Thin plate surface frosting production equipment and process

The thin plate is pressed through the electronically controlled telescopic moving device and the pressing device, which solves the matte defects caused by warping. Combined with splash, anti-slip and collection devices, an efficient and clean thin plate matte process is achieved.

CN116423315BActive Publication Date: 2025-08-12ZHAOQING HONGWANG METAL IND
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Patent Information

Application Number
CN202310289450.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-22
Publication Date
2025-08-12
Estimated Expiration
2043-03-22

AI Technical Summary

Technical Problem

When existing frosting production equipment mattes the warped thin plate, it is easy to cause defects on the surface of the thin plate and affect the quality of the finished product.

Method used

The electronically controlled telescopic moving device and pressing device are adopted to press the top surface of the thin plate through the swing rod and torsion spring to prevent warping; combined with splash, anti-slip and collection devices, it reduces dust, impurity pollution and high-temperature deformation.

Benefits of technology

It effectively avoids warping and frosting defects of thin plates, improves the quality of finished products, reduces subsequent cleaning work, and reduces the risks of high-temperature deformation and environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a thin plate surface frosting production equipment and process, comprising an electrically controlled telescopic movable device fixed on the top of a processing table, a frosting roller group fixed on the movable end of the electrically controlled telescopic movable device, a pressing device, an anti-splashing device and a collecting device; wherein the pressing device comprises a swing rod hinged at the outer wall of the frosting roller group, a torsion spring is provided between the swing rod and the frosting roller group, there are four swing rods, the four swing rods are respectively arranged on the left and right sides of the frosting roller group, a pressing roller rotatably mounted on the end of the swing rod away from the frosting roller group, and a pressure edge assembly arranged below the swing rod, wherein the anti-splashing device comprises two sleeve rods embedded in the front and back outer walls of the frosting roller group, and two baffles fixed on the left and right sides of the sleeve rod. The present invention has the characteristics of strong practicality and the ability to quickly perform frosting operations on warped thin plates.
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Description

Technical Field

[0001] The present invention relates to the technical field of thin plate processing, in particular to a thin plate surface frosting production device and process. Background Art

[0002] Metal sheet is steel plate, which is a flat cross-section steel with a large ratio of width to thickness. In the process of producing and processing metal sheet, the surface of the plate is usually frosted, which requires the use of frosting production equipment.

[0003] The utility model patent with patent announcement number CN213998809U discloses a grinding device for thin plate processing and production, which solves the problem of manually using sandpaper to grind and clean the surface of thin plates, which has high labor intensity and easily causes hand fatigue. The device includes a base plate and a servo motor. A mounting seat is fixed to the upper end of the base plate, and support plates are provided at both ends of the mounting seat. A cross bar is slidably installed between the top ends of the two support plates. A rack is provided on the upper surface of the cross bar along its length, and a connecting block is slidably installed on the cross bar. The connecting block is hollow, and a gear is rotatably installed inside the connecting block, and the gear is meshed with the rack. A mounting block is provided at the bottom end of the connecting block, and sandpaper is installed at the bottom end of the mounting block. The device drives the sandpaper to reciprocate on the surface of the thin plate through the servo motor, thereby cleaning the surface of the thin plate, improving the surface cleanliness of the thin plate, and reducing manual labor intensity.

[0004] However, the current frosting production equipment has the following problems: since thin plates will inevitably warp, when the frosting production equipment is frosting the warped thin plates, the grinding wheel of the frosting equipment will over-grind the warped parts of the thin plates, resulting in defects on the surface of the thin plates, thereby reducing the quality of the finished thin plates. Therefore, it is very necessary to design a thin plate surface frosting production equipment and process that has strong practicality and can quickly frost warped thin plates. Summary of the Invention

[0005] The purpose of the present invention is to provide a thin plate surface frosting production equipment and process to solve the problems raised in the above background technology.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: a thin plate surface frosting production equipment, comprising an electrically controlled telescopic moving device fixed on the top of a processing table, a frosting roller group fixed on the moving end of the electrically controlled telescopic moving device, and also comprising a pressing device, a splash-proof device and a collecting device;

