Rust removal device for metal part machining
By designing a rust removal device for metal parts processing, a rotating component is used to drive the rust removal cylinder and rust removal cover to rotate. Combined with friction and cleaning rust removal liquid, the problem of low efficiency in immersion rust removal is solved, achieving efficient rust removal and convenient operation.
Patent Information
- Application Number
- CN202520142241.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing technologies that rely solely on immersion for rust removal are inefficient, resulting in low work efficiency in metal parts processing.
A rust removal device for metal parts processing has been designed, including a rust removal box, a rotating component, an adjusting component, a rust removal cylinder, a rust removal cover, and a rust removal ball. The rotating component drives the rust removal cylinder and the rust removal cover to rotate, causing the rust removal ball to rub against the metal parts. Combined with an environmentally friendly cleaning and rust removal liquid, the rust removal effect and efficiency are improved.
It improves the rust removal effect and efficiency, solves the problem of low work efficiency caused by simple soaking rust removal, and makes the operation more convenient.
Smart Images

Figure CN223933343U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of metal parts processing technology, and in particular to a rust removal device for metal parts processing. Background Technology
[0002] Metal parts refer to a collective term for metal blocks, rods, tubes, etc., of various specifications and shapes manufactured from metal materials. During long-term use, metals accumulate oxide and rust layers due to factors such as air, moisture, and oil, leading to defects such as corrosion, cracking, and deformation on the metal surface, significantly reducing the quality and lifespan of metal products. Removing the oxide layer and rust can effectively eliminate potential defects, ensuring the quality and safety of metal products. It also improves the surface quality and aesthetics of the metal, facilitating painting and spraying. Different materials and shapes of parts are suitable for different rust removal methods. Immersion cleaning involves completely immersing the metal parts in a professional cleaning solution, using acid and chemical components to decompose rust. This method is suitable for parts of various shapes and sizes. However, simple immersion rust removal is inefficient, resulting in low work efficiency. To address these issues, we have developed a rust removal device for metal parts processing. Utility Model Content
[0003] This utility model discloses a rust removal device for metal parts processing, which aims to solve the technical problem that the efficiency of simple immersion rust removal is low, resulting in low work efficiency.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A rust removal device for processing metal parts includes a rust removal box, a rotating assembly, an adjusting assembly, a rust removal cylinder, a rust removal cover, and a rust removal ball. The adjusting assembly is connected to the rust removal box via the rotating assembly. The rust removal cylinder and the rust removal cover are connected to the rust removal box via the adjusting assembly. The rust removal ball is placed inside the rust removal cylinder and the rust removal cover. The rotating assembly includes a rotating shaft. The rotating shafts are symmetrically rotatably connected inside the rust removal box. One of the rotating shafts extends into the rust removal box and is fixedly mounted on a rotating disk. A motor is fixed to the outside of the rust removal box near the rotating disk via a mounting bracket. The adjusting assembly includes a mounting block, which is fixed to one side of the rotating disk. A fixing plate is symmetrically fixedly mounted on the side of the rust removal cylinder near the mounting block. A rotating rod is rotatably connected inside the mounting block, with both ends of the rotating rod penetrating the fixing plate and fixedly connected to it. A fixing frame is fixedly mounted on one side of the other rotating shaft. The fixing frame is connected to the rust removal cover via an auxiliary assembly.
[0006] During use, the auxiliary component moves the rust-removing cover away from the rust-removing cylinder. Then, the adjusting component tilts the rust-removing cylinder and the rust-removing cover upwards, allowing the metal parts to be rusted and the environmentally friendly cleaning and rust-removing liquid to be added into the rust-removing cylinder. Next, the auxiliary component moves the rust-removing cover towards the rust-removing cylinder, and the adjusting component resets the rust-removing cylinder and the rust-removing cover. Then, the rotating component drives the shaft to rotate, which in turn rotates the rust-removing cylinder and the rust-removing cover, ensuring full contact between the metal parts to be rusted and the environmentally friendly cleaning and rust-removing liquid inside the rust-removing cylinder. The friction between the rust-removing balls and the rust-removing metal parts further improves the rust removal effect and efficiency. This solves the technical problem of low efficiency caused by simple immersion rust removal in related technologies.
