Stainless steel plate embossing machine

The notched steel plate stamping machine addresses the issue of surface particles by using a cleaning mechanism with brushes and magnets to ensure clean stamping, enhancing pattern quality and protecting the rollers.

CN223100345UActive Publication Date: 2025-07-15LIANYUNGANG YONGQUAN STAINLESS STEEL PROD CO LTD
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Patent Information

Application Number
CN202422572959.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-07-15
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Particulate matter attached to the stainless steel plate before entering the embossing wheel will cause embossing defects or damage the embossing wheel, which is difficult to effectively remove in the prior art.

Method used

A stainless steel plate embossing machine is designed, equipped with a cleaning assembly including a baffle and a brush, which prevents particles from entering the embossing wheel through the baffle, and uses a brush to clean the fallen particles, and collect and clean the dust collecting device.

Benefits of technology

Effectively remove particulate matter on the surface of stainless steel plates, ensure the quality of embossing, protect the embossing wheel from damage, and improve the embossing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stainless steel plate embossing machine. The stainless steel plate embossing machine comprises an upper embossing wheel, a base and a plate conveying roller, the end face, located on one side of the upper embossing wheel, of the base is fixedly connected with a sweeping assembly, the sweeping assembly is located on the end face of the upper side of the plate conveying roller, the sweeping assembly sweeps a stainless steel plate, and the sweeping assembly comprises a baffle support and a baffle. The baffle support is connected to the end face of one side of the base, the baffle is fixedly connected with the baffle support, and the baffle is matched with the rolling face of the upper knurling wheel in length. According to the stainless steel plate embossing machine, when splashing particles generated by welding, machining and cutting in a stainless steel plate machining environment fall onto a stainless steel plate, the particles on the surface of the stainless steel plate are removed before the stainless steel plate enters the embossing wheel, so that the upper surface of the stainless steel plate is clean before the stainless steel plate enters the embossing wheel, the quality of embossed patterns is improved, and the production efficiency is improved. And the knurling wheel is protected against surface abrasion caused by the fact that the knurling wheel presses hard particles.
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Description

Technical Field

[0001] The utility model belongs to the technical field of embossing machines, and particularly relates to a stainless steel plate embossing machine. Background Art

[0002] Various patterns and textures are made on the stainless steel plate, and these patterns and textures can enhance the aesthetics, anti-slip effect, hardness and other properties of the stainless steel plate. The stainless steel plate embossing machine is a machine that can emboss various patterns and textures on the steel plate. When the embossing wheel rotates to drive the stainless steel plate to move between the two embossing wheels, pressure is applied to the stainless steel plate to emboss patterns on the stainless steel plate.

[0003] The processing environment of stainless steel plates is often accompanied by related operations such as welding, processing, and cutting, which often generate flying particulate matter. Moreover, the stainless steel plate enters the embossing machine in a basically horizontal state, and the dirt on the stainless steel plate and the flying particulate matter in the working environment may fall on the stainless steel plate. These particulate matters will enter the embossing machine along with the steel plate, resulting in defects in the embossed patterns of the stainless steel plate or damage such as pits on the embossing wheel.

[0004] Therefore, in view of the above technical problems, it is necessary to provide a stainless steel plate embossing machine that can remove the particulate matter on the surface of the stainless steel plate before the stainless steel plate enters the embossing wheel. Content of the Utility Model

[0005] The purpose of the utility model is to provide a stainless steel plate embossing machine that can remove the particulate matter on the surface of the stainless steel plate before the stainless steel plate enters the embossing wheel and keep the surface of the stainless steel plate clean.

[0006] In order to achieve the above purpose, the technical solution provided by a specific embodiment of the utility model is as follows:

[0007] A stainless steel plate embossing machine includes an upper embossing wheel, a base, and a plate feeding roller. A cleaning assembly is fixedly connected to one side end face of the base located on one side of the upper embossing wheel. The cleaning assembly is located on the upper side end face of the plate feeding roller. The cleaning assembly cleans the stainless steel plate. The cleaning assembly includes a baffle bracket and a baffle. The baffle bracket is connected to one side end face of the base, and the baffle is fixedly connected to the baffle bracket. The baffle matches the length of the rolling surface of the upper embossing wheel.