[0007] The pressing device includes a swing lever hinged on the outer wall of the grinding roller group, a torsion spring is provided between the swing lever and the grinding roller group, there are four swing levers, and the four swing levers are respectively arranged on the left and right sides of the grinding roller group, a pressing roller rotatably mounted on the end of the swing lever away from the grinding roller group, and a pressure edge assembly arranged below the swing lever. Under the action of the torsion spring of the swing lever, the grinding roller group drives the pressing roller to press the top surface of the thin plate through the swing lever, thereby flattening the top surface of the thin plate, thereby avoiding the warping of the thin plate, which causes the grinding wheel to over-grind the warped part of the thin plate, thereby improving the quality of thin plate processing;

[0008] The anti-splash device includes two sleeve rods embedded in the front and back outer walls of the grinding roller group, two baffles fixed on the left and right sides of the sleeve rods, and the baffles form a protection at the grinding roller group to prevent the problem of dust splashing during the sanding process of the thin plate. There is a dust removal component set on the right side of the baffle and an anti-slip device set on the dust prevention component.

[0009] Among them, the collection device includes a collection shell fixed at the bottom of the inner wall of the processing table and a scraping assembly arranged inside the collection shell. The impurities pushed to the positions on both sides by the V-shaped scraper will fall into the collection shell for collection, thereby avoiding the problem of impurities falling into the working environment and causing pollution to the working environment.

[0010] According to the above technical solution, the edge pressing assembly includes two T-shaped rods fixed on the front and back outer walls of the grinding roller group, a spring is provided between the T-shaped rod and the V-shaped plate, and the V-shaped plate is slidably installed on the outer wall of the T-shaped rod. At the same time, under the action of the spring force corresponding to the T-shaped rod, the T-shaped rod drives the V-shaped plate to press the edge of the thin plate, thereby avoiding the warping of the edge of the thin plate and causing defects in the thin plate processing.

[0011] According to the above technical solution, the dust-proof component includes a spring insertion rod that passes through and is slidably installed on the right side of the sleeve rod and is provided with a spring between the sleeve rod, a slider slidably installed on the right side of the spring insertion rod, a spring plate arranged between the spring insertion rod and the outer wall of the slider, a V-shaped scraper fixed to the bottom of the slider, and the frosting roller group drives the slider to move synchronously through the sleeve rod and the spring insertion rod, and the slider drives the V-shaped scraper to push the debris generated when the top surface of the thin plate is frosted to both sides, thereby reducing the subsequent workers' cleaning process of the thin plate, a spray box fixed on the top of the slider, a spray pipe fixed on the left side of the spring plate and connected to the spray box through a hose, and the frosting roller group drives the spring insertion rod to squeeze the spring plate through the sleeve rod, the spring plate bulges and deforms and drives the spray pipe toward the frosting roller group, and the water in the spray box is sprayed to the frosting roller group through the spray pipe, so that the sprayed water cools the frosting roller and the thin plate, thereby avoiding the problem of deformation of the thin plate due to the high temperature generated during frosting. At the same time, the sprayed water can reduce dust generated during frosting.

[0012] The U-shaped plate is fixed on the right side outer wall of the slider, and the T-shaped plate is arranged between the U-shaped plate and the outer wall of the slider. The T-shaped plate squeezes the curved surface of the elastic plate, and the elastic plate is deformed and pushes the U-shaped plate to move downward. The U-shaped plate contacts the top surface of the processing table and wipes off the water stains adhered to the top surface of the processing table, thereby avoiding the problem of abnormal thin plate processing caused by slipping due to water during the next thin plate processing.

[0013] According to the above technical solution, the scraping assembly includes a U-shaped plate slidably mounted on the edge of the collecting shell near the center of the processing table, a spring slide plate arranged at the top edge of the U-shaped plate and the collecting shell, and an L-shaped scraper fixed above the side of the U-shaped plate away from the center of the processing table. At the same time, the V-shaped plate drives the L-shaped scraper to drop impurities and water adhering to the edge of the processing table into the collecting shell, thereby avoiding the problem that impurities and water adhering to the edge of the processing table will cause contamination to the next thin plate to be processed. The scraping assembly also includes an elastic convex ball plate fixed below the side of the U-shaped plate away from the center of the processing table. , a resistance rod fixed on the elastic convex ball plate close to the U-shaped plate, and a protrusion plate fixed inside the collecting shell, wherein a protrusion is fixed on the outer wall of the protrusion plate, and the protrusion of the protrusion plate is located on the movement trajectory of the resistance rod, and the end of the elastic convex ball plate away from the U-shaped plate contacts the bottom of the L-shaped scraper rod, and at the same time, the L-shaped scraper rod drives the elastic convex ball plate and the resistance rod to move through the U-shaped plate, and the protrusion of the protrusion plate drives the elastic convex ball plate to knock on the L-shaped scraper rod by pushing the resistance rod, and the L-shaped scraper rod vibrates and shakes off the impurities and water scraped off adhering to it, thereby improving the efficiency of the L-shaped scraper rod in scraping impurities.