[0007] In a preferred embodiment, the auxiliary component includes a mounting plate slidably connected inside a fixed frame. An electric telescopic rod is fixedly installed around the inside of the mounting plate. A first fixing block is fixedly installed on the outside of the rust removal cover and near the electric telescopic rod. The output end of the electric telescopic rod is fixedly connected to the corresponding first fixing block. A sliding rod is fixedly installed inside the mounting plate. Sliding grooves are provided on both sides of the fixed frame. The two ends of the sliding rod pass through the sliding grooves on both sides and are slidably connected to the sliding grooves.
[0008] By setting auxiliary components, the output end of the electric telescopic rod drives the first fixed block to move, which in turn drives the rust removal cover to move left and right, making it easier to open the space formed between the rust removal cylinder and the rust removal cover, making it more convenient to use.
[0009] In a preferred embodiment, the mounting block has an internal mounting groove, a worm gear is fixedly mounted on the outside of the rotating rod and inside the mounting groove, a worm is rotatably connected inside the mounting groove and near the worm gear, and a second motor is fixed to the top of the mounting block via a second mounting bracket, with the output end of the second motor fixedly connected to the worm.
[0010] By setting up a worm gear and worm inside the mounting slot, with the worm gear and worm gear meshing together, it is convenient to drive the worm gear to rotate through the output end of the No. 2 motor, which in turn drives the worm gear to rotate. This causes the rust removal cylinder and rust removal cover to tilt upwards, making it easier to add the metal parts to be rusted and the environmentally friendly cleaning and rust removal liquid inside the rust removal cylinder. Conversely, it causes the rust removal cylinder and rust removal cover to tilt downwards, making it easier to pour out the rust-removed metal parts and environmentally friendly cleaning and rust removal liquid inside the rust removal cylinder, thus making the operation more convenient.
[0011] In a preferred embodiment, a second fixing block is fixedly installed on the outside of the rust removal cylinder and near the first fixing block. A limit rod is fixedly installed on one side of the first fixing block, and the limit rod passes through the corresponding second fixing block and is slidably connected to the second fixing block.
[0012] By setting a limit rod fixedly installed on one side of the first fixing block, and having the limit rod slide through the corresponding second fixing block, the stability of the connection between the rust removal cylinder and the rust removal cover is improved, and the rotation component can drive the rust removal cylinder and the rust removal cover to rotate stably.
[0013] In a preferred embodiment, the rust removal cylinder and the rust removal cover are respectively provided with a sealing ring and a sealing groove that cooperate with each other on the side that are close to each other.
[0014] By setting sealing rings and sealing grooves that cooperate with each other on the side of the rust removal cylinder and the rust removal cover, the tightness of the connection between the rust removal cylinder and the rust removal cover can be improved.
[0015] In a preferred embodiment, the rust removal box is provided with a door, and a control panel is fixedly installed on the door. The No. 1 motor, the No. 2 motor, and the electric telescopic rod are all electrically connected to the control panel.
[0016] By setting the No. 1 motor, No. 2 motor, and electric telescopic rod to be electrically connected to the control panel, operation becomes more convenient.
[0017] The rust removal device for metal parts processing provided by this utility model has the following advantages:
[0018] Firstly, during use, the auxiliary component moves the rust-removing cover away from the rust-removing cylinder. Then, the adjusting component tilts the rust-removing cylinder and the rust-removing cover upwards, allowing the metal parts to be rusted and the environmentally friendly cleaning and rust-removing liquid to be added into the rust-removing cylinder. Next, the auxiliary component moves the rust-removing cover towards the rust-removing cylinder, and the adjusting component resets the rust-removing cylinder and the rust-removing cover. Then, the rotating component drives the shaft to rotate, which in turn rotates the rust-removing cylinder and the rust-removing cover, ensuring full contact between the metal parts to be rusted and the environmentally friendly cleaning and rust-removing liquid inside the rust-removing cylinder. The friction between the rust-removing balls and the rust-removing metal parts improves the rust removal effect and efficiency. This solves the technical problem of low efficiency caused by simple immersion rust removal in related technologies. Attached Figure Description
[0019] Figure 1 This is a three-dimensional schematic diagram of a rust removal device for processing metal parts according to the present invention.