[0008] In one or more embodiments of the present utility model, the baffle support includes an outer beam of the support, an inner cross beam of the support, a pair of support columns, a pair of support side ears, a pair of hand-tightening bolts, and a pair of magnetic patches. The outer beam of the support is slidably connected to one end face of the base. The inner cross beam of the support is integrally formed on one end face of the outer beam of the support. A pair of the support columns are both welded to the opposite end faces of the base. A magnetic patch is fixed to one end face of each support column. A second iron sheet matching the magnetic patch is fixedly connected to the outer beam of the support. The magnetic patch is magnetically connected to the second iron sheet. A sliding hole matching the combination of the support column and the magnetic patch is formed in the support side ear. The baffle support slides on the support column through the sliding hole.

[0009] In one or more embodiments of the present utility model, first threaded holes are respectively formed in the outer end faces of a pair of the support side ears. Hand-tightening bolts are threadedly connected to the first threaded holes. The hand-tightening bolts abut against one end face of the support column. First guiding grooves are formed in a pair of opposite end faces of the base. First sliding blocks matching the first guiding grooves are provided on the end face of the outer beam of the support in contact with the first guiding grooves. The first sliding blocks slide up and down in the first guiding grooves. A support extension plate is integrally formed on the end face of the outer beam of the support in contact with the baffle. The baffle is fixedly connected to the support extension plate.

[0010] In one or more embodiments of the present utility model, a plurality of second threaded holes are formed in the end face of the support extension plate in contact with the baffle. Third threaded holes matching the plurality of second threaded holes are formed in the baffle. Second bolts are threadedly connected to both the second threaded holes and the third threaded holes.

[0011] In one or more embodiments of the present utility model, a sliding groove is formed in the outer beam of the support. A second guiding groove is formed in the inner cross beam of the support. A brush support is connected to the outer beam of the support. The brush support slides in the second guiding groove and the sliding groove. A second sliding block matching the second guiding groove is provided at one end of the brush support. A brush matching the baffle is fixedly connected to the lower end of the brush support.

[0012] In one or more embodiments of the present utility model, a plurality of fourth threaded holes are formed in the end face of the brush support in contact with the brush. Fifth threaded holes matching the plurality of fourth threaded holes are formed in the brush. Third bolts are threadedly connected to both the fourth threaded holes and the fifth threaded holes.

[0013] In one or more embodiments of the present utility model, magnetic blocks are respectively fixedly connected to the groove walls of a pair of opposite end faces of the sliding groove. A plurality of first iron sheets are fixedly connected to the brush support. The plurality of first iron sheets are magnetically connected to the magnetic blocks.

[0014] In one or more embodiments of the present utility model, one end face on the inner wall of the base is fixedly connected with a dust collection tray corresponding to the baffle, and the dust collection tray is located below the plate feeding roller.

[0015] In one or more embodiments of the present utility model, the bottom of the dust collection tray inclines downward, and the inclination angle is 30° - 50°.

[0016] In one or more embodiments of the present utility model, the lower end of the dust collection tray is open, a dust collection box corresponding to the opening is placed on one end face of the base, the dust collection box is separated from the base, and dust collection box handles are welded on both side faces of the dust collection box.

[0017] Compared with the prior art, a stainless steel plate embossing machine of the present utility model removes particulate matters on the surface of the stainless steel plate before the stainless steel plate enters the embossing wheel, so that the surface of the stainless steel plate is clean before entering the embossing process, it is not easy to have particulate pollutants, the quality of the embossed pattern is improved, and the embossing wheel is protected from surface wear caused by pressing hard particulate matters. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings described below are only some embodiments recorded in the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 It is a perspective view of a stainless steel plate embossing machine in an embodiment of the present utility model;

[0020] Figure 2 It is Figure 1 a schematic structural view of the structure at A;

[0021] Figure 3 It is a front view of a stainless steel plate embossing machine in an embodiment of the present utility model;

[0022] Figure 4 It is a top view of a stainless steel plate embossing machine in an embodiment of the present utility model;

[0023] Figure 5 It is Figure 4 a schematic structural view of the structure at B;

[0024] Figure 6 It is a sectional view of a stainless steel plate embossing machine in an embodiment of the present utility model;

[0025] Figure 7 It is Figure 6 a schematic structural view of the structure at C.