[0014] A production process of a thin plate surface frosting production equipment, comprising the following steps

[0015] S1. Place the thin plate on the processing table;

[0016] S2, start the electric control telescopic moving device and the grinding roller group;

[0017] S3, the moving end of the electrically controlled telescopic moving device first drives the sanding roller group to stick to the surface of the thin plate, and then the moving end of the electrically controlled telescopic moving device drives the sanding roller group to move on the surface of the thin plate;

[0018] S4. Simultaneously, under the action of the torsion spring force of the swing arm, the grinding roller group drives the pressing roller through the swing arm to press the top surface of the thin plate, thereby flattening the top surface of the thin plate;

[0019] S5. The grinding roller group can perform grinding on the surface of the thin plate.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] (1) The present invention sets an electrically controlled telescopic moving device. Under the action of the torsion spring force of the swinging rod, the grinding roller group drives the pressing roller to press the top surface of the thin plate through the swinging rod, thereby flattening the top surface of the thin plate, thereby avoiding the problem of warping of the thin plate, which causes the grinding wheel to over-grind the warped part of the thin plate, thereby improving the quality of thin plate processing; at the same time, under the action of the spring force corresponding to the T-shaped rod, the T-shaped rod drives the V-shaped plate to press the edge of the thin plate, thereby avoiding the problem of warping of the edge of the thin plate, which causes defects in thin plate processing.

[0022] (2) The present invention sets a splash-proof device so that the baffle forms a protection at the sanding roller group, thereby avoiding the problem of dust splashing during the sanding process of the thin plate; at the same time, the electric-controlled telescopic moving device, the sanding roller group, the sleeve rod, the spring plug rod and the slider cooperate to drive the V-shaped scraper to push the debris generated when the top surface of the thin plate is sanded to both sides, thereby reducing the subsequent workers' cleaning process of the thin plate; at the same time, the spray box, the electric-controlled telescopic moving device, the sanding roller group, the sleeve rod, the spring plug rod and the slider cooperate to push the spring plate to bulge and deform and drive the spray pipe toward the sanding roller group, and the water in the spray box is sprayed toward the sanding roller group through the spray pipe, so that the sprayed water cools the sanding roller and the thin plate, thereby avoiding the problem of the thin plate being deformed due to the high temperature generated during sanding, and at the same time, the sprayed water can reduce the dust generated during sanding.

[0023] (3) The present invention sets an anti-skid device, so that the sleeve rod, spring rod, slider, spring rod and cross bar cooperate to drive the T-shaped pressure rod to squeeze the arc surface of the elastic arc plate, and the elastic arc plate is deformed and pushes the U-shaped cotton plate to move downward. The U-shaped cotton plate contacts the top surface of the processing table, so that the U-shaped cotton plate wipes off the water stains adhered to the top surface of the processing table, thereby avoiding the problem of slipping due to water during the processing of the next thin plate, which leads to abnormal processing of the thin plate.

[0024] (4) The present invention sets a collecting device so that the impurities pushed to the positions on both sides by the V-shaped scraper will fall into the collecting shell for collection, thereby avoiding the problem of impurities falling into the working environment and causing pollution to the working environment. At the same time, the grinding roller group, T-shaped rod and V-shaped plate cooperate to drive the L-shaped scraper to drop the impurities and water adhering to the edge of the processing table into the collecting shell, thereby avoiding the problem of impurities and water adhering to the edge of the processing table and causing pollution to the next thin plate to be processed; at the same time, the L-shaped scraper, U-shaped plate, elastic convex ball plate, resistance rod, bump plate and resistance rod cooperate to push the elastic convex ball plate to knock the L-shaped scraper, and the L-shaped scraper vibrates and shakes off the impurities and water scraped off from it, thereby improving the efficiency of the L-shaped scraper in scraping impurities. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0026] Figure 1 A schematic diagram of the present invention as a whole;

[0027] Figure 2 It is a schematic diagram of the partial structure of the present invention as a whole;

