Stainless steel surface energizing equipment

By designing protective components and clamping structures, the problems of accidental heat contact and plate fixation in traditional plasma treatment equipment have been solved, achieving safe and stable surface energy enhancement treatment for stainless steel.

CN223974159UActive Publication Date: 2026-03-06QIANDA NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Traditional plasma treatment equipment tends to generate heat during use, which can lead to accidental injury, and it is difficult to fix stainless steel plates of different widths, affecting the treatment effect.

Method used

A device comprising a base, a rotary plasma surface treatment machine, a stainless steel plate, and protective components was designed. Utilizing partitions, limiting plates, rollers, and a rack and pinion structure, it achieves stable clamping and protection of the stainless steel plate, preventing accidental contact, and adapting to plates of different widths.

Benefits of technology

It effectively prevents accidental injury, ensures that the stainless steel sheet is centered during processing, and improves the processing effect.

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Abstract

The utility model discloses stainless steel surface energizing equipment which comprises a base, a rotary plasma surface treatment machine, a stainless steel plate and a protection assembly. The stainless steel plate is placed on the top of the base. A supporting plate is installed on one side of the top of the base, and a top base is installed on the top of the supporting plate. And two rotary plasma surface treatment machines are mounted at the bottom of the top seat. A machining area on the base is enclosed through the partition plate, the isolation and protection effects are achieved, injury caused by mistaken touch can be avoided, synchronous unfolding and automatic closing of the two enclosures are achieved through matched use of the toothed bars, the gears, the connecting rods and the volute spiral springs, workers can use the two enclosures conveniently, and the working efficiency is improved. Limiting springs, limiting plates and rolling wheels are additionally arranged at the two ends of the partition plate, stainless steel plates with different widths can be clamped, sliding of the stainless steel plates is not affected, the stainless steel plates are always located in the center, and the surface energy increasing effect of the stainless steel plates is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of stainless steel processing, specifically to a stainless steel surface energy enhancement device. Background Technology

[0002] Stainless steel, as an important metallic material, is widely used in many fields. Its performance can be improved through coating, heat treatment, or surface treatment. Rotary plasma surface treatment machine is a device that uses low-temperature plasma technology to treat the surface of materials. Its working principle is to generate plasma by exciting gas molecules through an electric field under low pressure and low temperature conditions. The plasma is then used to treat the physical, morphological, and structural properties of the material surface, thereby improving the surface performance of the material.

[0003] Traditional plasma treatment methods generate heat during use, which can easily cause injury if unauthorized personnel touch the equipment. Furthermore, the varying widths of the stainless steel plates make them difficult to adjust and fix, leading to deviations during treatment and affecting the energy enhancement effect. Utility Model Content

[0004] The purpose of this invention is to provide a stainless steel surface energy enhancement device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a stainless steel surface energy enhancement device, comprising a base, a rotary plasma surface treatment machine, a stainless steel plate, and a protective assembly, wherein the stainless steel plate is placed on top of the base;

[0006] A support plate is installed on one side of the top of the base, a top seat is installed on the top of the support plate, and two rotating plasma surface treatment machines are installed at the bottom of the top seat.

[0007] The protective assembly includes two partitions. Each of the two partitions has a through hole at one end that is far from each other, allowing a stainless steel plate to pass through. Each partition has a groove at one end and on both sides of the through hole. A slider is elastically connected to the groove by a limiting spring. A limiting plate is installed at one end of the slider.

[0008] As a further preferred embodiment of this technical solution, the two ends of the limiting plates that are close to each other are provided with inclined surfaces, and the side of the limiting plates that are in contact with each other is provided with a storage groove, and rollers that are in rolling contact with both sides of the stainless steel plate are rotatably installed in the storage groove.

[0009] As a further preferred embodiment of this technical solution, side plates are installed on the top of both ends of the base, the side plates are flush with the top of the base, and the top of the side plates are slidably connected to the bottom of the partition.

[0010] As a further preferred embodiment of this technical solution, a baffle is installed on one side of the support plate. There are three baffles in total, two of which are located at the outer ends of the two rotating plasma surface treatment machines, and the other baffle is located between the two rotating plasma surface treatment machines.

