A surface corrosion protection device for a modular steel form

CN122584152APending Publication Date: 2026-08-18GUANGZHOU AOJIE BUILDING MATERIALS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202611055893.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-16
Publication Date
2026-08-18

AI Technical Summary

Technical Problem

[0003]在模块化钢模板表面防腐处理时,需要先对其表面进行打磨,但模块化钢板厚度不一,单次加工任务中往往涉及多种厚度板型的交替处理,由于不同板型厚度不同,每切换一次板型,均需对打磨高度、压力参数进行重新调试,频繁换型导致设备空转与调试时间占比过高,有效加工时间被大幅压缩,整体加工效率低,难以匹配批量生产的节拍需求

Benefits of technology

[0013] By adopting the above technical solution, it is possible to achieve adaptive grinding and rust removal of modular steel plates of various thicknesses. After grinding, the plates can be automatically reset to prepare for subsequent grinding of materials, thereby eliminating debugging time, improving the efficiency of grinding and rust removal, and making anti-corrosion treatment more efficient.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122584152A_ABST
    Figure CN122584152A_ABST
Patent Text Reader

Abstract

The application discloses a surface anticorrosion treatment device of a modular steel template, which comprises a main body assembly, a polishing assembly sliding on the top of the main body assembly, a pressure assembly fixed on the top of the polishing assembly, a lifting assembly fixed between the pressure assembly and the main body assembly, a distance measuring assembly sliding on the left side of the top of the main body assembly, the distance measuring assembly being matched with the lifting assembly, a preset assembly fixed between the distance measuring assembly and the main body assembly, and an adjusting assembly fixed on the right side of the top of the main body assembly. When the modular steel plate is conveyed to the front of the polishing assembly through the main body assembly, the distance measuring assembly is triggered, the lifting assembly is triggered, the pressure assembly and the polishing assembly are adjusted to the required polishing height, and the polishing assembly is used for polishing and rust removal. When the modular steel plate moves to the discharging assembly, the discharging assembly triggers the lifting assembly and the subsequent structure to reset, so that the subsequent material can be polished.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of metal corrosion protection devices, specifically a surface corrosion protection device for modular steel formwork. Background Technology

[0002] Metal corrosion refers to the phenomenon where metals undergo chemical, electrochemical, or physical interactions with their surrounding environment, leading to the degradation of metal properties. It is very common in industry and daily life. The purpose of corrosion prevention is to protect easily corroded metals and extend their service life through chemical, physical, and electrochemical corrosion prevention methods. Before corrosion prevention processing, the metal surface must be polished to remove rust and attached dirt, providing a reliable foundation for subsequent corrosion prevention processes.

[0003] When performing anti-corrosion treatment on the surface of modular steel formwork, it is necessary to first grind the surface. However, the thickness of modular steel plates varies, and a single processing task often involves alternating processing of multiple plate types with different thicknesses. Due to the different thicknesses of different plate types, the grinding height and pressure parameters need to be readjusted every time the plate type is switched. Frequent changes in plate type result in a high proportion of equipment idling and debugging time, which greatly compresses the effective processing time, resulting in low overall processing efficiency and difficulty in matching the cycle time requirements of mass production. Summary of the Invention

[0004] The purpose of this invention is to provide a surface anti-corrosion treatment device for modular steel formwork to solve the problems mentioned in the background art.

[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a main body component, which includes a grinding component sliding on the top of the main body component, a pressure component fixed on the top of the grinding component, a lifting component fixed between the pressure component and the main body component, a ranging component sliding on the top left side of the main body component, the ranging component and the lifting component being adapted to each other, a preset component fixed between the ranging component and the main body component, an adjusting component fixed on the top right side of the main body component, and a discharge component rotating on the end face of the adjusting component; the main body component includes an equipment shell, side grooves on both sides of the equipment shell, a through groove on the top left side of the equipment shell, and a slot on the top right side of the equipment shell, a conveyor fixed to the bottom of the equipment shell, and a spraying device fixed to the top of the conveyor corresponding to the side end of the equipment shell.

[0006] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel templates of the present invention, the grinding assembly includes a bracket that slides in the side groove, the top of the bracket and the base are fixed together, grinding rollers that rotate on both sides of the bottom of the bracket, gears fixed to the ends of the grinding rollers, the two gears meshing with each other, and a driving device fixed to the top of the bracket corresponding to the top of the gear, the driving end of the driving device being fixed to the grinding roller.