[0028] Figure 3 is a schematic diagram of the electrically controlled telescopic moving device of the present invention;

[0029] Figure 4 is a schematic diagram of the splash-proof device of the present invention;

[0030] Figure 5 is a schematic diagram of the anti-slip device of the present invention;

[0031] Figure 6 is a schematic diagram of a collecting device of the present invention;

[0032] In the figure: 1. processing table; 2. electric telescopic moving device; 3. grinding roller group; 4. pressing device; 41. swing rod; 42. pressing roller; 43. T-shaped rod; 44. V-shaped plate; 5. splash-proof device; 51. sleeve rod; 52. baffle; 53. spring plug rod; 54. slider; 55. spring plate; 56. V-shaped scraper; 57. spray box; 58. spray pipe; 6. collecting device; 61. collecting shell; 62. L-shaped scraper; 63. U-shaped plate; 64. spring slide; 65. elastic convex ball plate; 66. resistance rod; 67. bump plate; 7. anti-slip device; 71. cross bar; 72. elastic arc plate; 73. T-shaped pressure rod; 74. U-shaped cotton plate. DETAILED DESCRIPTION

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0034] Example 1

[0035] See also Figure 1-4 The present invention provides a technical solution: a thin plate surface frosting production equipment, including an electrically controlled telescopic moving device 2 fixed on the top of a processing table 1, a frosting roller group 3 fixed on the moving end of the electrically controlled telescopic moving device 2, a pressing device 4 and a splash-proof device 5;

[0036] Among them, the pressing device 4 includes a swing rod 41 hinged on the outer wall of the grinding roller group 3, a torsion spring is provided between the swing rod 41 and the grinding roller group 3, there are four swing rods 41, and the four swing rods 41 are respectively arranged on the left and right sides of the grinding roller group 3, a pressing roller 42 rotatably mounted on the end of the swing rod 41 away from the grinding roller group 3, and a pressure edge component arranged below the swing rod 41. Under the action of the torsion spring force of the swing rod 41, the grinding roller group 3 drives the pressing roller 42 through the swing rod 41 to press the top surface of the thin plate, thereby flattening the top surface of the thin plate, thereby avoiding the warping of the thin plate, which causes the grinding wheel to over-grind the warped part of the thin plate, thereby improving the quality of thin plate processing;

[0037] Among them, the splash-proof device 5 includes two sleeve rods 51 embedded in the front and back outer walls of the grinding roller group 3, two baffles 52 fixed on the left and right sides of the sleeve rods 51, and the baffles 52 form protection at the grinding roller group 3, thereby avoiding the problem of dust splashing generated during the sanding process of the thin plate, and a dust removal component is arranged on the right side of the baffle 52.

[0038] The edge pressing assembly includes two T-shaped rods 43 fixed on the front and back outer walls of the grinding roller group 3, a spring is provided between the T-shaped rod 43 and the V-shaped plate 44, and the V-shaped plate 44 is slidably installed on the outer wall of the T-shaped rod 43. At the same time, under the action of the spring force corresponding to the T-shaped rod 43, the T-shaped rod 43 drives the V-shaped plate 44 to press the edge of the thin plate, thereby avoiding the warping of the edge of the thin plate and causing defects in the thin plate processing.

[0039] The dust-proof component includes a spring rod 53 that penetrates and is slidably installed on the right side of the sleeve rod 51 and is provided with a spring between the sleeve rod 51, a slider 54 that is slidably installed on the right side of the spring rod 53, a spring plate 55 that is arranged between the spring rod 53 and the outer wall of the slider 54, and a V-shaped scraper 56 fixed to the bottom of the slider 54. At the same time, the grinding roller group 3 drives the slider 54 to move synchronously through the sleeve rod 51 and the spring rod 53, and the slider 54 drives the V-shaped scraper 56 to push the debris generated when the top surface of the thin plate is frosted to both sides, thereby reducing the subsequent workers' cleaning process of the thin plate. The spray box 57 on the top of the slider 54 and the spray pipe 58 fixed on the left side of the spring plate 55 and connected to the spray box 57 through a hose, and at the same time, the frosting roller group 3 drives the spring insertion rod 53 to squeeze the spring plate 55 through the sleeve rod 51, and the spring plate 55 bulges and deforms and drives the spray pipe 58 to lean against the frosting roller group 3. The water in the spray box 57 is sprayed toward the frosting roller group 3 through the spray pipe 58, so that the sprayed water cools the frosting roller and the thin plate, thereby avoiding the problem of deformation of the thin plate due to the high temperature generated during frosting. At the same time, the sprayed water can reduce dust generated during frosting.