[0011] As a further preferred embodiment of this technical solution, a rotating rod is installed on one side of the baffle, and a fixing rod is installed on the other side of the top of the base. The upper end of the fixing rod is fixedly fitted with a bottom plate, and the upper end of the fixing rod and the top of the bottom plate are movably fitted with a top plate. The side of the top plate and the bottom plate that are in contact with each other is provided with an anti-slip groove that matches the size of the rotating rod.

[0012] As a further preferred embodiment of this technical solution, a bolt is rotatably installed at the top end of the base plate away from the fixing rod, and a threaded hole for threaded connection with the bolt is provided at one end of the top plate.

[0013] As a further preferred embodiment of this technical solution, a toothed rod is installed at the bottom of each of the two partitions, and sliding holes are provided at both ends of the base to be slidably connected to the toothed rod. The two toothed rods are meshed with gears inside the base. The toothed rods are symmetrically arranged around the gear center. A connecting rod is installed at the bottom of the toothed rod. The bottom end of the connecting rod is rotatably connected to the inside of the base. The outer side of the connecting rod is elastically connected to the inner wall of the base through a spiral spring.

[0014] This utility model provides a stainless steel surface energy enhancement device, which has the following beneficial effects:

[0015] This utility model uses partitions to enclose the processing area on the base, providing isolation and protection to prevent accidental contact and injury. Through the coordinated use of racks, gears, connecting rods, and spiral springs, the two partitions can be opened and closed synchronously and automatically, making it convenient for workers to use. Limiting springs, limiting plates, and rollers are added to both ends of the partitions, which can clamp stainless steel plates of different widths without affecting the sliding of the stainless steel plates, keeping them in a centered position and improving the surface energy enhancement effect of the stainless steel plates. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a side view of the overall structure of this utility model;

[0018] Figure 3 This is a schematic diagram showing the effect of the partition opening in this utility model;

[0019] Figure 4 For the present utility model Figure 3 Enlarged view of the structure at point A in the middle;

[0020] Figure 5 This is a bottom view showing the effect of the partition being opened according to this utility model;

[0021] Figure 6 This is a bottom view of the connection structure of the rack, gear, connecting rod and spiral spring of this utility model.

[0022] In the diagram: 1. Base; 2. Support plate; 3. Rotary plasma surface treatment machine; 4. Side plate; 5. Stainless steel plate; 6. Partition; 7. Limiting spring; 8. Limiting plate; 9. Baffle; 10. Rotating rod; 11. Fixing rod; 12. Base plate; 13. Top plate; 14. Bolt; 15. Gear rack; 16. Gear; 17. Connecting rod; 18. Scroll spring. Detailed Implementation

[0023] 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.

[0024] The specific embodiments of this utility model are described below with reference to the accompanying drawings.

[0025] like Figure 1 As shown, a stainless steel surface enhancement device includes a base 1, a rotary plasma surface treatment machine 3, a stainless steel plate 5, and protective components. The stainless steel plate 5 is placed on top of the base 1. A support plate 2 is installed on one side of the top of the base 1. A top seat is installed on the top of the support plate 2. Two rotary plasma surface treatment machines 3 are installed at the bottom of the top seat. The support plate 2 is located at the top edge of the base 1 and is perpendicular to the base 1. The top seat is flush with the base 1. The rotary plasma surface treatment machine 3 is located directly above the stainless steel plate 5. The surface of the stainless steel plate 5 is processed by the rotary plasma surface treatment machine 3.

[0026] like Figure 2 As shown, the protective assembly includes two partitions 6. When the two partitions 6 are not under force, their top cross-sections are two symmetrical L-shapes located on the other side and the edges of both ends of the top of the base 1, and their inner sides are in contact with the two ends of the support plate 2, which are used to shield the processing area on the top of the base 1. The two partitions 6 have through holes for the stainless steel plate 5 to pass through at their far ends. Each partition 6 has a groove on one end and on both sides of the through hole. A slider is elastically connected in the groove by a limiting spring 7. The groove limits the slider to slide linearly. A limiting plate 8 is installed on one end of the slider. The limiting spring 7 serves to reset the slider.

