Corrosion and rust prevention treatment device capable of being continuously operated
By designing an adjustable double-layer filter frame and filter screen frame structure, the problem of impurity contamination on workpieces during anti-corrosion and rust prevention treatment was solved, achieving efficient continuous cleaning and improving the effectiveness of anti-corrosion and rust prevention treatment.
Patent Information
- Application Number
- CN202422719317.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-11-08
AI Technical Summary
In existing technologies, workpieces are easily contaminated with dust and other impurities during anti-corrosion and anti-rust treatment, which affects the continuous processing effect.
A corrosion-resistant and rust-proof treatment device was designed, comprising a soaking frame, a support assembly, an inner frame, a filter assembly, and a cleaning assembly. It utilizes an electric telescopic rod to drive the slider rod and the double-layer filter frame to extend and retract at the water level, and combines fixing screws and clamps to achieve efficient retrieval and cleaning of impurities.
It improves the continuity of workpiece anti-corrosion and anti-rust treatment. Through the adjustable double-layer filter frame and filter screen frame structure, it realizes efficient cleaning of floating objects at different water levels and individual disassembly of impurities, thus enhancing the cleaning effect of the device.
Smart Images

Figure CN223832735U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of anti-corrosion and rust prevention treatment devices, and in particular to an anti-corrosion and rust prevention treatment device that can be operated continuously. Background Technology
[0002] Iron surface protection treatment refers to the technology of protecting iron surfaces through physical or chemical methods to prevent metal corrosion and rust. In the construction industry, common iron surface protection is mainly for rust prevention treatment of engineering materials such as steel bars. With the widespread application of reinforced concrete, iron surface protection treatment has received greater attention.
[0003] In the current technology, when workpieces are subjected to anti-corrosion and rust prevention treatment, dust and other impurities easily adhere to the workpieces, which seriously affects the subsequent continuous anti-corrosion and rust prevention treatment and reduces the effectiveness of anti-corrosion and rust prevention.
[0004] Therefore, this utility model provides a continuously operable anti-corrosion and anti-rust treatment device. Utility Model Content
[0005] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a continuously operable anti-corrosion and anti-rust treatment device.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: a continuously operable anti-corrosion and anti-rust treatment device, comprising an immersion frame, a support component provided in the middle of the immersion frame, an inner frame provided on the inner wall of the immersion frame, a filter component installed in the middle of the inner frame, and slide rails provided on both sides of the top of the immersion frame, with a cleaning component provided in the middle of the slide rails.
[0007] The cleaning assembly includes an electric telescopic rod, a slider rod, a double-layer filter frame, fixing screws, and locking blocks. The electric telescopic rod is installed at the rear end of the middle section of the slide rail, and a slider rod is provided at the driving end of the electric telescopic rod. A double-layer filter frame is installed at the bottom end of the slider rod. Fixing screws pass through the middle of the double-layer filter frame and the slider rod, and locking blocks are engaged on both sides of the double-layer filter frame.
[0008] In a preferred embodiment, the slider rod forms a telescopic structure with the double-layer filter frame via an electric telescopic rod, and the double-layer filter frame has a honeycomb structure.
[0009] The technical effect of adopting the above-mentioned further solution is as follows: a slide rail is provided at the top of the soaking frame, and the electric telescopic rod of the cleaning component is located at the rear end of the slide rail. By opening the electric telescopic rod, the sliding rod is driven to extend and retract at the water level at the top of the double-layer filter frame, which can remove the floating impurities at the top of the soaking frame. The rod of the double-layer filter frame is inserted into the sliding rod and is positioned and locked by fixing screws.
[0010] In a preferred embodiment, the slider rod is fixed to the double-layer filter frame by fixing screws, and the locking blocks are symmetrically distributed about the center line of the double-layer filter frame.