[0040] When in use, a thin plate is placed on the processing table 1, and the electric-controlled telescopic moving device 2 and the frosting roller group 3 are started. The moving end of the electric-controlled telescopic moving device 2 first drives the frosting roller group 3 to stick to the surface of the thin plate, and then the moving end of the electric-controlled telescopic moving device 2 drives the frosting roller group 3 to move on the surface of the thin plate. At this time, the frosting roller group 3 can frost the surface of the thin plate. At the same time, when the moving end of the electric-controlled telescopic moving device 2 drives the frosting roller group 3 to stick to the surface of the thin plate, under the action of the torsion spring force of the swing arm 41, the frosting roller group 3 drives the pressing roller 42 to press the top surface of the thin plate through the swing arm 41, thereby flattening the top surface of the thin plate, thereby avoiding warping of the thin plate, which causes the grinding wheel to over-grind the warped part of the thin plate, thereby improving the quality of thin plate processing; at the same time, under the action of the spring force corresponding to the T-shaped rod 43, the T-shaped rod 43 drives the V-shaped plate 44 to press the edge of the thin plate, thereby avoiding warping of the edge of the thin plate, which causes defects in thin plate processing.

[0041] When the sanding roller group 3 is sanding the surface of the thin plate, the baffle 52 forms a protection at the sanding roller group 3, thereby avoiding the problem of dust splashing during the sanding process of the thin plate; at the same time, when the moving end of the electric-controlled telescopic moving device 2 drives the sanding roller group 3 to move, the sanding roller group 3 drives the slider 54 to move synchronously through the sleeve rod 51 and the spring plug rod 53, and the slider 54 drives the V-shaped scraper 56 to push the debris generated when the top surface of the thin plate is sanded to both sides, thereby reducing the subsequent workers' cleaning process of the thin plate; at the same time, the spray box 57 is started, and the electric-controlled telescopic moving device When the movable end of device 2 drives the frosting roller group 3 to stick to the surface of the thin plate, the frosting roller group 3 drives the spring insertion rod 53 to slide downward along the outer wall of the slider 54 through the sleeve rod 51, and the spring insertion rod 53 squeezes the spring plate 55, and the spring plate 55 bulges and deforms and drives the spray pipe 58 to lean towards the frosting roller group 3. The water in the spray box 57 is sprayed toward the frosting roller group 3 through the spray pipe 58, so that the sprayed water cools the frosting roller and the thin plate, thereby avoiding the problem of deformation of the thin plate due to the high temperature generated during frosting. At the same time, the sprayed water can reduce dust generated during frosting.

[0042] Example 2

[0043] See also Figure 1-6 Based on Example 1, this embodiment further includes a collecting device 6 and an anti-slip device 7;

[0044] Among them, the collecting device 6 includes a collecting shell 61 fixed at the bottom of the inner wall of the processing table 1 and a scraping assembly arranged inside the collecting shell 61. The impurities pushed to the positions on both sides by the V-shaped scraper 56 will fall into the collecting shell 61 for collection, thereby avoiding the problem of impurities falling into the working environment and causing pollution to the working environment.

[0045] When the locking cam 73 is in the unlocked position, the locking cam 73 is in the unlocked position, and the locking cam 73 is in the unlocked position, so that the locking cam 73 is unlocked and the winch cam 73 is unlocked.

