Wear-resistant stainless steel plate based on rapid ion nitriding technology
By setting wear-resistant bumps, embossed grooves, assembly strips and grooves and reinforced bolt holes on stainless steel plates, combined with rapid ion nitriding technology and ceramic spray coating, the problem of inconvenient assembly of stainless steel plates is solved, the wear resistance and assembly efficiency are improved, and resource waste is reduced.
Patent Information
- Application Number
- CN202423108206.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-12-17
AI Technical Summary
The existing rectangular stainless steel plates are not convenient for quick assembly and cause serious waste of resources.
Wear-resistant bumps, embossed grooves, longitudinal and transverse assembly strips and grooves, positioning blocks and slots, as well as reinforced bolt holes are set on the stainless steel plate body. The surface is treated with rapid ion nitriding technology, and ceramic and sandblasting coatings are applied to improve wear resistance and assembly efficiency.
It achieves fast and stable assembly of stainless steel plates, improves wear resistance, reduces resource waste and reduces overall weight.
Smart Images

Figure CN223411184U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wear-resistant stainless steel plates, in particular to a wear-resistant stainless steel plate based on rapid ion nitriding technology. Background Art
[0002] Rapid ion nitriding technology is a process that uses a high-voltage electric field to ionize nitrogen and accelerate the penetration of nitrogen ions into the surface of stainless steel, thereby forming a nitrided layer. Hollow cathode discharge is used to rapidly increase the temperature of the double-layer cathode cylinder, and the sample is subjected to radiation heating. At the same time, plasma discharge generates highly active nitrogen ions that bombard the sample, achieving rapid heating of the sample to the nitriding temperature. This method can significantly improve the nitriding efficiency of stainless steel plates, and make the surface structure of the sample more uniform, thereby improving the quality and performance of the nitriding layer. Stainless steel plates in the existing technology are mostly regular rectangular shapes, and rectangular stainless steel plates are not convenient for rapid assembly during assembly. For this reason, we specially propose a wear-resistant stainless steel plate based on rapid ion nitriding technology. Utility Model Content
[0003] The purpose of the utility model is to address the problems existing in the background technology and to propose a wear-resistant stainless steel plate based on the rapid ion nitriding technology.
[0004] The technical solution of the utility model is as follows: a wear-resistant stainless steel plate based on rapid ion nitriding technology, comprising a stainless steel plate main body, a plurality of groups of wear-resistant protrusions are arranged on one side of the stainless steel plate main body, an embossed groove is provided on the stainless steel plate main body between each group of wear-resistant protrusions, a longitudinal assembly strip is provided at one end of the stainless steel plate main body, a plurality of groups of positioning blocks are provided on one side of the longitudinal assembly strip, a longitudinal assembly groove is provided on the end of the stainless steel plate main body away from the longitudinal assembly strip, a plurality of groups of positioning card slots are provided on one side of the longitudinal assembly groove, a transverse assembly strip is provided on one side of the stainless steel plate main body, a transverse assembly groove is provided on the other side of the stainless steel plate main body, and a plurality of groups of reinforcing bolt holes are provided on the stainless steel plate main body.
[0005] Preferably, the mounting end of each group of the wear-resistant protrusions is mounted corresponding to one side of the stainless steel plate body, the wear-resistant protrusions are arranged in an arc shape, and the embossed grooves are arranged in a concave shape.
[0006] Preferably, one side of the longitudinal assembly bar is installed corresponding to one end of the stainless steel plate body, and the installation end of the positioning block is installed corresponding to the upper side of the longitudinal assembly bar.
[0007] Preferably, the longitudinal assembly bar at one end of one group of stainless steel plate bodies is installed correspondingly to the longitudinal assembly groove at one end of another group of stainless steel plate bodies, and the positioning block is installed correspondingly to the positioning slot when the two groups of stainless steel plate bodies are in a longitudinal assembly state.