[0011] The technical effect of adopting the above-mentioned further solution is that by stretching the rod of the double-layer filter frame towards the lower end of the soaking frame, the retrieval height of the double-layer filter frame can be adjusted, which facilitates the cleaning of floating objects at different water levels. The inner cavity of the double-layer filter frame has a set of filter screen frames, which can be locked and secured by a locking block, making it easy to disassemble and clean the impurities inside the double-layer filter frame separately, which greatly improves the cleaning effect of the double-layer filter frame.
[0012] In a preferred embodiment, the support assembly includes a support leg, a connecting rod, a bolt, and anti-slip teeth. The support leg is located in the middle of the soaking frame, and the connecting rod is inserted into the middle of the support leg. The bolt passes through the middle of the support leg and the connecting rod, and the inner surface of the support leg is provided with anti-slip teeth.
[0013] The technical effect of adopting the above-mentioned further solution is that a support component is set in the middle section of the soaking frame, and a connecting rod is inserted in the middle of the two sets of support legs for installation.
[0014] In one preferred embodiment, the support leg is connected to the connecting rod by bolts to form a detachable structure, and the support leg and the anti-slip teeth are welded together.
[0015] The technical effect of adopting the above-mentioned further solution is that by inserting bolts through the middle of the support leg and the connecting rod, the soaking frame can be supported, and the anti-slip teeth can be used to increase the friction between the support leg and the soaking frame.
[0016] In a preferred embodiment, the filter assembly includes a filter frame, a connecting plate, and a clamping rod. The filter frame is installed in the middle of the inner frame, and the top of the filter frame is connected to the connecting plate. The bottom of the connecting plate is connected to the clamping rod.
[0017] The technical effect of adopting the above-mentioned further solution is that the user places the rusty object in the soaking frame and adds water-based rust inhibitor inside the soaking frame. The water-based rust inhibitor is a water-based rust-preventing solution that can effectively protect materials such as steel and iron and prevent rusting. The middle of the soaking frame is equipped with an inner frame, which makes it easy to place the filter frame of the filter assembly on the inner frame for installation.
[0018] In a preferred embodiment, the filter frame is connected to the connecting plate, and four sets of clamps are provided.
[0019] The technical effect of adopting the above-mentioned further solution is that the filter frame can be quickly assembled by engaging the connecting plate with the four corner slots of the inner frame, which facilitates the filtering and interception of impurities that fall off the object. Later, the connecting plate and the connecting rod of the filter frame can be removed from the slot of the connecting rod, which makes it easy to centrally pour out the impurities intercepted in the middle of the filter frame.
[0020] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0021] A slide rail is installed at the top of the soaking frame, and an electric telescopic rod of the cleaning component is located at the rear end of the slide rail. By opening the electric telescopic rod, the sliding rod is driven to extend and retract at the water level at the top of the soaking frame of the double-layer filter frame, which can remove impurities floating at the top of the soaking frame. The rod of the double-layer filter frame is inserted into the sliding rod and locked in place by fixing screws. Extending the rod of the double-layer filter frame towards the lower end of the soaking frame can adjust the retrieval height of the double-layer filter frame, which is convenient for cleaning floating objects at different water levels. There is a set of filter screen frames inside the double-layer filter frame. The double-layer filter frame can be locked in place by a locking block, which makes it easy to disassemble and clean the impurities inside the double-layer filter frame separately, which greatly improves the cleaning effect of the double-layer filter frame and facilitates continuous anti-corrosion and anti-rust soaking treatment for different workpieces in the future. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the anti-corrosion and rust prevention treatment device of this utility model;
[0023] Figure 2 This is a diagram showing the internal structure of the filter assembly of this utility model;
[0024] Figure 3 This is an internal structural diagram of the filter assembly and cleaning assembly of this utility model;
[0025] Figure 4 This utility model Figure 3 Enlarged structural diagram at point A in the middle.
