Surface anti-corrosion treatment device for part machining

By combining the movement of the horizontal and vertical sliders and driving the rotary motor, the problem of the existing device being unable to spray irregularly shaped parts has been solved, achieving uniform spraying and efficient anti-corrosion treatment.

CN223970245UActive Publication Date: 2026-03-06HENAN PROVINCE EAST GRP CO LTD ANTI-CORROSION
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Patent Information

Application Number
CN202520508362.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-03-06
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing parts processing equipment is difficult to adapt to irregularly shaped parts during the spraying process, resulting in uneven spraying and missed areas, which affects the anti-corrosion effect.

Method used

The combined motion of the horizontal and vertical sliders creates a composite spraying trajectory for the nozzle. The clamp spacing is adjusted by the telescopic component, and the rotating motor drives the parts to rotate. An infrared drying device accelerates the curing of the coating.

Benefits of technology

It achieves uniform spraying on the surface of irregularly shaped parts, improves corrosion protection and work efficiency, and enhances the applicability and uniformity of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223970245U_ABST
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Abstract

The utility model relates to the technical field of part processing, in particular to a surface anti-corrosion treatment device for part processing, which comprises a treatment box, a clamping mechanism arranged at the lower part in the treatment box, a transverse moving sliding block arranged at the upper part in the treatment box, a transverse moving mechanism arranged in the treatment box, and a longitudinal moving sliding block connected with the bottom surface of the transverse moving sliding block in a sliding manner, first supporting plates are fixedly connected to the two sides of the bottom face of the transverse moving sliding block, a longitudinal moving mechanism is installed between the two first supporting plates, a mounting plate is fixedly connected between the bottom ends of the two first supporting plates, a through hole is formed in the middle of the mounting plate, a spray head is hinged to the interior of the through hole, the spray head communicates with a feeding mechanism, and a telescopic rod is arranged between the spray head and the longitudinal moving sliding block. Through the synergistic effect of transverse movement of the transverse moving sliding block and longitudinal movement of the longitudinal moving sliding block, the spraying head forms a composite spraying track, and therefore the surfaces of the special-shaped parts can be evenly sprayed, and the anti-corrosion effect of the parts is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of parts processing technology, specifically to a surface anti-corrosion treatment device for parts processing. Background Technology

[0002] In the field of parts processing, surface anti-corrosion treatment is a core process for extending the service life of materials. Currently, most mainstream treatment devices adopt spraying technology. For example, Chinese patent CN218167479U discloses a surface anti-corrosion treatment device for steel structure parts processing. This device drives the nozzle to move linearly through a reciprocating mechanism to improve spraying efficiency. However, the spraying trajectory of the nozzle is singular, and it can only achieve linear spraying. It is difficult to adapt to the surface of irregular parts and is prone to problems such as uneven spraying and missed spraying, thus affecting the anti-corrosion effect. Therefore, there are still shortcomings and deficiencies in the existing technology. Utility Model Content

[0003] This invention provides a surface anti-corrosion treatment device for parts processing to solve the problems mentioned in the background art.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a surface anti-corrosion treatment device for parts processing, including a treatment box, a clamping mechanism installed in the lower part of the treatment box, a transverse slider provided in the upper part of the treatment box, a transverse mechanism for driving the transverse slider to move laterally installed in the treatment box, a longitudinal slider slidably connected to the bottom surface of the transverse slider, first support plates fixedly connected to both sides of the bottom surface of the transverse slider, a longitudinal mechanism for driving the longitudinal slider to move longitudinally installed between the two first support plates, a mounting plate fixedly connected between the bottom ends of the two first support plates, a through hole opened in the middle of the mounting plate, a nozzle hinged in the through hole, a feeding mechanism connected to the feeding end of the nozzle, a telescopic rod provided between the nozzle and the longitudinal slider, the telescopic rod being fixedly connected to the nozzle, and the telescopic rod being hinged to the longitudinal slider.

[0005] Preferably, the longitudinal movement mechanism includes a splined shaft and a longitudinal movement screw. The splined shaft is rotatably connected to the inner wall of the processing box. One end of the splined shaft extends to the outside of the processing box and is connected to a longitudinal movement motor. A worm is splinedly connected to the splined shaft. A second support plate located at both ends of the worm is fixedly connected to the transverse movement slider. The worm is rotatably connected to the second support plate. The longitudinal movement screw is rotatably connected between the two first support plates. The longitudinal movement screw is threadedly connected to the longitudinal movement slider. One end of the longitudinal movement screw extends to the outside of the first support plate and is coaxially fixed with a worm wheel that meshes with the worm.