[0020] Figure 2 This is a three-dimensional cross-sectional schematic diagram of a rust removal device for processing metal parts according to the present invention.
[0021] Figure 3 This is a three-dimensional schematic diagram showing the connection of the rotating component and the adjusting component in a rust removal device for metal parts processing proposed in this utility model.
[0022] Figure 4for Figure 2 Enlarged view of point A in the middle.
[0023] In the attached diagram: 1. Rust removal box; 11. Box door; 2. Rotating assembly; 21. Rotating shaft; 22. Mounting bracket No. 1; 23. Motor No. 1; 24. Rotating disc; 3. Adjusting assembly; 31. Mounting block; 32. Fixing plate; 33. Rotating rod; 34. Mounting groove; 35. Worm gear; 36. Worm; 37. Mounting bracket No. 2; 38. Motor No. 2; 39. Auxiliary assembly; 391. Mounting plate; 392. Electric telescopic rod; 393. Fixing block No. 1; 394. Slide groove; 395. Sliding rod; 396. Fixing block No. 2; 397. Limiting rod; 310. Fixing frame; 4. Rust removal cylinder; 5. Rust removal cover; 6. Rust removal ball. Detailed Implementation
[0024] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and marked in the accompanying drawings can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely represents selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0025] The rust removal device for metal parts processing disclosed in this utility model is mainly used in the scenario of rust removal for metal parts.
[0026] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4A rust removal device for metal parts processing includes: a rust removal box 1, a rotating assembly 2, an adjusting assembly 3, a rust removal cylinder 4, a rust removal cover 5, and a rust removal ball 6. The adjusting assembly 3 is connected to the inside of the rust removal box 1 via the rotating assembly 2. The rust removal cylinder 4 and the rust removal cover 5 are connected to the inside of the rust removal box 1 via the adjusting assembly 3. The rust removal ball 6 is placed inside the rust removal cylinder 4 and the rust removal cover 5. The rotating assembly 2 includes a rotating shaft 21. The rotating shafts 21 are symmetrically rotatably connected inside the rust removal box 1. One of the rotating shafts 21 extends into the inside of the rust removal box 1 and is fixedly mounted with a rotating disk 24. The outer side of the rust removal box 1 and... A motor 23 is fixed near the rotating disk 24 via a mounting bracket 22. The adjusting assembly 3 includes a mounting block 31, which is fixed to one side of the rotating disk 24. A fixing plate 32 is symmetrically fixed to one side of the rust removal cylinder 4 near the mounting block 31. A rotating rod 33 is rotatably connected inside the mounting block 31. Both ends of the rotating rod 33 pass through the fixing plate 32 and are fixedly connected to the fixing plate 32. A fixing bracket 310 is fixedly installed on one side of another rotating shaft 21. The fixing bracket 310 is connected to the rust removal cover 5 via an auxiliary assembly 39 on the side near the rust removal cover 5.
[0027] In this embodiment, during use, the auxiliary component 39 moves the rust-removing cover 5 away from the rust-removing cylinder 4. Then, the adjusting component 3 tilts the rust-removing cylinder 4 and the rust-removing cover 5 upwards, allowing the metal parts to be rusted and the environmentally friendly cleaning and rust-removing liquid to be added into the rust-removing cylinder 4. Next, the auxiliary component 39 moves the rust-removing cover 5 towards the rust-removing cylinder 4. Then, the adjusting component 3 resets the rust-removing cylinder 4 and the rust-removing cover 5. Then, the rotating component 2 drives the output of the first motor 23 to rotate the rotating shaft 21, which in turn rotates the rust-removing cylinder 4 and the rust-removing cover 5. This ensures that the metal parts to be rusted and the environmentally friendly cleaning and rust-removing liquid inside the rust-removing cylinder 4 are in full contact. Furthermore, the friction between the rust-removing ball 6 and the rust-removing metal parts improves the rust removal effect and efficiency. This solves the technical problem in related technologies where simple immersion rust removal is inefficient, leading to low work efficiency.