[0026] The components include: 1. Soaking frame; 2. Support assembly; 201. Support leg; 202. Connecting rod; 203. Bolt; 204. Anti-slip teeth; 3. Inner frame; 4. Filter assembly; 401. Filter frame; 402. Connecting plate; 403. Locking rod; 5. Slide rail; 6. Cleaning assembly; 601. Electric telescopic rod; 602. Sliding rod; 603. Double-layer filter frame; 604. Fixing screw; 605. Locking block. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] Example
[0029] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, this utility model provides a technical solution: a continuously operable anti-corrosion and anti-rust treatment device, including an immersion frame 1, a support component 2 in the middle of the immersion frame 1, an inner frame 3 in the inner wall of the immersion frame 1, and a filter component 4 installed in the middle of the inner frame 3, and slide rails 5 on both sides of the top of the immersion frame 1, and a cleaning component 6 in the middle of the slide rails 5.
[0030] The cleaning component 6 includes an electric telescopic rod 601, a slider rod 602, a double-layer filter frame 603, a fixing screw 604, and a locking block 605. The electric telescopic rod 601 is installed at the rear middle section of the slide rail 5, and the slider rod 602 is located at the drive end of the electric telescopic rod 601. The double-layer filter frame 603 is installed at the bottom end of the slider rod 602. A fixing screw 604 passes through the middle of the double-layer filter frame 603 and the slider rod 602. Locking blocks 605 engage on both sides of the double-layer filter frame 603. Specifically, firstly, the user places the rusty object in the soaking frame 1, and then adds a water-based rust inhibitor inside the soaking frame 1. The water-based rust inhibitor is a water-based rust-preventing solution that can effectively... To protect steel, iron, and other materials from rusting, an inner frame 3 is provided in the middle of the soaking frame 1. This allows the filter frame 401 of the filter assembly 4 to be placed on the inner frame 3. The filter frame 401 is engaged with the four corner slots of the inner frame 3 by the locking rod 403 of the connecting plate 402, enabling quick assembly of the filter frame 401. This facilitates the filtration and interception of impurities that may fall off objects. Later, the connecting plate 402 and locking rod 403 of the filter frame 401 can be removed from the slot of the locking rod 403, allowing for the centralized removal of impurities intercepted in the middle of the filter frame 401. A slide rail 5 is provided at the top of the soaking frame 1. The electric telescopic rod 601 of the cleaning assembly 6 is located at the rear end of the slide rail 5. The electric telescopic rod 601 is connected to the cleaning assembly 6 by extending the slide rail. The retracting rod 601 drives the sliding block 602 to extend and retract at the water level at the top of the soaking frame 1 of the double-layer filter frame 603. This allows for the retrieval of floating debris from the top of the soaking frame 1. The rod of the double-layer filter frame 603 is inserted into the sliding block 602 and locked in place by the fixing screw 604. Extending the rod of the double-layer filter frame 603 towards the lower end of the soaking frame 1 allows for adjustment of the retrieval height of the double-layer filter frame 603, facilitating the cleaning of floating debris at different water levels. The inner cavity of the double-layer filter frame 603 contains a set of filter screens, which can be locked in place by the locking block 605, facilitating the cleaning of the internal components of the double-layer filter frame 603. Impurities are disassembled and cleaned separately, which greatly improves the cleaning effect of the double-layer filter frame 603. A support component 2 is set in the middle section of the soaking frame 1, and a connecting rod 202 is inserted in the middle of the two sets of support legs 201. Bolts 203 are inserted in the middle of the support legs 201 and the connecting rods 202 to support the soaking frame 1. Anti-slip teeth 204 are used to increase the friction between the support legs 201 and the soaking frame 1. Through this technical solution, the problem of dust and other impurities easily adhering to the workpiece during anti-corrosion and anti-rust treatment is solved, which seriously affects the continuous anti-corrosion and anti-rust treatment of the workpiece in the later stage, thereby reducing the problem of anti-corrosion and anti-rust treatment of the workpiece.The system features a slide rail 5 at the top of the soaking frame 1. An electric telescopic rod 601 of the cleaning component 6 is located at the rear end of the slide rail 5. Activating the electric telescopic rod 601 drives the sliding rod 602 to extend and retract at the water level at the top of the double-layer filter frame 603, allowing for the retrieval of floating debris from the top of the soaking frame 1. The rod of the double-layer filter frame 603 is inserted inside the sliding rod 602 and secured with fixing screws 604. Extending the rod of the double-layer filter frame 603 towards the lower end of the soaking frame 1 allows for adjustment of the retrieval height, facilitating the cleaning of floating debris at different water levels. The double-layer filter frame 603 has an internal filter screen frame, which can be locked in place by a locking block 605. This allows for the individual disassembly and cleaning of impurities inside the double-layer filter frame 603, significantly improving its cleaning efficiency.