[0007] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel templates of the present invention, the pressure component includes a base fixed to the top of the grinding component, a lead screw fixed to the top of the base, a cam provided on the outer wall of the lead screw, a spring fixed between the base and the cam, and an inner threaded ring screwed to the outer wall of the cam.

[0008] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel template of the present invention, the lifting assembly includes a telescopic rod fixed to the top of the equipment shell on the side of the through groove, a transmission plate fixed to the top of the telescopic rod, the right side of the transmission plate being fixed to the outer wall of the inner threaded ring, a curved rod fixed to the bottom left side of the transmission plate, and a No. 1 button fixed to the top left side of the curved rod.

[0009] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel templates of the present invention, the ranging component includes a sliding rod that slides in a through groove, a reserved groove at the top of the sliding rod, and a ranging roller that rotates at the bottom of the sliding rod.

[0010] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel template of the present invention, the preset component includes a connecting plate fixed to the top left side of the slide bar, a first screw rod disposed inside the connecting plate, the bottom of the first screw rod being fixed to the equipment shell, and a nut screwed to the outer wall of the first screw rod corresponding to the bottom of the connecting plate.

[0011] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel template of the present invention, the adjustment component includes a fixing block fixed to the left side of the corresponding slot on the top of the equipment shell, a second screw screwed to the inner wall of the fixing block, a torsion member fixed to the right side of the second screw screw, and a torsion member rotatably connected to the right side of the torsion member and the second button.

[0012] As a preferred embodiment of the surface anti-corrosion treatment device for modular steel template of the present invention, the discharge component includes a concave block that slides in the slot, a rubber strip fixed at the bottom of the opening of the concave block, a second button fixed at the top of the concave block, a long plate that rotates at the opening of the concave block corresponding to the outside of the rubber strip, and a discharge roller that rotates at the bottom of the long plate.

[0013] By adopting the above technical solution, it is possible to achieve adaptive grinding and rust removal of modular steel plates of various thicknesses. After grinding, the plates can be automatically reset to prepare for subsequent grinding of materials, thereby eliminating debugging time, improving the efficiency of grinding and rust removal, and making anti-corrosion treatment more efficient.

[0014] Compared with the prior art, the beneficial effects of the present invention are: through the structural cooperation between the main body component, grinding component, pressure component, lifting component, distance measuring component and discharge component, adaptive grinding and rust removal of modular steel plates of various thicknesses can be achieved. After grinding, the plates automatically reset without the need for adjustment, which significantly improves the grinding and rust removal efficiency and makes the anti-corrosion treatment more efficient. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a partial structural diagram of the present invention; Figure 3 This is a schematic diagram of the main component structure of the present invention; Figure 4 This is a schematic diagram of the grinding component structure of the present invention; Figure 5 This is a schematic diagram of the pressure component structure of the present invention; Figure 6 This is a schematic diagram of the lifting component, ranging component, and preset component of the present invention; Figure 7 This is a schematic diagram of the structure of the adjustment component and the discharge component of the present invention.

[0016] In the diagram: 100, main component; 200, grinding component; 300, pressure component; 400, lifting component; 500, ranging component; 600, preset component; 700, adjustment component; 800, discharge component; 101. Equipment housing; 102. Side groove; 103. Through groove; 104. Slotting; 105. Conveyor; 106. Spraying equipment; 201. Support; 202. Grinding roller; 203. Gear; 204. Drive device; 301. Base; 302. Lead screw; 303. Cam; 304. Spring; 305. Internal threaded ring; 401. Telescopic rod; 402. Transmission plate; 403. Crank rod; 404. Button No. 1; 501. Slide bar; 502. Reserved groove; 503. Distance measuring roller; 601. Connecting plate; 602. No. 1 screw; 603. Nut; 701. Fixing block; 702. No. 2 screw; 703. Torsion component; 801, concave block; 802, rubber strip; 803, button number two; 804, long plate; 805, discharge roller. Detailed Implementation

[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0018] Please see Figure 1-7This invention provides a technical solution that can automatically adapt to the grinding height of modular steel plates of different thicknesses and the effect of grinding pressure: a surface anti-corrosion treatment device for modular steel templates, comprising a main component 100, which includes a grinding component 200 sliding on the top of the main component 100, a pressure component 300 fixed on the top of the grinding component 200, a lifting component 400 fixed between the pressure component 300 and the main component 100, and a ranging component 500 sliding on the top left side of the main component 100, the ranging component 500 and the lifting component 400 being adapted to each other and fixed between the ranging component 500 and the main component 100. The preset component 600, the adjustment component 700 fixed to the top right of the main component 100, and the discharge component 800 rotating on the end face of the adjustment component 700 trigger the ranging component 500 before the modular steel plate is transported to the grinding component 200 by the main component 100. The ranging component 500 can trigger the lifting component 400 to drive the pressure component 300 and the grinding component 200 to adjust to the required grinding height. At this time, the grinding component 200 can be used to grind and remove rust. When the modular steel plate moves to the discharge component 800, the discharge component 800 triggers the lifting component 400 and its subsequent structure to reset, in preparation for subsequent material grinding.