[0026] Description of Main Reference Numerals:

[0027] 1 - Driving motor, 2 - Upper embossing wheel, 21 - Upper embossing wheel gear, 3 - Lower embossing wheel, 31 - Lower embossing wheel gear, 4 - Base, 41 - First guide groove, 5 - Plate feeding roller, 6 - Dust collection tray, 61 - First bolt, 7 - Dust collection box, 71 - Dust collection box handle, 8 - Baffle bracket, 81 - Outer beam of the bracket, 811 - Extended plate of the bracket, 812 - Sliding groove, 813 - Magnetic block, 82 - Inner cross beam of the bracket, 821 - Second guide groove, 83 - Bracket column, 831 - Magnetic patch, 84 - Side ear of the bracket, 85 - Sliding hole, 86 - Hand-tightening bolt, 9 - Baffle, 91 - Second bolt, 10 - Brush, 101 - Brush bracket, 102 - Third bolt. Detailed Implementation Manner

[0028] In order to enable those skilled in the art to better understand the technical solutions in the present utility model, the following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0029] As Figure 1 and Figure 3 shown, a stainless steel plate embossing machine in an embodiment of the present utility model includes a driving motor 1, an upper embossing wheel 2, a lower embossing wheel 3, a base 4, and a plate feeding roller 5. The driving motor 1 is installed on the base 4, and the rotating shaft of the driving motor 1 is directly connected to the lower embossing wheel 3. The upper embossing wheel 2 and the lower embossing wheel 3 are fixedly connected to the base 4. One end of the upper embossing wheel 2 is fixedly connected with an upper embossing wheel gear 21, and one end of the lower embossing wheel 3 is fixedly connected with a lower embossing wheel gear 31. The upper embossing wheel gear 21 meshes with the lower embossing wheel gear 31. The rotation of the driving motor 1 directly drives the rotation of the lower embossing wheel 3. When the lower embossing wheel 3 rotates, the lower embossing wheel gear 31 rotates accordingly, driving the upper embossing wheel gear 21 to rotate, and further driving the upper embossing wheel 2 to rotate, so as to realize the simultaneous rotation of the upper embossing wheel 2 and the lower embossing wheel 3 to roll the stainless steel plate.

[0030] The plate feeding roller 5 is fixedly connected to the base 4. The plate feeding roller 5 is located on one side of the end face of the lower embossing wheel 3. The plate feeding roller 5 is connected to the rotating shaft of the driving motor 1 through a chain. The driving motor 1 drives the plate feeding roller 5 to rotate through the chain. The stainless steel plate moves horizontally on the plate feeding roller 5 with the rotation of the plate feeding roller 5 and enters the rolling process.

[0031] One end face of the base 4 is connected with a cleaning assembly. The cleaning assembly includes a baffle support 8 and a baffle 9. The baffle support 8 is parallel to the axis of the upper embossing wheel 2. The length of the baffle support 8 is greater than the distance between the opposite end faces of the base 4. A baffle 9 is fixedly connected below the baffle support 8. The baffle 9 matches the axial length of the rolling surface of the upper embossing wheel 2, so as to cover the cross section of the stainless steel plate. The lower end of the baffle 9 and the lower water cutting surface of the rolling surface of the upper embossing wheel 2 are in the same plane, that is, the lower end of the baffle 9 fits the upper surface of the stainless steel plate. The baffle 9 blocks dirt and particles on the surface of the stainless steel plate at the baffle, preventing the dirt and particles from entering the rolling wheel.

[0032] As Figure 2 , Figure 4 and Figure 5 shown, the baffle support 8 includes a support outer beam 81, a support inner cross beam 82, and a pair of support columns 83. The support outer beam 81 is slidably connected to one end face of the base 4. The support inner cross beam 82 is integrally formed on one end face of the support outer beam 81. A pair of support columns 83 are both welded to the opposite end faces of the base 4. A magnetic patch 831 is fixed to one end face of the support column 83. A second iron sheet matching the magnetic patch 831 is fixedly connected to the support outer beam 81, and the magnetic patch 831 is magnetically connected to the second iron sheet.