[0006] Preferably, the transverse movement mechanism includes a transverse movement screw parallel to the spline shaft, the transverse movement screw is driven and connected inside the processing box, one end of the transverse movement screw extends outside the processing box and is driven and connected to a transverse movement motor, and the transverse movement slider is threadedly connected to the transverse movement screw.

[0007] Preferably, the clamping mechanism includes two symmetrically arranged rotating seats, which are rotatably connected to the inner wall of the processing box. A rotary motor is driven to the outer side of the rotating seats, and a telescopic component is coaxially fixed to the inner side of the rotating seats. A clamp is installed at the end of the telescopic component away from the rotating seats.

[0008] Preferably, the feeding mechanism includes a storage tank and a pump body installed on the top surface of the processing tank. The input end of the pump body is connected to the storage tank, and the output end of the pump body is connected to the nozzle through a feeding hose.

[0009] Preferably, a longitudinal sliding track is provided on the bottom surface of the transverse sliding block, and the top of the longitudinal sliding block is located in the longitudinal sliding track and is slidably connected to the longitudinal sliding track.

[0010] Preferably, an infrared drying device is installed inside the processing chamber.

[0011] Preferably, a maintenance door is provided on one side of the processing box, and an observation window is provided on the maintenance door.

[0012] The beneficial effects of this utility model are as follows: (1) This utility model uses the lateral movement of the horizontal slider and the longitudinal movement of the vertical slider to form a composite spraying trajectory, so that the surface of the irregular part can be uniformly sprayed to ensure the anti-corrosion effect of the part; (2) The distance between the clamps can be adjusted by the telescopic component so that the clamps can hold parts of different lengths, thereby improving the applicability of the device; (3) The part is rotated by the rotary motor so that it can be coordinated with the movement of the nozzle to achieve all-round spraying, further improving the uniformity of the spraying; (4) The coating is cured quickly by the radiation heating of the infrared drying device, thereby improving the work efficiency. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 This is a frontal view of the internal structure of this utility model;

[0015] Figure 3 This is a side view of the internal structure of this utility model;

[0016] Figure 4 This is a top view of the structure of this utility model;

[0017] Figure 5 This is a schematic diagram of the transverse and longitudinal movement mechanisms of this utility model.

[0018] Reference numerals: 1. Processing box; 2. Clamping mechanism; 21. Rotary seat; 22. Rotary motor; 23. Telescopic assembly; 24. Fixture; 3. Lateral slider; 4. Lateral mechanism; 41. Lateral lead screw; 42. Lateral motor; 5. Longitudinal slider; 6. Longitudinal slide rail; 7. First support plate; 8. Longitudinal mechanism; 81. Splined shaft; 82. Longitudinal lead screw; 83. Longitudinal motor; 84. Worm gear; 85. Second support plate; 86. Worm wheel; 9. Mounting plate; 10. Through hole; 11. Nozzle; 12. Feeding mechanism; 121. Storage box; 122. Pump body; 123. Feeding hose; 13. Telescopic rod; 14. Infrared drying device; 15. Inspection door; 16. Observation window. Detailed Implementation

[0019] The present invention will now be further described with reference to the accompanying drawings.

[0020] like Figure 1-5 As shown, this utility model provides a surface anti-corrosion treatment device for parts processing, including a treatment box 1. A clamping mechanism 2 is installed in the lower part of the treatment box 1, and a transverse slider 3 is provided in the upper part of the treatment box 1. A transverse mechanism 4 is installed in the treatment box 1 to drive the transverse slider 3 to move laterally. A longitudinal slider 5 is slidably connected to the bottom surface of the transverse slider 3. A longitudinal slide rail 6 is opened on the bottom surface of the transverse slider 3. The top of the longitudinal slider 5 is located in the longitudinal slide rail 6 and is slidably connected to the longitudinal slide rail 6. The bottom surface of the transverse slider 3... First support plates 7 are fixedly connected to both sides. A longitudinal movement mechanism 8 is installed between the two first support plates 7 to drive the longitudinal movement slider 5 to move longitudinally. An mounting plate 9 is fixedly connected between the bottom ends of the two first support plates 7. A through hole 10 is opened in the middle of the mounting plate 9. A nozzle 11 is hinged in the through hole 10. The feed end of the nozzle 11 is connected to a feeding mechanism 12. A telescopic rod 13 is provided between the nozzle 11 and the longitudinal movement slider 5. The telescopic rod 13 is fixedly connected to the nozzle 11 and is hinged to the longitudinal movement slider 5.