[0019] Specifically, such as Figure 3 In the main component 100, there is a housing 101. The housing 101 has side grooves 102 on both sides, a through groove 103 on the top left side, and a slot 104 on the top right side. A conveyor 105 is fixed to the bottom of the housing 101, and a spraying device 106 is fixed to the top of the conveyor 105 corresponding to the side of the housing 101. In use, the conveyor 105 can drive the modular steel plate through the housing 101 and the spraying device 106, so that the modular steel plate is ground and rusted by the grinding component 200 at the housing 101, and then sprayed with anti-corrosion paint at the spraying device 106.

[0020] Furthermore, such as Figure 4In the grinding assembly 200, there are brackets 201 that slide within side grooves 102. The top of the bracket 201 is fixed to the base 301. Grinding rollers 202 rotate on both sides of the bottom of the bracket 201. Gears 203 are fixed to the ends of the grinding rollers 202 and mesh with each other. A drive device 204 is fixed to the top of the bracket 201 corresponding to the top of the gears 203. The drive end of the drive device 204 is fixed to the grinding rollers 202. The drive device 204 is composed of a motor, a small pulley, a large pulley, and a belt. Specifically, the motor drives the small pulley, belt, large pulley, and grinding rollers 202 to rotate. In use, the drive device 204 can drive one of the grinding rollers 202 to rotate, which in turn drives the two gears 203 and the other grinding roller 202 to rotate. The transmission method of the two gears 203 can make the two grinding rollers 202 rotate in different directions, so that relative or opposite forces are formed during the grinding process, thereby making the grinding of the board more stable.

[0021] Furthermore, such as Figure 5 In the process, the pressure assembly 300 includes a base 301 fixed to the top of the grinding assembly 200, a lead screw 302 fixed to the top of the base 301, a cam 303 disposed on the outer wall of the lead screw 302, the top outer wall of the cam 303 being hexagonal and capable of being twisted with a tool, a spring 304 fixed between the base 301 and the cam 303, and an inner threaded ring 305 screwed to the outer wall of the cam 303. The inner threaded ring 305 is fixed to the lifting assembly 400. In use, by rotating the cam 303 within the inner threaded ring 305, the cam 303 can be adjusted to move up and down, thereby causing the cam 303 to tighten or loosen the spring 304, thus adjusting the elastic force exerted by the spring 304 on the cam 303 and the base 301.

[0022] Furthermore, such as Figure 6In the middle, the lifting assembly 400 includes a telescopic rod 401 fixed to the top of the equipment housing 101 on the side of the through groove 103. The telescopic rod 401 can also be controlled independently for lifting. The telescopic rod 401 can be electrically telescopic or pneumatically telescopic, depending on the usage requirements. A transmission plate 402 is fixed to the top of the telescopic rod 401. The right side of the transmission plate 402 is fixed to the outer wall of the inner threaded ring 305. A curved rod 403 is fixed to the bottom left side of the transmission plate 402. The top left side of the curved rod 403 is fixed to the... The first button 404, when pressed, controls the telescopic rod 401 to stop; when released, it causes the telescopic rod 401 to rise. The ranging assembly 500 includes a slide rod 501 that slides within the through groove 103. A pre-drilled groove 502 is provided at the top of the slide rod 501. The first button 404 is initially positioned within the pre-drilled groove 502. When pressed by the weight of the slide rod 501 and the ranging roller 503, the ranging roller rotates at the bottom of the slide rod 501. Roller 503, the height of the measuring roller 503 is slightly higher than that of the grinding roller 202. Before the material is conveyed to the measuring roller 503 by the conveyor 105, the height of the material plate is at least one finger's distance below the central axis of the measuring roller 503. If the position of the measuring roller 503 is too high or too low, it can be adjusted by the preset component 600. In use, when the modular steel plate is conveyed to the measuring roller 503 by the conveyor 105, the modular steel plate will lift the measuring roller 503, causing the measuring roller 503 to drive the slide bar 5. 01 Move upward. When slide bar 501 moves upward, slide bar 501 releases the pressure on button 404 in the reserved slot 502. At this time, telescopic rod 401 will drive transmission plate 402, inner threaded ring 305, crank rod 403, and button 404 to move upward until button 404 is back to be pressed by slide bar 501. At the same time, inner threaded ring 305 will drive subsequent pressure component 300 and grinding component 200 to meet the grinding requirements of modular steel plate.