[0027] In this embodiment, specifically: the two ends of the limiting plates 8 that are close to each other are provided with inclined surfaces, which reduce the frictional resistance between the limiting plates 8 and the stainless steel plate. The side of the limiting plates 8 that is in contact with each other is provided with a receiving groove. Rollers that roll in contact with both sides of the stainless steel plate 5 are rotatably installed in the receiving groove. The rollers reduce the frictional resistance on both sides of the stainless steel plate 5. After the stainless steel plate 5 is squeezed into the center and limited by the rollers, when it is necessary to move the stainless steel plate 5, the rollers reduce the resistance to the movement of the stainless steel plate 5.

[0028] In this embodiment, specifically: side plates 4 are installed on the top of both ends of the base 1. The side plates 4 are flush with the top of the base 1. The top of the side plates 4 is slidably connected to the bottom of the partition 6. The side plates 4 play the role of increasing the sliding stability of the partition 6.

[0029] like Figure 3 and Figure 4 As shown, in this embodiment, specifically: a baffle 9 is installed on one side of the support plate 2. There are three baffles 9 in total, two of which are located at the outer ends of the two rotating plasma surface treatment machines 3, and the other baffle 9 is located between the two rotating plasma surface treatment machines 3. The baffles 9 serve to separate the working area at the top of the base 1. A rotating rod 10 is installed on one side of the baffle 9. By rotating the rotating rod 10, the tilt angle of the baffle 9 can be adjusted to adjust the distance between the baffle 9 and the stainless steel plate 5. A fixing rod 11 is installed on the other side of the top of the base 1. The upper end of the fixing rod 11 is fixedly fitted with a base plate 12. A top plate 13 is movably fitted onto the upper end of the rod 11 and the top of the base plate 12. The side of the top plate 13 that is in contact with the base plate 12 has an anti-slip groove that is adapted to the size of the rotating rod 10. An anti-slip plate is fitted inside the protective groove to increase the frictional resistance between the rod and the rotating rod 10 and to fix the rotation angle of the rotating rod 10. A bolt 14 is rotatably installed on the top end of the base plate 12 away from the fixed rod 11. A threaded hole is opened at one end of the top plate 13 that is threaded to the bolt 14. The bolt 14 is used to adjust the distance between the base plate 12 and the top plate 13, thereby adjusting the size of the protective groove and removing the restriction on the position of the rotating rod 10.

[0030] like Figure 5 and Figure 6 As shown in this embodiment, specifically: a toothed rod 15 is installed at the bottom of each partition 6, and sliding holes are opened at both ends of the base 1 to slide and connect with the toothed rod 15. The two toothed rods 15 are located inside the base 1 and mesh with a gear 16. The toothed rods 15 are symmetrically arranged with respect to the center of the gear 16. The position of the toothed rods 15 and the gear 16 is restricted to realize the relative movement of the two toothed rods 15 by rotating the gear 16. A connecting rod 17 is installed at the bottom of the toothed rod 15. The bottom end of the connecting rod 17 is rotatably connected to the inside of the base 1. The outer side of the connecting rod 17 is elastically connected to the inner wall of the base 1 through a spiral spring 18. The rebound force of the spiral spring 18 limits the rotation angle of the gear 16, realizing the closing action after the two partitions 6 are opened.