[0031] Going a step further, such as Figure 1 As shown: It also includes a support assembly 2 including a support leg 201, a connecting rod 202, a bolt 203, and anti-slip teeth 204. The support leg 201 is provided in the middle of the soaking frame 1, and the connecting rod 202 is inserted in the middle of the support leg 201. The bolt 203 passes through the middle of the support leg 201 and the connecting rod 202. The inner surface of the support leg 201 is provided with anti-slip teeth 204. The advantage of this technical solution is that by providing a support assembly 2 in the middle section of the soaking frame 1, and inserting the connecting rod 202 in the middle of the two sets of support legs 201, and by using bolts 203 to pass through the middle of the support leg 201 and the connecting rod 202, the soaking frame 1 can be supported. The anti-slip teeth 204 increase the friction between the support leg 201 and the soaking frame 1.
[0032] The above solutions also have the problem of not being able to filter out impurities generated during corrosion and rust prevention, such as... Figure 1-4 As shown: In this solution, the filter assembly 4 includes a filter frame 401, a connecting plate 402 and a clamping rod 403. The filter frame 401 is installed in the middle of the inner frame 3, and the top of the filter frame 401 is connected to the connecting plate 402, and the bottom of the connecting plate 402 is connected to the clamping rod 403. The user places the rusty object in the soaking frame 1 and adds a water-based rust inhibitor inside the soaking frame 1. The water-based rust inhibitor is a water-based rust-preventing solution that can effectively protect materials such as steel and iron and prevent rusting. The soaking frame 1 has an inner frame 3 in the middle, which makes it easy to place the filter frame 401 of the filter assembly 4 on the inner frame 3. The filter frame 401 is engaged in the four corner slots of the inner frame 3 by the clamping rod 403 of the connecting plate 402, which allows for quick assembly of the filter frame 401. This facilitates the filtration and interception of impurities that fall off the object. Later, the connecting plate 402 and the clamping rod 403 of the filter frame 401 can be removed from the slot of the clamping rod 403, making it easy to collect and empty the impurities intercepted in the middle of the filter frame 401.
[0033] Working principle:
[0034] like Figure 1-4 As shown:
[0035] First, the user places the rusty object in the soaking frame 1. A water-based rust inhibitor is then added inside the soaking frame 1. This water-based rust inhibitor is a water-based rust-preventing solution that effectively protects materials such as steel and iron from rusting. An inner frame 3 is located in the middle of the soaking frame 1, facilitating the placement of the filter frame 401 of the filter assembly 4 on the inner frame 3. The filter frame 401 is engaged with the four corner slots of the inner frame 3 via the locking rods 403 of the connecting plate 402, allowing for quick assembly and easy removal of dust and other impurities from the workpiece. After filtration and interception, the connecting plate 402 and the clamping rod 403 of the filter frame 401 can be removed from the groove of the clamping rod 403, making it easier to collect and remove the impurities intercepted in the middle of the filter frame 401. The top of the soaking frame 1 is equipped with a slide rail 5. The electric telescopic rod 601 of the cleaning component 6 is located at the rear end of the slide rail 5. By opening the electric telescopic rod 601, the sliding rod 602 is driven to extend and retract at the water level at the top of the double-layer filter frame 603, so that the top of the soaking frame 1 can be removed. The double-layer filter frame 603 is used to remove floating impurities. The rod of the double-layer filter frame 603 is inserted inside the slider rod 602 and locked in place by the fixing screw 604. Pulling the rod of the double-layer filter frame 603 towards the lower end of the soaking frame 1 allows adjustment of the retrieval height, facilitating the cleaning of floating debris at different water levels. The inner cavity of the double-layer filter frame 603 contains a set of filter screens, which can be locked in place by the locking block 605, facilitating the removal of floating debris. 3. The internal impurities are disassembled and cleaned separately, which greatly improves the cleaning effect of the double-layer filter frame 603 and facilitates the continuous anti-corrosion and anti-rust immersion treatment of different workpieces in the later stage. A support component 2 is set in the middle section of the immersion frame 1, and a connecting rod 202 is inserted in the middle of the two sets of support legs 201. The immersion frame 1 can be supported by bolts 203 passing through the middle of the support legs 201 and the connecting rod 202. The anti-slip teeth 204 increase the friction between the support legs 201 and the immersion frame 1.