[0046] The scraping assembly includes a U-shaped plate 63 slidably mounted on the edge of the collecting shell 61 near the center of the processing table 1, a spring slide 64 set at the top edge of the U-shaped plate 63 and the collecting shell 61, and an L-shaped scraper 62 fixed above the side of the U-shaped plate 63 away from the center of the processing table 1. At the same time, the V-shaped plate 44 drives the L-shaped scraper 62 to drop the impurities and water adhering to the edge of the processing table 1 into the collecting shell 61, thereby avoiding the problem that impurities and water adhering to the edge of the processing table 1 will cause contamination to the next thin plate to be processed. The scraping assembly also includes an elastic convex ball plate 65 fixed below the side of the U-shaped plate 63 away from the center of the processing table 1, and an elastic convex ball plate fixed on the elastic convex ball plate. The resistance rod 66 on one side of the U-shaped plate 63 is close to the bump plate 67 fixed to the inside of the collecting shell 61. A bump is fixed on the outer wall of the bump plate 67. The bump of the bump plate 67 is located on the movement trajectory of the resistance rod 66. The end of the elastic convex ball plate 65 away from the U-shaped plate 63 contacts the bottom of the L-shaped scraper 62. At the same time, the L-shaped scraper 62 drives the elastic convex ball plate 65 and the resistance rod 66 to move through the U-shaped plate 63. The bump of the bump plate 67 drives the elastic convex ball plate 65 to knock on the L-shaped scraper 62 by pushing the resistance rod 66. The L-shaped scraper 62 vibrates and shakes off the impurities and water scraped off by the L-shaped scraper 62, thereby improving the efficiency of the L-shaped scraper 62 in scraping impurities.

[0047] When in use, when the thin plate processing is completed, the thin plate is pulled out of the processing table 1. At this time, when the sleeve rod 51 drives the spring insertion rod 53 to slide downward along the outer wall of the slider 54, the spring insertion rod 53 drives the cross bar 71 to move downward synchronously, and the cross bar 71 drives the T-shaped pressure rod 73 to move downward. The T-shaped pressure rod 73 squeezes the arc surface of the elastic arc plate 72, and the elastic arc plate 72 is deformed and pushes the U-shaped cotton plate 74 to move downward. The U-shaped cotton plate 74 contacts the top surface of the processing table 1, so that the U-shaped cotton plate 74 wipes off the water stains adhered to the top surface of the processing table 1, thereby avoiding the problem of abnormal thin plate processing caused by slipping due to water during the next thin plate processing.

[0048] At the same time, the impurities pushed to the positions on both sides by the V-shaped scraper 56 will fall into the collection shell 61 for collection, thereby preventing the impurities from falling into the working environment and causing pollution to the working environment. At the same time, when the grinding roller group 3 moves, the T-shaped rod 43 drives the V-shaped plate 44 to move synchronously, and the V-shaped plate 44 drives the L-shaped scraper 62 to move synchronously. The L-shaped scraper 62 will drop the impurities and water adhering to the edge of the processing table 1 into the collection shell 61, thereby preventing the impurities and water adhering to the edge of the processing table 1 from affecting the next thin plate to be processed. The problem of pollution is caused; at the same time, the L-shaped scraper 62 drives the elastic convex ball plate 65 and the resistance rod 66 to move synchronously through the U-shaped plate 63, and the convex block of the convex block plate 67 drives the elastic convex ball plate 65 away from the L-shaped scraper 62 by pushing the resistance rod 66. When the convex block of the convex block plate 67 does not push the resistance rod 66, under the elastic force of the elastic convex ball plate 65, the elastic convex ball plate 65 knocks on the L-shaped scraper 62, and the L-shaped scraper 62 vibrates and shakes off the impurities and water scraped thereon, thereby improving the efficiency of the L-shaped scraper 62 in scraping impurities.

[0049] Example 3

[0050] A production process of a thin plate surface frosting production equipment, comprising the following steps

[0051] S1, placing the thin plate on processing table 1;

[0052] S2, start the electrically controlled telescopic moving device 2 and the grinding roller group 3;

[0053] S3, the moving end of the electrically controlled telescopic moving device 2 first drives the sanding roller group 3 to stick to the surface of the thin plate, and then the moving end of the electrically controlled telescopic moving device 2 drives the sanding roller group 3 to move on the surface of the thin plate;

[0054] S4. Simultaneously, under the action of the torsion spring force of the swing lever 41, the sanding roller group 3 drives the pressing roller 42 via the swing lever 41 to press the top surface of the thin plate, thereby flattening the top surface of the thin plate;

[0055] S5, the grinding roller group 3 can perform grinding on the surface of the thin plate.