[0031] Working principle: A stainless steel plate 5 is placed on the side plate 4. Pushing the stainless steel plate 5 through the through holes of the two partition plates 6 causes it to slide. During this process, the inclined surface of the limiting plate 8 is pressed by the stainless steel plate 5, opening the through holes. When the rollers on the limiting plate 8 contact the sides of the stainless steel plate 5, the slider, pushed by the limiting spring 7, moves the limiting plate 8 and rollers closer to the stainless steel plate 5. The rollers center and fix the stainless steel plate 5. When the stainless steel plate 5 slides, the rollers rotate without affecting its movement. Then, the two partition plates 6 are slid towards both ends of the base 1, opening the processing area at the top of the base 1. Loosening the bolts 14 disengages the top plate 13 from the bottom plate 1. Touch, rotate the rotating rod 10 to adjust the rotation angle of the baffle 9 so that the bottom end of the baffle 9 is in contact with the surface of the stainless steel plate 5, start the rotary plasma surface treatment machine 3 to process the surface of the stainless steel plate 5, when the partition 6 slides to both ends of the base 1, the partition 6 drives the rack 15 to slide, the rack 15 drives the gear 16 to rotate, the gear 16 drives the connecting rod 17 to rotate, the connecting rod 17 stretches the spiral spring 18, when the force applied to the partition 6 is released during processing, the spiral spring 18 automatically resets and drives the connecting rod 17 and the gear 16 to rotate in the opposite direction, the gear 16 drives the rack 15 and the partition 6 to slide in the opposite direction, the two partitions 6 are in contact to close the processing area of ​​the base 1, thereby preventing accidental contact and injury.

[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A stainless steel surface energizing apparatus comprising a base (1), a rotary plasma surface treatment machine (3), a stainless steel plate (5) and a protection assembly, characterized in that: The stainless steel plate (5) is placed on the top of the base (1); A support plate (2) is installed on one side of the top of the base (1), and a top base is installed on the top of the support plate (2), and two rotary plasma surface treatment machines (3) are installed on the bottom of the top base; The protection assembly comprises two partition plates (6), and the ends of the two partition plates (6) away from each other are provided with through holes for the stainless steel plate (5) to pass through, and the ends of the partition plates (6) and the two sides of the through holes are provided with grooves, and the grooves are elastically connected with sliding blocks in the grooves through limiting springs (7), and one end of the sliding block is provided with a limiting plate (8).

2. A stainless steel surface energizing device according to claim 1, characterized in that: The two ends of the limiting plate (8) are provided with inclined surfaces, and the side of the limiting plate (8) abutting each other is provided with a receiving groove, and the receiving groove is rotatably installed with a roller in rolling contact with the two sides of the stainless steel plate (5).

3. A stainless steel surface energizing device as defined in claim 1, wherein: The top of the base (1) is provided with a side plate (4), and the side plate (4) and the top of the base (1) are flush, and the top of the side plate (4) and the bottom of the partition plate (6) are slidably connected.

4. A stainless steel surface energizing device as defined in claim 1, wherein: A baffle (9) is installed on one side of the support plate (2), and the number of the baffle (9) is three, and two of the baffles (9) are located at the outer ends of the two rotary plasma surface treatment machines (3), and the other baffle (9) is located between the two rotary plasma surface treatment machines (3).

5. A stainless steel surface energizing device according to claim 4, characterized in that: A rotating rod (10) is installed on one side of the baffle (9), and the other side of the top of the base (1) is provided with a fixed rod (11), and the upper end of the fixed rod (11) is fixedly provided with a bottom plate (12), and the upper end of the fixed rod (11) and the top of the bottom plate (12) are movably provided with a top plate (13), and the top plate (13) and the bottom plate (12) are provided with an anti-skid groove on the side of the abutting surface, and the size of the anti-skid groove is matched with the size of the rotating rod (10).

6. A stainless steel surface energizing apparatus as defined in claim 5, wherein: The bottom plate (12) is rotatably installed with a bolt (14) at the end away from the fixed rod (11), and one end of the top plate (13) is provided with a threaded hole in threaded connection with the bolt (14).

7. A stainless steel surface energizing device as defined in claim 1, wherein: The bottom of the two partition plates (6) is provided with a toothed rod (15), and the two ends of the base (1) are provided with a sliding hole in sliding connection with the toothed rod (15), and the two toothed rods (15) are engaged with a gear (16) in the interior of the base (1), and the toothed rod (15) is centrally symmetrically arranged with the gear (16), and the bottom of the toothed rod (15) is provided with a connecting rod (17), and the bottom end of the connecting rod (17) is rotatably connected with the interior of the base (1), and the outer side of the connecting rod (17) is elastically connected with the inner wall of the base (1) through a spiral spring (18).