[0008] Preferably, the installation end of the transverse assembly bar is installed corresponding to the lower side of one side of the stainless steel plate body, and the transverse assembly groove is located at an upper position on the other side of the stainless steel plate body.
[0009] Preferably, the transverse assembly strips on one side of one group of stainless steel plate bodies are installed correspondingly to the transverse assembly grooves on one side of another group of stainless steel plate bodies, and when the two groups of stainless steel plate bodies are in a transverse assembly state, the outer sides of the transverse assembly strips and the inner walls of the transverse assembly grooves fit together.
[0010] Preferably, the stainless steel plate body comprises a plate body, both sides of the plate body are coated with a ceramic coating, and a sandblasting coating is sprayed on the side of the ceramic coating away from the plate body.
[0011] Compared with the prior art, the present invention has the following beneficial technical effects:
[0012] The utility model has a simple overall structure. The wear resistance of the stainless steel plate body is greatly increased through the cooperation of ion nitriding technology and the wear-resistant protrusions and embossed grooves on the surface of the stainless steel plate body. At the same time, the longitudinal assembly strips and longitudinal assembly grooves at both ends of the stainless steel plate body are coordinated with the transverse assembly strips and transverse assembly grooves on both sides of the stainless steel plate body, so that the stainless steel plate can be assembled quickly and stably. At the same time, through the arrangement of multiple groups of reinforcing bolt holes, reinforcing plates can be assembled on partial areas of the stainless steel plate, thereby avoiding the waste of resources caused by the overall assembly of reinforcing plates. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0014] Figure 2 This is a structural schematic diagram from another perspective of the present invention;
[0015] Figure 3 This is a partial cross-sectional view of the stainless steel plate body in the present invention.
[0016] Figure numerals: 1. Stainless steel plate body; 11. Plate body; 12. Ceramic coating; 13. Sandblasting coating; 2. Wear-resistant protrusion; 3. Embossed groove; 4. Longitudinal assembly strip; 5. Positioning block; 6. Longitudinal assembly groove; 7. Positioning card slot; 8. Transverse assembly strip; 9. Transverse assembly groove; 10. Reinforcement bolt hole. DETAILED DESCRIPTION
[0017] The technical solution of the present invention is further described below with reference to the accompanying drawings and specific embodiments.
[0018] Example
[0019] like Figure 1-3As shown, the utility model proposes a wear-resistant stainless steel plate based on rapid ion nitriding technology, including a stainless steel plate main body 1, the stainless steel plate main body 1 includes a plate body 11, the plate body 11 is surface-treated by rapid ion nitriding technology, and the temperature of the double-layer cathode cylinder is rapidly increased by hollow cathode discharge, and the plate body 11 is radiantly heated. At the same time, plasma discharge generates highly active nitrogen ions to bombard the plate body 11, thereby achieving rapid heating of the sample to the nitriding temperature, thereby making the surface structure of the plate body 11 more uniform, and improving the quality and performance of the nitriding layer. Both sides of the plate body 11 are coated with a ceramic coating 12, and the arrangement of the ceramic coating 12 and the plate body 11 in coordination with each other can improve the overall strength of the stainless steel plate main body 1, and at the same time improve the wear resistance of the stainless steel plate main body 1, and a sandblasting coating 13 is sprayed on the side of the ceramic coating 12 away from the plate body 11. The arrangement of the sandblasting coating 13 further improves the wear resistance and strength of the stainless steel plate main body 1;
[0020] One side of the stainless steel plate main body 1 is provided with multiple groups of wear-resistant protrusions 2, and the mounting end of each group of wear-resistant protrusions 2 is installed corresponding to one side of the stainless steel plate main body 1, and the mounting end of the wear-resistant protrusion 2 is fixedly connected to one side of the stainless steel plate main body 1. The wear-resistant protrusions 2 are arranged in an arc shape, and an embossed groove 3 is provided on the stainless steel plate main body 1 between each group of wear-resistant protrusions 2. The embossed groove 3 is arranged in an inward concave shape, and the edges of the wear-resistant protrusions 2 and the embossed grooves 3 are chamfered. The arrangement of the wear-resistant protrusions 2 and the embossed grooves 3 further improves the wear resistance of the surface of the stainless steel plate main body 1, while reducing the wear on the stainless steel plate main body 1;