[0021] Specifically, during use, the transverse mechanism 4 drives the transverse slider 3 to move laterally, and the transverse slider 3 drives the nozzle 11 to move laterally for spraying. At the same time, the longitudinal mechanism 8 is activated, and the longitudinal mechanism 8 drives the longitudinal slider 5 to move longitudinally. Since the nozzle 11 is hinged to the longitudinal slider 5 through the telescopic rod 13, the longitudinal movement of the longitudinal slider 5 can be converted into the back-and-forth swing of the nozzle 11 around the hinge point of the through hole 10, so that the nozzle 11 forms a composite spraying trajectory, thereby enabling uniform spraying on the surface of irregular parts and ensuring the anti-corrosion effect of the parts.

[0022] In some embodiments, the longitudinal movement mechanism 8 includes a splined shaft 81 and a longitudinal movement screw 82. The splined shaft 81 is rotatably connected to the inner wall of the processing box 1. One end of the splined shaft 81 extends to the outside of the processing box 1 and is connected to a longitudinal movement motor 83. A worm gear 84 is splinedly connected to the splined shaft 81. A second support plate 85 located at both ends of the worm gear 84 is fixedly connected to the transverse movement slider 3. The worm gear 84 is rotatably connected to the second support plate 85. The longitudinal movement screw 82 is rotatably connected between two first support plates 7. The longitudinal movement screw 82 is threadedly connected to the longitudinal movement slider 5. One end of the longitudinal movement screw 82 extends to the outside of the first support plate 7 and is coaxially fixed with a worm wheel 86 that meshes with the worm gear 84. Specifically, in use, the longitudinal movement motor 83 drives the splined shaft 81 to rotate. The splined shaft 81 drives the longitudinal movement screw 82 to rotate through the worm gear 84 and the worm wheel 86. The longitudinal movement screw 82 drives the longitudinal movement slider 5 to move longitudinally.

[0023] In some embodiments, the lateral movement mechanism 4 includes a lateral movement screw 41 parallel to the splined shaft 81. The lateral movement screw 41 is drivenly connected inside the processing box 1, and one end of the lateral movement screw 41 extends outside the processing box 1 and is drivenly connected to a lateral movement motor 42. The lateral movement motor 42 is mounted on the outer side wall of the processing box 1, and the lateral movement slider 3 is threadedly connected to the lateral movement screw 41. Specifically, in use, the lateral movement motor 42 drives the lateral movement screw 41 to rotate, and the lateral movement screw 41 can drive the lateral movement slider 3 to move laterally along the splined shaft 81. The splined shaft 81 acts as a guide to ensure smooth movement of the lateral movement slider 3.

[0024] In some embodiments, the clamping mechanism 2 includes two symmetrically arranged rotating seats 21, which are rotatably connected to the inner wall of the processing box 1. A rotary motor 22 is driven to the outer side of each rotating seat 21, and a telescopic assembly 23 is coaxially fixed to the inner side of each rotating seat 21. The telescopic assembly 23 can be a cylinder, hydraulic cylinder, or other telescopic mechanism. A clamp 24 is mounted on the end of the telescopic assembly 23 away from the rotating seat 21. Specifically, the telescopic assembly 23 can adjust the distance between the two clamps 24 according to the length of the part, so that the clamps 24 can clamp parts of different lengths. In use, the two rotary motors 22 are controlled to rotate synchronously, driving the rotating seats 21 to rotate. The rotating seats 21, through the telescopic assembly 23, drive the parts to rotate, thereby enabling multi-directional spraying operations in conjunction with the movement of the spray nozzle 11, further improving the uniformity of the spraying.

[0025] In some embodiments, the feeding mechanism 12 includes a storage tank 121 and a pump body 122 mounted on the top surface of the processing tank 1. The input end of the pump body 122 is connected to the storage tank 121, and the output end of the pump body 122 is connected to the nozzle 11 via a feeding hose 123. Specifically, in use, the pump body 122 delivers the paint in the storage tank 121 to the nozzle 11 via the feeding hose 123, and uniformly sprays the surface of the part under the composite spraying trajectory of the nozzle 11.

[0026] In some embodiments, an infrared drying device 14 is installed inside the processing box 1. Specifically, after the coating is completed, the infrared drying device 14 is activated, thereby accelerating the curing of the coating through radiant heating and improving work efficiency.

[0027] In some embodiments, a maintenance door 15 is provided on one side of the processing box 1. The maintenance door 15 is opened to facilitate the placement of the parts to be sprayed into the processing box 1. An observation window 16 is provided on the maintenance door 15 to facilitate the observation of the spraying status of the parts.

