Non-magnetic steel anti-corrosion surface treatment equipment

By introducing paint coating and blow-drying heating mechanisms into magnetic-free surface treatment equipment, the problem of rapid drying of paint after coating is solved, and rapid drying of paint is achieved, and operational safety and efficiency are improved.

CN223264165UActive Publication Date: 2025-08-26HENAN SHENLONG GASOLINEEUM DRILLING TOOLS
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Patent Information

Application Number
CN202422316602.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-08-26
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

Existing magnetic-free surface treatment equipment cannot dry quickly after the paint is applied, resulting in the paint being easily contaminated on the hands of staff.

Method used

A surface treatment device including a paint coating mechanism and a blow drying mechanism is designed. After applying the paint through a brush, the paint is heated with a heating box and blow-drying the paint, combined with a telescopic mechanism to adapt to different steel diameters, and achieve rapid drying.

Benefits of technology

The rapid drying of the paint is achieved, avoiding the paint from contaminating the staff's hands when removing the steel, and improving operational safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses non-magnetic steel anti-corrosion surface treatment equipment which comprises a working table, a treatment box is arranged on the working table, a discharging port and a feeding port are formed in the left side and the right side of the treatment box respectively, and a coating smearing mechanism located in the middle of the treatment box is arranged in the treatment box. Partition plates fixed in the treatment box are arranged on the left side of the coating smearing mechanism at intervals, an opening coaxial with the feeding port is formed in each partition plate, and an air blowing mechanism located on the left side of each partition plate is arranged on the workbench. The non-magnetic steel anti-corrosion surface treatment equipment can be used for quickly drying steel coated with paint.
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Description

Technical Field

[0001] The utility model relates to the technical field of surface corrosion prevention, in particular to surface treatment equipment for non-magnetic steel corrosion prevention. Background Art

[0002] When using non-magnetic steel to make drilling tools, it is necessary to ensure that the corrosion resistance of the non-magnetic steel meets the qualified standards. The steel is generally made of cylindrical steel. The current anti-corrosion method is mostly to apply a layer of coating (such as paint) on the surface of the steel, and use the coating to form a protective layer to achieve the anti-corrosion effect. However, the equipment for spraying paint and other coatings on steel for surface treatment cannot dry quickly after the steel is applied. The paint is easily contaminated on the hands of the staff when removing it from the equipment. In order to solve the above problems, the present application proposes a surface treatment equipment that can quickly dry paint. Utility Model Content

[0003] In view of the deficiencies in the prior art, the utility model provides a surface treatment device for non-magnetic steel corrosion prevention, which can quickly dry steel after being coated with paint.

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: a surface treatment equipment for non-magnetic steel corrosion protection, including a workbench, a processing box with a discharge port and a feed port on the left and right sides respectively, a paint applying mechanism located in the middle of the processing box, a partition fixed in the processing box is provided on the left side of the paint applying mechanism, an opening coaxial with the feed port is provided on the partition, a blowing mechanism is provided on the workbench and located on the left side of the partition, a heating box is provided on the lower side of the blowing mechanism, and an air inlet is provided on the lower side of the heating box.

[0005] Preferably, the paint applying mechanism includes a paint tank arranged above the processing box, and the lower side of the paint tank is connected to a liftable paint box through a pipe extending into the processing box. The opening of the paint box is arranged downward, and the opening is filled with a brush whose lower end extends to the bottom of the paint box.

[0006] Preferably, a first telescopic mechanism fixed in the processing box is vertically provided on the upper side of the paint tank, and the pipeline adopts a telescopic hose.

[0007] Preferably, the blowing mechanism includes a through slot provided on the workbench, a fan is provided in the through slot, and the upper side of the heating box is connected to the through slot.

[0008] Preferably, a filter cover is provided on the air inlet.

[0009] Preferably, the left end of the processing box is provided with a second telescopic mechanism located on the side of the feed port, and the shaft end of the second telescopic mechanism is connected to a push plate through a connecting rod.