[0028] The auxiliary component 39 includes a mounting plate 391, which is slidably connected inside the fixing frame 310. An electric telescopic rod 392 is fixedly installed around the inside of the mounting plate 391. A fixing block 393 is fixedly installed on the outside of the rust-removing cover 5, close to the electric telescopic rod 392. The output end of the electric telescopic rod 392 is fixedly connected to the corresponding fixing block 393. A sliding rod 395 is fixedly installed inside the mounting plate 391. Sliding grooves 394 are provided on both sides of the fixing frame 310. The two ends of the sliding rod 395 pass through the sliding grooves 394 on both sides and are slidably connected to them. By setting the auxiliary component 39, the output end of the electric telescopic rod 392 drives the fixing block 393 to move, which in turn drives the rust-removing cover 5 to move left and right, making it easier to open the space between the rust-removing cylinder 4 and the rust-removing cover 5, thus making it more convenient to use.
[0029] The mounting block 31 has an internal mounting groove 34. A worm gear 35 is fixedly installed on the outside of the rotating rod 33 and inside the mounting groove 34. A worm 36 is rotatably connected inside the mounting groove 34 and near the worm gear 35. A second motor 38 is fixed to the top of the mounting block 31 via a second mounting bracket 37. The output end of the second motor 38 is fixedly connected to the worm 36. By setting the worm gear 35 and worm 36 inside the mounting groove 34, and the worm gear 35 and worm 36 are meshed, it is convenient for the output end of the second motor 38 to rotate the worm 36, which in turn drives the worm gear 35 to rotate. This causes the rust removal cylinder 4 and the rust removal cover 5 to tilt upwards, making it easier to add the metal parts to be rusted and the environmentally friendly cleaning and rust removal liquid inside the rust removal cylinder 4. It also causes the rust removal cylinder 4 and the rust removal cover 5 to tilt downwards, making it easier to pour out the rust-removed metal parts and the environmentally friendly cleaning and rust removal liquid inside the rust removal cylinder 4, making the operation more convenient.
[0030] A second fixing block 396 is fixedly installed on the outer side of the rust removal cylinder 4 and near the first fixing block 393. A limiting rod 397 is fixedly installed on one side of the first fixing block 393. The limiting rod 397 passes through the corresponding second fixing block 396 and is slidably connected to the second fixing block 396. By setting the limiting rod 397 fixedly installed on one side of the first fixing block 393 and the limiting rod 397 passing through the corresponding second fixing block 396 and being slidably connected to the second fixing block 396, it is beneficial to improve the stability of the connection between the rust removal cylinder 4 and the rust removal cover 5, and facilitate the stable rotation of the rust removal cylinder 4 and the rust removal cover 5 driven by the rotating component 2.
[0031] Among them, the rust removal cylinder 4 and the rust removal cover 5 are respectively provided with a sealing ring and a sealing groove that cooperate with each other on the side that are close to each other; by providing a sealing ring and a sealing groove that cooperate with each other on the side that are close to each other, it is beneficial to improve the tightness of the connection between the rust removal cylinder 4 and the rust removal cover 5.
[0032] The rust removal box 1 has a door 11 on its surface, and a control panel is fixedly installed on the surface of the door 11. Motor 23, Motor 38, and the electric telescopic rod 392 are all electrically connected to the control panel. By electrically connecting Motor 23, Motor 38, and the electric telescopic rod 392 to the control panel, operation becomes more convenient.
[0033] Working principle: During use, the auxiliary component 39 moves the rust removal cover 5 away from the rust removal cylinder 4. Then, the adjusting component 3 tilts the rust removal cylinder 4 and the rust removal cover 5 upwards, allowing the metal parts to be rusted and the environmentally friendly cleaning and rust removal liquid to be added into the rust removal cylinder 4. The auxiliary component 39 then moves the rust removal cover 5 towards the rust removal cylinder 4. The adjusting component 3 then resets the rust removal cylinder 4 and the rust removal cover 5. The rotating component 2 and the output of the first motor 23 drive the rotating shaft 21 to rotate, which in turn drives the rust removal cylinder 4 and the rust removal cover 5 to rotate. This ensures that the metal parts to be rusted and the environmentally friendly cleaning and rust removal liquid inside the rust removal cylinder 4 are in full contact. Furthermore, the friction between the rust removal ball 6 and the rust removal metal parts improves the rust removal effect and efficiency.