[0028] The specific usage process of this utility model is as follows: When using it, first, open the inspection door 15, place the part between the two clamps 24, adjust the length of the telescopic component 23 to clamp the part, then start the horizontal movement motor 42 and the vertical movement motor 83. The horizontal movement slider 3 drives the nozzle 11 to move horizontally, while the vertical movement slider 5 moves vertically. The telescopic rod 13 drives the nozzle 11 to swing back and forth, thereby forming a composite spraying trajectory. Then, start the pump body 122, which delivers the paint to the nozzle 11 and sprays it evenly on the surface of the part. After the spraying is completed, start the infrared drying device 14 to accelerate the curing of the coating. Finally, turn off the infrared drying device 14, open the inspection door 15, release the clamps 24 and take out the part.

[0029] Those skilled in the art can reasonably combine the technical features of different embodiments.

[0030] The above embodiments are not intended to limit the shape, material, structure, etc. of this utility model in any way. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this utility model shall fall within the protection scope of this utility model.

Claims

1. A surface corrosion prevention treatment device for machining of a part, comprising a treatment tank, characterized in that: The lower part of the processing box is provided with a clamping mechanism, the upper part of the processing box is provided with a transverse sliding block, the processing box is provided with a transverse moving mechanism for driving the transverse sliding block to move horizontally, the bottom surface of the transverse sliding block is slidably connected with a longitudinal sliding block, the two sides of the bottom surface of the transverse sliding block are fixedly connected with first supporting plates, the longitudinal moving mechanism for driving the longitudinal sliding block to move longitudinally is arranged between the two first supporting plates, the bottom ends of the two first supporting plates are fixedly connected with a mounting plate, a through hole is formed in the middle of the mounting plate, a spray head is hingedly connected in the through hole, a feeding mechanism is connected to the feeding inlet of the spray head, a telescopic rod is arranged between the spray head and the longitudinal sliding block, the telescopic rod is fixedly connected with the spray head, and the telescopic rod is hingedly connected with the longitudinal sliding block.

2. The apparatus for anticorrosive treatment of surfaces of parts being processed according to claim 1, characterized in that: The longitudinal moving mechanism comprises a spline shaft and a longitudinal lead screw, the spline shaft is rotatably connected to the inner side wall of the processing box, one end of the spline shaft extends out of the processing box and is drivingly connected with a longitudinal motor, a worm is spline-connected to the spline shaft, the two ends of the worm are fixedly connected with second supporting plates on the transverse sliding block, and the worm is rotatably connected with the second supporting plates; the longitudinal lead screw is rotatably connected between the two first supporting plates, the longitudinal lead screw is threadedly connected with the longitudinal sliding block, and one end of the longitudinal lead screw extends out of the first supporting plate and is coaxially fixed with a worm wheel engaged with the worm.

3. A device for the anticorrosive treatment of surfaces of parts to be machined, according to claim 2, characterized in that: The transverse moving mechanism comprises a transverse lead screw parallel to the spline shaft, the transverse lead screw is drivingly connected in the processing box, one end of the transverse lead screw extends out of the processing box and is drivingly connected with a transverse motor, and the transverse sliding block is threadedly connected to the transverse lead screw.

4. The apparatus for anticorrosive treatment of surfaces of parts being processed according to claim 1, characterized in that: The clamping mechanism comprises two symmetrical rotary bases rotatably connected to the inner side wall of the processing box, a rotary motor is drivingly connected to the outer side of the rotary base, a telescopic assembly is coaxially fixed to the inner side of the rotary base, and a clamp is arranged at the end of the telescopic assembly away from the rotary base.

5. The apparatus for corrosion-proofing the surface of a part being processed according to claim 1, characterized in that: The feeding mechanism comprises a storage tank arranged on the top surface of the processing box and a pump body, the input end of the pump body is connected with the storage tank, and the output end of the pump body is connected with the spray head in communication through a feeding hose.

6. The apparatus for corrosion protection of surfaces of parts being processed according to claim 1, characterized in that: A longitudinal sliding channel is formed in the bottom surface of the transverse sliding block, and the top of the longitudinal sliding block is located in the longitudinal sliding channel and is slidably connected with the longitudinal sliding channel.

7. The apparatus for corrosion protection of surfaces of parts being processed according to claim 1, characterized in that: An infrared drying device is arranged in the processing box.

8. The apparatus for corrosion protection of surfaces of parts being processed according to claim 1, characterized in that: A maintenance door is arranged on one side of the processing box, and an observation window is arranged on the maintenance door.

Citation Information

Patent Citations

  • Surface anti-corrosion treatment device for steel structure part machining

    CN218167479U