[0023] Furthermore, such as Figure 6 In the process, the preset component 600 includes a connecting plate 601 fixed to the top left side of the slide bar 501, a first screw 602 located inside the connecting plate 601, the bottom of the first screw 602 being fixed to the equipment housing 101, and a nut 603 screwed to the outer wall of the first screw 602 corresponding to the bottom of the connecting plate 601. In use, by controlling the telescopic rod 401 to descend, the transmission plate 402, the crank 403, and the first button 404 are moved downward. At this time, by rotating the nut 603, the first screw 602 is moved up and down, so that the nut 603 can drive the connecting plate 601, the slide bar 501, and the distance measuring roller 503 to move up and down. After the required height of the distance measuring roller 503 is set, by restarting the function of the telescopic rod 401 being controlled by the first button 404, the first button 404 controls the telescopic rod 401 to move the crank 403 and the transmission plate 402 to the state where the first button 404 is pressed.

[0024] Furthermore, such as Figure 7In the middle, the adjustment component 700 includes a fixing block 701 fixed to the left side of the slot 104 on the top of the equipment housing 101, a second screw 702 screwed to the inner wall of the fixing block 701, and a torsion member 703 fixed to the right side of the second screw 702. The right side of the torsion member 703 is rotatably connected to the second button 803. The discharge component 800 includes a recess 801 sliding in the slot 104, a rubber strip 802 fixed to the bottom of the opening of the recess 801, a second button 803 fixed to the top of the recess 801, a long plate 804 rotating at the outside of the rubber strip 802 corresponding to the opening of the recess 801, and a discharge roller 805 rotating at the bottom of the long plate 804. In use, it is moved by the modular steel plate. When the material reaches the discharge roller 805, it will push the discharge roller 805 to drive the long plate 804 to rotate. The top of the long plate 804 will press the second button 803 to control the telescopic rod 401 and its subsequent structure to reset. When the material length is generally too short, the second screw 702 can be rotated on the inner wall of the fixed block 701 by rotating the torsion member 703, so that the torsion member 703 and the second screw 702 can move left and right within the fixed block 701. During this process, the torsion member 703 can drive the second button 803, the concave block 801, the rubber strip 802, the long plate 804, and the discharge roller 805 to move left or right, so that the modular steel plate touches the discharge roller 805 earlier after grinding, thereby speeding up the subsequent material processing progress.

[0025] During use, depending on the required pressure and material size of the modular steel plate, the cam 303 can be rotated within the inner threaded ring 305, allowing the cam 303 to move up and down. This, in turn, causes the cam 303 to tighten or loosen the spring 304, thus adjusting the elastic force exerted by the spring 304 on the cam 303 and the base 301, changing the pressure exerted by the base 301 on the support 201 and the grinding roller 202. Furthermore, rotating the torsion member 703 can rotate the second screw 702 within the fixed block 701, causing the torsion member 703 and the second screw 702 to move left and right within the fixed block 701. During this process, the torsion member 703 can move the second button 803, the recess 801, the rubber strip 802, the long plate 804, and the discharge roller 805 to the left or right, ensuring that the modular steel plate touches the discharge roller 805 earlier after grinding, thereby accelerating the subsequent material processing. During processing, [the following text is incomplete and requires further context: "through..."] When the modular steel plate is conveyed to the measuring roller 503 by the conveyor 105, the modular steel plate will push up the measuring roller 503, causing the measuring roller 503 to drive the slide rod 501 to move upward. When the slide rod 501 moves upward, the slide rod 501 releases the pressure on the first button 404 in the reserved groove 502. At this time, the telescopic rod 401 will drive the transmission plate 402, the inner screw ring 305, the crank rod 403, and the first button 404 to move upward until the first button 404 is back to the state of being pressed by the slide rod 501. At the same time, the inner screw ring 305 will drive the cam 303, the spring 304, the base 301, and the grinding assembly 200 to grind the passing modular steel plate. When the ground modular steel plate moves to the discharge roller 805, it will push the discharge roller 805 to drive the long plate 804 to rotate. The top of the long plate 804 will press the second button 803 to control the telescopic rod 401 and its subsequent structure to reset.

