cover plate 12. A rotating plate 14 is fixedly installed at the end of the output shaft of the motor 13. A rotating roller 15 is rotatably installed on the side of the rotating plate 14. A sliding frame 16 is slidably installed on the cover plate 12. The rotating roller 15 rolls against the inner wall of the sliding frame 16. An installation plate 17 is fixedly installed at the bottom of the sliding frame 16. A material frame 18 is detachably installed on the lower surface of the installation plate 17.

[0034] By using the cover plate 12 in conjunction with the processing chamber 3, the material frame 18 can be detachably installed under the mounting plate 17. The rotating plate 14 is driven to rotate by the motor 13, and the rotating roller 15, in conjunction with the sliding frame 16, drives the mounting plate 17 to move the material frame 18 up and down. This causes the material frame 18 to oscillate continuously, allowing the anti-slip nails to roll continuously and ensuring that the anti-slip nails come into full contact with the anti-rust oil, greatly improving the anti-rust treatment effect of the anti-slip nails. By using cylinders 9 and 11 in conjunction with the processing chamber 3 and the drying chamber 4, the anti-rust treatment is performed when the cover plate 12 is closed with the processing chamber 3. After the anti-rust treatment, the cover plate 12 moves to close with the drying chamber 4, at which point the anti-rust oil dries quickly, which can further improve the anti-rust treatment effect.

[0035] Several guide rods 19 are fixedly installed between the two brackets 28. Several guide sleeves 20 are fixedly installed on the side of the sliding plate 10. The guide sleeves 20 are slidably installed on the outer surface of the guide rods 19 at the corresponding positions. By using the guide rods 19 in conjunction with the guide sleeves 20, the sliding plate 10 can be slidably supported and guided, improving the stability of the movement and preventing the sliding plate 10 and the cover plate 12 below the sliding plate 10 from shaking.

[0036] Several guide rods 21 are slidably mounted on the sliding plate 10. The bottom end of the guide rods 21 is fixedly connected to the cover plate 12. By using the guide rods 21 in conjunction, the up and down movement of the cover plate 12 can be guided, improving the stability of the movement and preventing the cover plate 12 from shaking.

[0037] The lower surface of the cover plate 12 is provided with an embedded groove, and the inner wall of the embedded groove is provided with a sealing ring 22. By using the embedded groove in conjunction with the sealing ring 22, a good sealing effect can be ensured when the cover plate 12 comes into contact with the processing chamber 3 or the drying chamber 4, and the anti-rust oil is prevented from splashing out.

[0038] Several sliding rods 23 are slidably mounted on the cover plate 12. The bottom end of the sliding rod 23 is fixedly connected to the mounting plate 17. The sliding rods 23 can guide the up and down movement of the mounting plate 17, improve the stability of the movement, and prevent shaking.

[0039] Limiting plates 24 are rotatably installed on the outer surfaces of both ends of the rotating roller 15. The limiting plates 24 are attached to the side of the sliding frame 16. By using the limiting plates 24, it can be ensured that the rotating roller 15 will not detach from the sliding frame 16 when they are used together, thus achieving a good limiting effect.

[0040] Several trapezoidal insert plates 25 are fixedly installed on the upper surface of the material frame 18, and several trapezoidal slots are opened on the lower surface of the mounting plate 17. The trapezoidal insert plates 25 are inserted into the inner wall of the trapezoidal slots. By inserting the trapezoidal insert plates 25 into the trapezoidal slots, it is convenient to insert the material frame 18 and can prevent the material frame 18 from shaking and separating from the mounting plate 17.

[0041] A positioning rod 26 is slidably mounted on the mounting plate 17. An operating plate 29 is fixedly mounted on the top of the positioning rod 26. A positioning groove for the positioning rod 26 to be inserted is opened on the upper surface of the material frame 18. A cavity is opened on the mounting plate 17 directly opposite the positioning rod 26, and a spring 28 is fixedly installed on the inner wall of the cavity. A limiting plate 27 is fixedly installed on the outer surface of the positioning rod 26. The limiting plate 27 is located inside the cavity and is fixedly connected to the spring 28. The elastic force of the spring 28 can drive the positioning rod 26 to quickly insert into the positioning groove, thereby realizing the installation and locking of the material frame 18. The setting of the limiting plate 27 can prevent the positioning rod 26 from slipping out of the positioning groove, thus achieving a good limiting effect.