[0056] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0057] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A thin plate surface frosting production equipment, comprising an electrically controlled telescopic moving device (2) fixed on the top of a processing table (1), and an abrasive roller group (3) fixed on the moving end of the electrically controlled telescopic moving device (2), characterized in that: It also includes a pressing device (4), a splash-proof device (5) and a collecting device (6); The pressing device (4) comprises a swing rod (41) hinged on the outer wall of the grinding roller group (3), a pressing roller (42) rotatably mounted on one end of the swing rod (41) away from the grinding roller group (3), and a pressing assembly arranged below the swing rod (41); The anti-splash device (5) comprises two sleeve rods (51) embedded in the front and back outer walls of the grinding roller group (3), two baffles (52) fixed on the left and right sides of the sleeve rods (51), a dust removal component arranged on the right side of the baffle (52), and an anti-slip device (7) arranged on the dust prevention component; The collecting device (6) comprises a collecting shell (61) fixed to the bottom of the inner wall of the processing table (1), and a scraping assembly arranged inside the collecting shell (61); The scraping assembly comprises a U-shaped plate (63) slidably mounted on an edge of a collecting shell (61) close to the center of the processing table (1), a spring slide plate (64) arranged at the top edge of the U-shaped plate (63) and the collecting shell (61), and an L-shaped scraping rod (62) fixed above a side of the U-shaped plate (63) away from the center of the processing table (1); The scraping assembly further comprises an elastic convex ball plate (65) fixed below a side of the U-shaped plate (63) away from the center of the processing table (1), an abutment rod (66) fixed to a side of the elastic convex ball plate (65) close to the U-shaped plate (63), and a convex block plate (67) fixed inside the collecting shell (61); A protrusion is fixed on the outer wall of the protrusion plate (67), and the protrusion of the protrusion plate (67) is located on the movement track of the abutting rod (66). One end of the elastic protruding ball plate (65) away from the U-shaped plate (63) contacts the bottom of the L-shaped scraper rod (62).

2. The thin plate surface frosting production equipment according to claim 1, characterized in that: The edge pressing assembly comprises two T-shaped rods (43) fixed on the front and back outer walls of the grinding roller group (3), and a V-shaped plate (44) slidably mounted on the outer walls of the T-shaped rods (43).

3. The thin plate surface frosting production equipment according to claim 2, characterized in that: A torsion spring is provided between the swing lever (41) and the sanding roller group (3). There are four swing levers (41), which are respectively arranged on the left and right sides of the sanding roller group (3). A spring is provided between the T-shaped lever (43) and the V-shaped plate (44).

4. The thin plate surface frosting production equipment according to claim 1, characterized in that: The dust prevention assembly includes a spring rod (53) that penetrates and is slidably mounted on the right side of the sleeve rod (51) and has a spring between the sleeve rod (51), a slider (54) that is slidably mounted on the right side of the spring rod (53), a spring plate (55) that is arranged between the spring rod (53) and the outer wall of the slider (54), a V-shaped scraper (56) fixed to the bottom of the slider (54), a spray box (57) fixed to the top of the slider (54), and a spray pipe (58) that is fixed to the left side of the spring plate (55) and connected to the spray box (57) through a hose.

5. The thin plate surface frosting production equipment according to claim 4, characterized in that: The anti-slip device (7) comprises a cross bar (71) fixed to the bottom right side of the spring insertion rod (53), a T-shaped pressure bar (73) fixed to the middle right side of the cross bar (71), a U-shaped cotton plate (74) slidably mounted on the right side outer wall of the slider (54), and an elastic arc plate (72) arranged between the U-shaped cotton plate (74) and the outer wall of the slider (54).

6. The thin plate surface frosting production equipment according to claim 5, characterized in that: One end of the T-shaped pressure rod (73) away from the cross rod (71) contacts the outer wall of the elastic arc plate (72) away from the slider (54), and a strip groove for the sliding of the T-shaped pressure rod (73) is provided in the middle of the slider (54).

7. The production process of a thin plate surface frosting production equipment according to any one of claims 1 to 6, characterized in that: The following steps are included S1, placing the thin plate on the processing table (1); S2, starting the electrically controlled telescopic moving device (2) and the grinding roller group (3); S3, the moving end of the electrically controlled telescopic moving device (2) first drives the grinding roller group (3) to stick to the surface of the thin plate, and then the moving end of the electrically controlled telescopic moving device (2) drives the grinding roller group (3) to move on the surface of the thin plate; S4. Simultaneously, under the action of the torsion spring force of the swinging rod (41), the grinding roller group (3) drives the pressing roller (42) through the swinging rod (41) to press the top surface of the thin plate, thereby flattening the top surface of the thin plate; S5, the grinding roller group (3) can perform grinding processing on the surface of the thin plate.

Citation Information

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