[0033] A pair of support side ears 84 are integrally formed on both end faces of the support outer beam 81. A sliding hole 85 matching the combination of the support column 83 and the magnetic patch 831 is provided on the support side ear 84. The baffle support 8 slides on the support column 83 through the sliding hole 85, thereby adjusting the height of the support outer beam 81. First threaded holes are respectively provided on the outer end faces of the support side ears 84. A hand-tightening bolt 86 is threadedly connected to the first threaded hole. The hand-tightening bolt 86 abuts against one end face of the support column 83. When the height of the support outer beam 81 needs to be adjusted, the hand-tightening bolt 86 at one end is turned out. When the hand-tightening bolt 86 does not fit the support column 83 and does not generate frictional resistance, due to the magnetic adsorption of the magnetic patch 831 on the second iron sheet on the support outer beam 81, the support outer beam 81 will not slide and tilt to affect the turning out of the hand-tightening bolt 86 at the other side, and the hand-tightening bolt 86 at the other end can also be easily turned out, which is convenient for adjusting the height of the support outer beam 81.

[0034] After the support outer beam 81 is adjusted to the required height, after tightening the hand-tightening bolt 86, the frictional resistance generated by the close fit of the hand-tightening bolt 86 and the support column 83 is superimposed on the magnetic adsorption force of the magnetic patch 831, so that the support outer beam 81 is firmly fixed at a certain height.

[0035] A pair of opposite end faces of the base 4 are each provided with a first guide groove 41. The end face of the outer beam 81 of the bracket in contact with the first guide groove 41 is provided with a first sliding block matching the first guide groove 41. The first sliding block slides up and down in the first guide groove 41, which can provide multi-point support for the outer beam 81 of the bracket and can better ensure the stability of the outer beam 81 of the bracket.

[0036] An extension plate 811 of the bracket is integrally formed on the end face of the outer beam 81 of the bracket in contact with the baffle 9. The baffle 9 is fixedly connected to the extension plate 811 of the bracket. The baffle 9 moves up and down by the up and down sliding of the outer beam 81 of the bracket. The height of the baffle 9 is adjusted according to the different thicknesses of the stainless steel plate, and the lower end of the baffle 9 is kept in contact with the upper surface of the stainless steel plate, so as to realize the blocking of dirt and particles on the surface of the stainless steel plate by the baffle 9 and prevent the dirt and particles from entering the rolling wheel.

[0037] A plurality of second threaded holes are provided on the end face of the extension plate 811 of the bracket in contact with the baffle 9. The baffle 9 is provided with third threaded holes matching the plurality of second threaded holes. The second threaded holes and the third threaded holes are both threadedly connected with second bolts 91, so as to realize the fixed combination of the baffle 9 and the baffle bracket 8. At the same time, when the baffle 9 is worn after long-term use and affects the use, the second bolts 91 can be unscrewed to replace the baffle 9.

[0038] As Figure 2 and Figure 7 shown, a sliding groove 812 is provided on the outer beam 81 of the bracket, and a second guide groove 821 is provided on the inner cross beam 82 of the bracket. The lengths of the sliding groove 812 and the second guide groove 821 are the same and are both equal to the distance between the two opposite faces of the base 4. The outer beam 81 of the bracket is connected with a brush bracket 101. The brush bracket 101 slides in the second guide groove 821 and the sliding groove 812. One end of the brush bracket 101 is provided with a second sliding block matching the second guide groove 821, so as to ensure that the brush bracket 101 does not tilt during sliding. A brush 10 matching the baffle 9 is fixedly connected to the lower end of the brush bracket 101. The brush 10 matches one side end face of the baffle 9 and can clean the dirt attached to the side face of the baffle 9. During rolling, the brush 10 slides to one end of the sliding groove 812. Since the length of the sliding groove 812 is greater than the transverse length of the rolled stainless steel plate, the position of the brush 10 at this time does not affect the passage of the stainless steel plate. When the stainless steel plate completely passes through the baffle 9, manually slide the brush bracket 101 from one end of the sliding groove 812 to the other end, driving the brush 10 to sweep from one end of the baffle 9 to the other end to clean the dirt on the side face of the baffle 9.