[0042] In use, first, start cylinder 211 to drive cover plate 12 upward, which in turn drives mounting plate 17 to move material frame 18 upward. Then, pull operating plate 29 to drive positioning rod 26 to move. Positioning rod 26 disengages from positioning groove and spring 28 deforms. At this time, material frame 18 is unlocked. Slide out material frame 18 and put anti-slip nails to be treated into material frame 18. Then, insert material frame 18 into trapezoidal groove through trapezoidal slider and use the elastic force of spring 28 to drive positioning rod 26 into positioning groove to lock material frame 18. Then, add anti-rust oil into processing box 3, start cylinder 21 to drive cover plate 12 downward, and cylinder 19 drives sliding plate 10 horizontally. The movement is adjusted so that the cover plate 12 fits perfectly on the surface of the processing chamber 3. At this time, the material frame 18 enters the processing chamber 3 and is immersed in anti-rust oil. Then, the motor 13 is started, which drives the rotating plate 14 to rotate. Then, the rotating roller 15 and the sliding frame 16 work together to drive the mounting plate 17 to drive the material frame 18 to move up and down, realizing the vibration of the anti-slip nails. This ensures that the anti-slip nails and anti-rust oil are in full contact. After processing, the control cylinders 9 and 11 drive the cover plate 12 to detach from the processing chamber 3 and fit on the surface of the drying chamber 4. Then, the drying heating plate 7 is started to quickly dry the anti-slip nails. The residual anti-rust oil that falls into the drying chamber 4 can flow back into the processing chamber 3 through the return pipe 5.

Claims

1. A rust-proof treatment device for alloy anti-slip studs, characterized in that: The system includes a base plate (1), on the upper surface of which two brackets (2) and two brackets (8) are fixedly installed. A processing chamber (3) and a drying chamber (4) with open upper surfaces are fixedly installed between the two brackets (2). A return pipe (5) is installed between the processing chamber (3) and the drying chamber (4). A discharge pipe (6) is installed through the side of the processing chamber (3). A drying heating plate (7) is fixedly installed on the inner wall of the drying chamber (4). A sliding plate (10) is slidably installed between the two brackets (8). A cylinder (9) is fixedly installed on the side of one of the brackets (8). The piston rod end of the cylinder (9) is fixedly connected to the sliding plate (10). A cylinder two (11) is fixedly installed on the moving plate (10). A cover plate (12) is fixedly installed at the bottom end of the cylinder two (11). The cover plate (12) is used in conjunction with the processing box (3) and the drying box (4). A motor (13) is fixedly installed on the surface of the cover plate (12). A rotating plate (14) is fixedly installed at the end of the output shaft of the motor (13). A rotating roller (15) is rotatably installed on the side of the rotating plate (14). A sliding frame (16) is slidably installed on the cover plate (12). The rotating roller (15) rolls against the inner wall of the sliding frame (16). An installation plate (17) is fixedly installed at the bottom end of the sliding frame (16). A material frame (18) is detachably installed on the lower surface of the installation plate (17).

2. The alloy anti-slip nail rust prevention treatment device according to claim 1, characterized in that: Several guide rods (19) are fixedly installed between the two brackets (8), and several guide sleeves (20) are fixedly installed on the side of the sliding plate (10). The guide sleeves (20) are slidably installed on the outer surface of the guide rods (19) at the corresponding positions.

3. The alloy anti-slip stud rust prevention treatment device according to claim 1, characterized in that: A plurality of guide rods (21) are slidably mounted on the sliding plate (10), and the bottom end of the guide rods (21) is fixedly connected to the cover plate (12).

4. The alloy anti-slip stud rust prevention treatment device according to claim 1, characterized in that: The lower surface of the cover plate (12) is provided with an embedded groove, and the inner wall of the embedded groove is provided with a sealing ring (22).

5. The alloy anti-slip stud rust prevention treatment device according to claim 1, characterized in that: A plurality of sliding rods (23) are slidably mounted on the cover plate (12), and the bottom end of the sliding rods (23) is fixedly connected to the mounting plate (17).

6. The alloy anti-slip nail rust prevention treatment device according to claim 1, characterized in that: Limiting plates (24) are rotatably mounted on the outer surfaces of both ends of the rotating roller (15), and the limiting plates (24) are attached to the side of the sliding frame (16).

7. The alloy anti-slip nail rust prevention treatment device according to claim 1, characterized in that: The upper surface of the material frame (18) is fixedly equipped with several trapezoidal inserts (25), and the lower surface of the mounting plate (17) is provided with several trapezoidal slots. The trapezoidal inserts (25) are inserted into the inner wall of the trapezoidal slots.

8. The alloy anti-slip stud rust prevention treatment device according to claim 1, characterized in that: A positioning rod (26) is slidably mounted on the mounting plate (17). An operating plate (29) is fixedly mounted on the top of the positioning rod (26). A positioning groove for the positioning rod (26) to be inserted is provided on the upper surface of the material frame (18). A cavity is provided on the mounting plate (17) opposite to the positioning rod (26), and a spring (28) is fixedly mounted on the inner wall of the cavity. A limiting plate (27) is fixedly mounted on the outer surface of the positioning rod (26). The limiting plate (27) is located inside the cavity and is fixedly connected to the spring (28).