[0010] The utility model provides a surface treatment device for non-magnetic steel corrosion prevention, which has the following beneficial effects:

[0011] This non-magnetic steel anti-corrosion surface treatment equipment, when applying paint to steel, the first telescopic mechanism can drive the paint box to move up and down, so as to adjust the height of the brush according to steel of different calibers, thereby applying paint to the steel. With the cooperation of the through slot and the fan, external air can be drawn into the heating box for heating, and then the heated air is blown into the treatment box to quickly dry the painted steel. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 This is a schematic diagram of the structure of the utility model;

[0013] Figure 2 This is a schematic diagram of the front cross-sectional structure of the utility model;

[0014] Figure 3 This is a schematic diagram of the top view of the structure of the utility model;

[0015] Figure 4 It is a schematic diagram of the left side cross-sectional structure of the utility model.

[0016] In the figure: 1. Workbench; 2. Discharge port; 3. Feed port; 4. Processing box; 5. Partition; 6. Opening; 7. Heating box; 8. Air inlet; 9. Paint tank; 10. Pipeline; 11. Paint box; 12. Brush; 13. First telescopic mechanism; 14. Through slot; 15. Fan; 16. Filter cover; 17. Second telescopic mechanism; 18. Push plate; 19. Heating wire. DETAILED DESCRIPTION

[0017] The present invention will be further described below with reference to specific embodiments. Figures 1 to 4 As shown:

[0018] Example 1: A surface treatment device for non-magnetic steel corrosion prevention includes a workbench 1, a treatment box 4 is provided on the workbench 1, and a discharge port 2 and a feed port 3 are provided on the left and right sides respectively. The discharge port 2 and the feed port 3 are of the same size and are located on the same horizontal line, so that the feed port 3 and the discharge port 2 can be easily passed through the treatment box 4.

[0019] A paint applying mechanism is provided in the middle of the processing box 4, and a transparent window is provided on the front side of the processing box 4, which is located just in front of the paint applying mechanism so that the staff can observe the paint applying situation.

[0020] A partition 5 fixed in the processing box 4 is provided on the left side of the paint applying mechanism. An opening 6 coaxial with the feed port 3 is provided on the partition 5. The opening 6 is provided to facilitate the passage of steel through the partition 5. A blower mechanism is provided on the workbench 1 on the left side of the partition 5. A heating box 7 is provided on the lower side of the blower mechanism. An air inlet 8 is provided on the lower side of the heating box 7. The blower mechanism can draw external air into the heating box 7 for heating, and then the air is blown into the processing box 4 by the blower mechanism, so that the paint coating can be quickly dried by high temperature.

[0021] Heat insulation pads are provided on the left and right sides of the partition 5 to prevent the heat generated by the heating box 7 from affecting the paint applying mechanism as much as possible.

[0022] Example 2: A surface treatment device for non-magnetic steel corrosion prevention, comprising a workbench 1, a treatment box 4 having a discharge port 2 and a feed port 3 on its left and right sides, respectively, wherein the discharge port 2 and the feed port 3 are of the same size and are located on the same horizontal line, so that the feed port 3 and the discharge port 2 can be easily passed through to enter and exit the treatment box 4;

[0023] A paint applying mechanism is provided in the middle of the processing box 4, and a transparent window is provided on the front side of the processing box 4, which is located just in front of the paint applying mechanism so that the staff can observe the paint applying situation.

[0024] A partition 5 fixed in the processing box 4 is provided on the left side of the coating application mechanism. An opening 6 coaxial with the feed port 3 is provided on the partition 5. The opening 6 is provided to facilitate the passage of steel through the partition 5. A blower mechanism is provided on the workbench 1 on the left side of the partition 5.

[0025] A heating box 7 is provided on the lower side of the blower mechanism, and a heating wire 19 is provided in the heating box 7. An air inlet 8 is provided on the lower side of the heating box 7, and a filter cover 16 is provided on the air inlet 8 to prevent external dust from entering the heating box 7. The blower mechanism includes a through slot 14 provided on the workbench 1, and a fan 15 is provided in the through slot 14. The upper side of the heating box 7 is connected to the through slot 14.