[0039] The end face of the brush holder 101 in contact with the brush 10 is provided with a plurality of fourth threaded holes, and the brush 10 is provided with fifth threaded holes matching the plurality of fourth threaded holes. The fourth threaded holes and the fifth threaded holes are both threadedly connected with third bolts 102, realizing the fixed connection between the brush 10 and the brush holder 101. At the same time, after the brush 10 is worn after long-term use, the bolts can be disassembled to replace the brush 10.

[0040] Magnetic blocks 813 are respectively fixedly connected to the groove walls of a pair of opposite end faces of the sliding groove 812. A plurality of first iron sheets are fixedly connected to the brush holder 101, and the plurality of first iron sheets are magnetically connected to the magnetic blocks 813. When the brush holder 101 slides to one end of the sliding groove 812, the magnetic adsorption of the magnetic blocks 813 on the first iron sheets plays a fixing role on the brush holder 101, preventing the brush holder 101 from sliding randomly under interference when the stainless steel plate passes through.

[0041] As Figure 3 、 Figure 4 and Figure 6 As shown, a dust collection tray 6 is provided below the feeding plate roller 5. The end face of the dust collection tray 6 is provided with a plurality of sixth threaded holes, and the inner wall end face of the base 4 is provided with a plurality of seventh threaded holes matching the sixth threaded holes. The sixth threaded holes and the seventh threaded holes are both threadedly connected with first bolts 61, so that the dust collection tray 6 is threadedly connected to the inner wall of the base 4.

[0042] The bottom of the dust collection tray 6 slopes downward, and the inclination angle is 30° - 50°. A part of the dust collection tray 6 located below the baffle 9 is rectangular, and the remaining part of the dust collection tray 6 is triangular. The length of the rectangular part is equal to the distance from the inner wall of the base 4. After the stainless steel plate passes through, it can hold the particulate matter blocked by the baffle 9. The end of the triangular part is open, and a dust collection box 7 corresponding to the opening is placed on one end face of the base 4. The dust collection box 7 is directly below the opening at the lower end of the dust collection tray 6. The size of the dust collection box 7 is larger than the front opening of the dust collection tray 6. The particulate matter falling on the dust collection tray 6 converges along the inclined surface towards the front opening and falls downward. The dust collection box 7 can hold the falling particulate matter. The dust collection box 7 is separated from the base 4. A dust collection box handle 71 is welded to the side of the dust collection box 7. When the particulate matter in the dust collection box 7 is full, the dust collection box 7 can be pulled out through the dust collection box handle 71, and then the dust collection box 7 can be cleaned.

[0043] When in use, as Figure 1As shown, when the stainless steel plate moves on the plate feeding roller 5 and enters the embossing wheel, when there are flying particulate matters generated during related operations such as welding, processing, and cutting in the embossing processing environment and fall onto the stainless steel plate, before the stainless steel plate enters embossing, it passes through the cleaning assembly. The baffle 9 of the cleaning assembly fits the surface of the stainless steel plate, blocking the particulate matters on the surface of the stainless steel plate in front of the baffle 9 and preventing the particulate matters from entering the embossing wheel. Since the baffle 9 of the cleaning assembly can be adjusted in height by adjusting the baffle bracket 8 to adapt to stainless steel plates of different thicknesses, when the thickness of the stainless steel plate changes, the baffle 9 can still fit the stainless steel plate and play a role in blocking particulate matters.

[0044] As Figure 3 shown, after the stainless steel plate passes through the baffle 9, the particulate matters blocked by the baffle 9 will fall onto the dust collection tray 6. For some dirt that adheres to the baffle 9 and does not fall off, the baffle 9 is cleaned by the sliding brush 10, and the dirt adhering to the baffle 9 is swept off and then falls into the dust collection tray 6. These fallen particulate matters converge to the lower opening along the inclined bottom surface of the dust collection tray 6 and then fall into the dust collection box 7. The dust collection box 7 collects the particulate matters and then conducts unified cleaning. Since the baffle 9 is connected to the baffle bracket 8 by bolts and the brush 10 is connected to the brush bracket 101 by bolts, when the baffle 9 or the brush 10 is worn and affects the use, the corresponding bolts can be removed to replace the corresponding baffle 9 or brush 10.