[0036] The above are merely preferred embodiments of this utility model and are not intended to limit the utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model without departing from the technical solution of this utility model shall still fall within the protection scope of this utility model.
Claims
1. A continuously operable anti-corrosion and rust-prevention treatment device, comprising an immersion frame (1), characterized in that: The soaking frame (1) is provided with a support component (2) in the middle, the inner wall of the soaking frame (1) is provided with an inner frame (3), and a filter component (4) is installed in the middle of the inner frame (3). The top two sides of the soaking frame (1) are provided with slide rails (5), and a cleaning component (6) is provided in the middle of the slide rails (5). The cleaning assembly (6) includes an electric telescopic rod (601), a slider rod (602), a double-layer filter frame (603), a fixing screw (604), and a locking block (605). The electric telescopic rod (601) is installed at the rear end of the middle section of the slide rail (5), and the slider rod (602) is provided at the driving end of the electric telescopic rod (601). The double-layer filter frame (603) is installed at the bottom end of the slider rod (602). The fixing screw (604) passes through the middle of the double-layer filter frame (603) and the slider rod (602). The locking blocks (605) are engaged on both sides of the double-layer filter frame (603).
2. The continuously operable anti-corrosion and rust-prevention treatment device according to claim 1, characterized in that: The slider rod (602) forms a telescopic structure with the double-layer filter frame (603) via an electric telescopic rod (601), and the double-layer filter frame (603) has a honeycomb structure.
3. The continuously operable anti-corrosion and rust-prevention treatment device according to claim 1, characterized in that: The slider rod (602) is fixed to the double-layer filter frame (603) by fixing screws (604), and the locking blocks (605) are symmetrically distributed about the center line of the double-layer filter frame (603).
4. The continuously operable anti-corrosion and rust-prevention treatment device according to claim 1, characterized in that: The support assembly (2) includes a support leg (201), a connecting rod (202), a bolt (203), and anti-slip teeth (204). The support leg (201) is provided in the middle of the soaking frame (1), and the connecting rod (202) is inserted in the middle of the support leg (201). The bolt (203) passes through the middle of the support leg (201) and the connecting rod (202). The inner surface of the support leg (201) is provided with anti-slip teeth (204).
5. The continuously operable anti-corrosion and rust-prevention treatment device according to claim 4, characterized in that: The support leg (201) is connected to the connecting rod (202) by bolts (203) to form a detachable structure, and the support leg (201) and the anti-slip teeth (204) are welded together.
6. The continuously operable anti-corrosion and rust-prevention treatment device according to claim 1, characterized in that: The filter assembly (4) includes a filter frame (401), a connecting plate (402), and a clamping rod (403). The filter frame (401) is installed in the middle of the inner frame (3), and the top of the filter frame (401) is connected to the connecting plate (402), and the bottom of the connecting plate (402) is connected to the clamping rod (403).
7. The continuously operable anti-corrosion and rust-prevention treatment device according to claim 6, characterized in that: The filter frame (401) is connected to the connecting plate (402), and the clamps (403) are provided in four sets.