[0026] In summary, it can perform adaptive grinding and rust removal on modular steel plates of various thicknesses, and can automatically reset after grinding to prepare for subsequent grinding of materials, making the anti-corrosion treatment more efficient.

[0027] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

Claims

1. A surface anti-corrosion treatment device for modular steel formwork, characterized in that: include, The main body assembly (100) includes a grinding assembly (200) sliding on the top of the main body assembly (100), a pressure assembly (300) fixed on the top of the grinding assembly (200), a lifting assembly (400) fixed between the pressure assembly (300) and the main body assembly (100), a ranging assembly (500) sliding on the top left side of the main body assembly (100), the ranging assembly (500) and the lifting assembly (400) being adapted to each other, a preset assembly (600) fixed between the ranging assembly (500) and the main body assembly (100), an adjustment assembly (700) fixed on the top right side of the main body assembly (100), and a discharge assembly (800) rotating on the end face of the adjustment assembly (700). The main component (100) includes a housing (101), side grooves (102) on both sides of the housing (101), a through groove (103) on the top left side of the housing (101), a slot (104) on the top right side of the housing (101), a conveyor (105) fixed to the bottom of the housing (101), and a spraying device (106) fixed to the top of the conveyor (105) corresponding to the side end of the housing (101).

2. The surface anti-corrosion treatment device for modular steel formwork as described in claim 1, characterized in that: The polishing assembly (200) includes a bracket (201) that slides in a side groove (102), the top of the bracket (201) and the base (301) being fixed together, polishing rollers (202) rotating on both sides of the bottom of the bracket (201), gears (203) fixed to the ends of the polishing rollers (202), the two gears (203) meshing with each other, and a drive device (204) fixed to the top of the bracket (201) corresponding to the top of the gears (203), the drive end of the drive device (204) being fixed to the polishing rollers (202).

3. The surface anti-corrosion treatment device for modular steel formwork as described in claim 1, characterized in that: The pressure assembly (300) includes a base (301) fixed to the top of the grinding assembly (200), a lead screw (302) fixed to the top of the base (301), a cam (303) disposed on the outer wall of the lead screw (302), a spring (304) fixed between the base (301) and the cam (303), and an inner threaded ring (305) screwed to the outer wall of the cam (303).

4. The surface anti-corrosion treatment device for modular steel formwork as described in claim 1, characterized in that: The lifting assembly (400) includes a telescopic rod (401) fixed to the top of the equipment housing (101) on the side of the through groove (103), a transmission plate (402) fixed to the top of the telescopic rod (401), the right side of the transmission plate (402) being fixed to the outer wall of the inner threaded ring (305), a crank rod (403) fixed to the bottom left side of the transmission plate (402), and a No. 1 button (404) fixed to the top left side of the crank rod (403).

5. The surface anti-corrosion treatment device for modular steel formwork as described in claim 2, characterized in that: The ranging assembly (500) includes a slide rod (501) that slides in a through groove (103), a pre-reserved groove (502) on the top of the slide rod (501), and a ranging roller (503) that rotates at the bottom of the slide rod (501).

6. The surface anti-corrosion treatment device for modular steel formwork as described in claim 5, characterized in that: The preset component (600) includes a connecting plate (601) fixed to the top left side of the slide bar (501), a first screw (602) located inside the connecting plate (601), the bottom of the first screw (602) being fixed to the equipment housing (101), and a nut (603) screwed to the outer wall of the first screw (602) corresponding to the bottom of the connecting plate (601).

7. The surface anti-corrosion treatment device for modular steel formwork as described in claim 1, characterized in that: The adjustment assembly (700) includes a fixing block (701) fixed to the left side of the corresponding slot (104) on the top of the equipment housing (101), a second screw (702) screwed to the inner wall of the fixing block (701), a torsion member (703) fixed to the right side of the second screw (702), and a second button (803) rotatably connected to the right side of the torsion member (703).

8. The surface anti-corrosion treatment device for modular steel formwork as described in claim 1, characterized in that: The discharge assembly (800) includes a recess (801) that slides in the slot (104), a rubber strip (802) fixed to the bottom of the opening of the recess (801), a second button (803) fixed to the top of the recess (801), a long plate (804) that rotates to the outside of the rubber strip (802) at the opening of the recess (801), and a discharge roller (805) that rotates to the bottom of the long plate (804).