[0045] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present utility model, the present utility model can be implemented in other specific forms. Therefore, in any regard, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.

[0046] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A stainless steel plate embossing machine, comprising an upper embossing wheel, a base, and a plate feeding roller, characterized in that, The base is fixedly connected with a cleaning component on one end face of the upper embossing wheel. The cleaning component is located on the upper end face of the plate feeding roller. The cleaning component cleans the stainless steel plate. The cleaning component includes a baffle bracket and a baffle. The baffle bracket is connected to one end face of the base. The baffle is fixedly connected with the baffle bracket. The baffle matches the length of the rolling surface of the upper embossing wheel.

2. The embossing machine for stainless steel plates according to claim 1, characterized in that, The baffle bracket includes a bracket outer beam, a bracket inner cross beam, a pair of bracket columns, a pair of bracket side ears, a pair of hand-tightening bolts, and a pair of magnetic patches. The bracket outer beam is slidably connected to one end face of the base. The bracket inner cross beam is integrally formed on one end face of the bracket outer beam. A pair of the bracket columns are welded to the opposite end faces of the base. A magnetic patch is fixed on one end face of the bracket column. A second iron sheet matching the magnetic patch is fixedly connected to the bracket outer beam. The magnetic patch is magnetically connected to the second iron sheet. A sliding hole matching the combination of the bracket column and the magnetic patch is opened on the bracket side ear. The baffle bracket slides on the bracket column through the sliding hole.

3. The embossing machine for stainless steel plates according to claim 2, characterized in that, A first threaded hole is opened on the outer end face of each of the pair of bracket side ears. The first threaded hole is threadedly connected with a hand-tightening bolt. The hand-tightening bolt abuts against one end face of the bracket column. A first guiding groove is opened on each of the pair of opposite end faces of the base. A first sliding block matching the first guiding groove is provided on the end face of the bracket outer beam in contact with the first guiding groove. The first sliding block slides up and down in the first guiding groove. A bracket extension plate is integrally formed on the end face of the bracket outer beam in contact with the baffle. The baffle is fixedly connected with the bracket extension plate.

4. The embossing machine for stainless steel plates according to claim 3, wherein, A plurality of second threaded holes are opened on the end face of the bracket extension plate in contact with the baffle. The baffle is provided with a third threaded hole matching the plurality of second threaded holes. The second threaded hole and the third threaded hole are both threadedly connected with a second bolt.

5. A stainless steel plate embossing machine according to claim 4, characterized in that, A sliding groove is opened on the bracket outer beam. A second guiding groove is opened on the bracket inner cross beam. The bracket outer beam is connected with a brush bracket. The brush bracket slides in the second guiding groove and the sliding groove. One end of the brush bracket is provided with a second sliding block matching the second guiding groove. A brush matching the baffle is fixedly connected to the lower end of the brush bracket.

6. The embossing machine for stainless steel plates according to claim 5, characterized in that, A plurality of fourth threaded holes are opened on the end face of the brush bracket in contact with the brush. The brush is provided with a fifth threaded hole matching the plurality of fourth threaded holes. The fourth threaded hole and the fifth threaded hole are both threadedly connected with a third bolt.

7. A stainless steel plate embossing machine according to claim 6, wherein, Magnetic blocks are respectively fixedly connected to the groove walls of the pair of opposite end faces of the sliding groove. A plurality of first iron sheets are fixedly connected to the brush bracket. The plurality of first iron sheets are magnetically connected to the magnetic blocks.

8. A stainless steel plate embossing machine according to any one of claims 1 to 7, characterized in that, A dust collection tray corresponding to the baffle is fixedly connected to one end face of the inner wall of the base. The dust collection tray is located below the plate feeding roller.

9. The embossing machine for stainless steel plates according to claim 8, characterized in that, The bottom of the dust collection tray slopes downward, and the inclination angle is 30°-50°.

10. A stainless steel plate embossing machine according to claim 9, characterized in that, The lower end of the dust collection tray is open. A dust collection box corresponding to the opening is placed on one end face of the base. The dust collection box is separated from the base. Dust collection box handles are welded to both side faces of the dust collection box.