[0034] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. The substitutions may be replacements of some structures, devices, or method steps, or they may be complete technical solutions. Equivalent substitutions or modifications made based on the technical solution and inventive concept of this utility model should all be covered within the protection scope of this utility model.
Claims
1. A rust removal device for processing metal parts, comprising a rust removal box (1), a rotating assembly (2), an adjusting assembly (3), a rust removal cylinder (4), a rust removal cover (5), and a rust removal ball (6), characterized in that, The rust removal box (1) is connected to an adjusting component (3) via a rotating component (2). The rust removal box (1) is connected to a rust removal cylinder (4) and a rust removal cover (5) via the adjusting component (3). The rust removal ball (6) is placed inside the rust removal cylinder (4) and the rust removal cover (5). The rotating component (2) includes a rotating shaft (21). The rust removal box (1) is symmetrically connected to the rotating shaft (21). One of the rotating shafts (21) extends into the rust removal box (1) and is fixedly mounted on a rotating disk (24). A motor is fixed to the outside of the rust removal box (1) near the rotating disk (24) via a mounting bracket (22). 23) The adjustment component (3) includes a mounting block (31), which is fixed on one side of the rotating disk (24). The rust removal cylinder (4) is symmetrically fixed with a fixing plate (32) on one side near the mounting block (31). A rotating rod (33) is rotatably connected inside the mounting block (31). The two ends of the rotating rod (33) pass through the fixing plate (32) and are fixedly connected to the fixing plate (32). A fixing bracket (310) is fixedly installed on one side of another rotating shaft (21). The fixing bracket (310) is connected to the rust removal cover (5) via an auxiliary component (39) on one side near the rust removal cover (5).
2. The rust removal device for metal parts processing according to claim 1, characterized in that, The auxiliary component (39) includes a mounting plate (391), which is slidably connected inside the fixing frame (310). An electric telescopic rod (392) is fixedly installed around the inside of the mounting plate (391). A fixing block (393) is fixedly installed on the outside of the rust removal cover (5) and close to the electric telescopic rod (392). The output end of the electric telescopic rod (392) is fixedly connected to the corresponding fixing block (393). A sliding rod (395) is fixedly installed inside the mounting plate (391). Sliding grooves (394) are provided on both sides of the fixing frame (310). The two ends of the sliding rod (395) pass through the sliding grooves (394) on both sides and are slidably connected to the sliding grooves (394).
3. The rust removal device for metal parts processing according to claim 1, characterized in that, The mounting block (31) has an installation groove (34) inside. A worm gear (35) is fixedly installed on the outside of the rotating rod (33) and inside the installation groove (34). A worm (36) is rotatably connected inside the installation groove (34) and on the side near the worm gear (35). A second motor (38) is fixed on the top of the mounting block (31) through a second mounting bracket (37). The output end of the second motor (38) is fixedly connected to the worm (36).
4. A rust removal device for metal parts processing according to claim 2, characterized in that, A second fixing block (396) is fixedly installed on the outside of the rust removal cylinder (4) and near the first fixing block (393). A limit rod (397) is fixedly installed on one side of the first fixing block (393). The limit rod (397) passes through the corresponding second fixing block (396) and is slidably connected to the second fixing block (396).
5. A rust removal device for metal parts processing according to claim 1, characterized in that, The rust removal cylinder (4) and the rust removal cover (5) are respectively provided with a sealing ring and a sealing groove that cooperate with each other on the side that are close to each other.
6. The rust removal device for metal parts processing according to claim 1, characterized in that, The rust removal box (1) is provided with a box door (11) on its surface. A control panel is fixedly installed on the surface of the box door (11). The No. 1 motor (23), the No. 2 motor (38), and the electric telescopic rod (392) are all electrically connected to the control panel.