[0021] One end of the stainless steel plate main body 1 is provided with a longitudinal assembly strip 4, one side of the longitudinal assembly strip 4 is installed corresponding to one end of the stainless steel plate main body 1, the installation end of the longitudinal assembly strip 4 is fixedly connected to one end of the stainless steel plate main body 1, and a plurality of positioning blocks 5 are provided on one side of the longitudinal assembly strip 4, the installation end of the positioning block 5 is installed corresponding to the upper side of the longitudinal assembly strip 4, and the installation end of the positioning block 5 is fixedly connected to one side of the longitudinal assembly strip 4. A longitudinal assembly groove 6 is provided on the end of the stainless steel plate main body 1 away from the longitudinal assembly strip 4, and a plurality of positioning card grooves 7 are provided on one side of the longitudinal assembly groove 6. The longitudinal assembly strip 4 at one end of one group of stainless steel plate main bodies 1 is installed corresponding to the longitudinal assembly groove 6 at one end of the other group of stainless steel plate main bodies 1. When the two groups of stainless steel plate main bodies 1 are in a longitudinal assembly state, the positioning blocks 5 are installed corresponding to the positioning card grooves 7. The arrangement of the longitudinal assembly strip 4 and the longitudinal assembly groove 6 facilitates the rapid longitudinal assembly of the stainless steel plate main body 1. By setting the positioning block 5 and the positioning card slot 7, the longitudinal assembly bar 4 and the longitudinal assembly groove 6 can be positioned and assembled when they are in the assembly state, so that the stainless steel plate can be assembled quickly. A transverse assembly bar 8 is provided on one side of the stainless steel plate main body 1, and the mounting end of the transverse assembly bar 8 is installed correspondingly to the lower side of one side of the stainless steel plate main body 1. The mounting end of the transverse assembly bar 8 is fixedly connected to one side of the stainless steel plate main body 1. A transverse assembly groove 9 is provided on the other side of the stainless steel plate main body 1. The transverse assembly groove 9 is located at the upper position of the other side of the stainless steel plate main body 1. The transverse assembly bar 8 on one side of one group of stainless steel plate main bodies 1 is installed correspondingly to the transverse assembly groove 9 on one side of the other group of stainless steel plate main bodies 1. When the two groups of stainless steel plate main bodies 1 are in the transverse assembly state, the outer side of the transverse assembly bar 8 and the inner wall of the transverse assembly groove 9 fit together. The setting of the transverse assembly bar 8 and the transverse assembly groove 9 facilitates the rapid transverse assembly of the stainless steel plate main body 1.
[0022] There are multiple groups of reinforcing bolt holes 10 on the stainless steel plate main body 1. The setting of multiple groups of reinforcing bolt holes 10 can assemble reinforcing plates on partial areas of the stainless steel plate as needed, thereby avoiding the waste of resources caused by the overall assembly of reinforcing plates. At the same time, the setting of multiple groups of reinforcing bolt holes 10 can reduce the weight of the stainless steel plate main body 1.
[0023] In this embodiment, the operator first performs surface treatment on the plate body 11 by using a rapid ion nitriding technique, then applies a ceramic coating 12 on both sides of the plate body 11, and then sprays a sandblasting coating 13 on one side of the ceramic coating 12, thereby completing the surface treatment operation on the stainless steel plate body 1;
[0024] When the operator needs to assemble the stainless steel plate, the operator aligns the longitudinal assembly strip 4 at one end of one group of stainless steel plate main bodies 1 with the longitudinal assembly groove 6 on the other group of stainless steel plate main bodies 1, so that the positioning block 5 corresponds to the positioning card groove 7 on one side of the longitudinal assembly groove 6, thereby completing the longitudinal assembly operation of the stainless steel plate main body 1, and then the operator assembles the transverse assembly strip 8 on one side of one group of stainless steel plate main bodies 1 with the transverse assembly groove 9 on one side of the other group of stainless steel plate main bodies 1, thereby completing the transverse assembly operation of the stainless steel plate main body 1.