[0026] The blower mechanism draws external air into the heating box 7 for heating, and then blows it into the treatment box 4 through the blower mechanism, achieving rapid drying of the paint and coating by high temperature;

[0027] Heat insulation pads are provided on the left and right sides of the partition 5 to prevent the heat generated by the heating box 7 from affecting the paint application mechanism as much as possible;

[0028] The paint application mechanism includes a paint tank 9 arranged above the processing box 4. The lower side of the paint tank 9 is connected to a liftable paint box 11 through a pipe 10 extending into the processing box 4. A valve is provided on the pipe 10 to facilitate the control of the material entering the paint box 11. A first telescopic mechanism 13 fixed to the processing box 4 is vertically provided on the upper side of the paint tank 9. The pipe 10 adopts a telescopic hose. The first telescopic mechanism 13 can drive the paint box 11 to move up and down, thereby adjusting the height of the paint box 11 according to different calibers of steel;

[0029] The opening of the paint box 11 is set downward, and the opening is filled with a brush 12 whose lower end extends to the bottom of the paint box 11. Through the setting of the brush 12, the paint can be slowly immersed in the brush 12. After the steel material contacts the brush, the paint can be applied to the steel material;

[0030] The left end of the processing box 4 is provided with a second telescopic mechanism 17 located on the side of the feed port 3. The axial end of the second telescopic mechanism 17 is connected to a push plate 18 through a connecting rod. A support plate is provided on the left side of the push plate 18. The push plate 18 is horizontal with the feed port 3 so that the second telescopic mechanism 17 can drive the push plate 18 to gradually push the material into the processing box 4.

[0031] Working principle:

[0032] Place one end of the non-magnetic steel material that needs surface treatment on the feed port 3 of the processing box 4, and then place the other end on the support plate. The second telescopic mechanism 17 can drive the push plate 18 to gradually push the steel material into the processing box 4. Through the setting of the first telescopic mechanism 13, the paint box 11 can be driven to move up and down, so that the brush 12 can contact the upper side of the steel material, thereby applying paint to the surface of the steel material. Through the setting of the air blowing mechanism and the heating box 7, the heated air can be discharged into the processing box 4, thereby blowing the steel material coated with paint, so that the paint can dry quickly, and prevent the staff from being contaminated by paint when taking out the steel material as much as possible.

[0033] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A surface treatment device for non-magnetic steel corrosion prevention, comprising a workbench (1), characterized in that: The workbench (1) is provided with a processing box (4) with a discharge port (2) and a feed port (3) on its left and right sides respectively; a coating application mechanism is provided in the processing box (4) at its center; a partition (5) fixed in the processing box (4) is provided at intervals on the left side of the coating application mechanism; an opening (6) coaxial with the feed port (3) is provided on the partition (5); a blower mechanism is provided on the workbench (1) at the left side of the partition (5); a heating box (7) is provided on the lower side of the blower mechanism; and an air inlet (8) is provided on the lower side of the heating box (7).

2. The surface treatment equipment for non-magnetic steel corrosion prevention according to claim 1, characterized in that: The paint applying mechanism comprises a paint tank (9) arranged above a processing box (4); the lower side of the paint tank (9) is connected to a liftable paint box (11) via a pipe (10) extending into the processing box (4); the opening of the paint box (11) is arranged downward, and the opening is filled with a brush (12) whose lower end extends to the bottom of the paint box (11).

3. The surface treatment equipment for non-magnetic steel corrosion prevention according to claim 2, characterized in that: A first telescopic mechanism (13) fixed in the processing box (4) is vertically provided on the upper side of the coating tank (9), and the pipeline (10) adopts a telescopic hose.

4. The surface treatment equipment for non-magnetic steel corrosion prevention according to claim 1, characterized in that: The blower mechanism comprises a through slot (14) provided on the workbench (1), a fan (15) is provided in the through slot (14), and the upper side of the heating box (7) is in communication with the through slot (14).

5. The surface treatment equipment for non-magnetic steel corrosion prevention according to claim 1, characterized in that: A filter cover (16) is provided on the air inlet (8).

6. The surface treatment equipment for non-magnetic steel corrosion prevention according to claim 1, characterized in that: The left end of the processing box (4) is provided with a second telescopic mechanism (17) located on one side of the feed port (3), and the shaft end of the second telescopic mechanism (17) is connected to a push plate (18) via a connecting rod.