[0025] The above specific embodiment is only a preferred embodiment of the present invention. Based on the technical solution of the present invention and the relevant inspiration of the above embodiment, those skilled in the art can make various alternative improvements and combinations to the above specific embodiment.
Claims
1. A wear-resistant stainless steel plate based on rapid ion nitriding technology, comprising a stainless steel plate body (1), characterized in that: A plurality of groups of wear-resistant protrusions (2) are provided on one side of the stainless steel plate body (1), and an embossed groove (3) is provided between each group of wear-resistant protrusions (2) on the stainless steel plate body (1). A longitudinal assembly strip (4) is provided at one end of the stainless steel plate body (1), and a plurality of groups of positioning blocks (5) are provided on one side of the longitudinal assembly strip (4). A longitudinal assembly groove (6) is provided on the end of the stainless steel plate body (1) away from the longitudinal assembly strip (4), and a plurality of groups of positioning card grooves (7) are provided on one side of the longitudinal assembly groove (6). A transverse assembly strip (8) is provided on one side of the stainless steel plate body (1), and a transverse assembly groove (9) is provided on the other side of the stainless steel plate body (1). A plurality of groups of reinforcing bolt holes (10) are provided on the stainless steel plate body (1).
2. The wear-resistant stainless steel plate based on rapid ion nitriding technology according to claim 1, characterized in that: The mounting end of each group of the wear-resistant protrusions (2) is mounted correspondingly to one side of the stainless steel plate body (1); the wear-resistant protrusions (2) are arranged in an arc shape, and the embossed grooves (3) are arranged in an inward concave shape.
3. The wear-resistant stainless steel plate based on rapid ion nitriding technology according to claim 1, characterized in that: One side of the longitudinal assembly bar (4) is mounted correspondingly to one end of the stainless steel plate body (1), and the mounting end of the positioning block (5) is mounted correspondingly to the upper side of the longitudinal assembly bar (4).
4. The wear-resistant stainless steel plate based on rapid ion nitriding technology according to claim 1, characterized in that: The longitudinal assembly strip (4) at one end of one set of the stainless steel plate main bodies (1) is installed correspondingly to the longitudinal assembly groove (6) at one end of the other set of the stainless steel plate main bodies (1); and the positioning block (5) and the positioning slot (7) are installed correspondingly when the two sets of the stainless steel plate main bodies (1) are in a longitudinal assembly state.
5. The wear-resistant stainless steel plate based on rapid ion nitriding technology according to claim 1, characterized in that: The installation end of the transverse assembly strip (8) is installed corresponding to the lower side of one side of the stainless steel plate body (1), and the transverse assembly groove (9) is located at the upper position of the other side of the stainless steel plate body (1).
6. The wear-resistant stainless steel plate based on rapid ion nitriding technology according to claim 1, characterized in that: The transverse assembly strips (8) on one side of one set of the stainless steel plate main bodies (1) are installed correspondingly to the transverse assembly grooves (9) on one side of the other set of the stainless steel plate main bodies (1). When the two sets of the stainless steel plate main bodies (1) are in a transverse assembly state, the outer sides of the transverse assembly strips (8) and the inner walls of the transverse assembly grooves (9) fit together.
7. The wear-resistant stainless steel plate based on rapid ion nitriding technology according to claim 1, characterized in that: The stainless steel plate body (1) comprises a plate body (11), both sides of the plate body (11) are coated with a ceramic coating (12), and a sandblasting coating (13) is sprayed on the side of the ceramic coating (12) away from the plate body (11).