A stainless steel plate processing device
By designing a stainless steel plate processing device including feeding components and planing components, the problem of inability to plan both sides of stainless steel and insufficient stability to thicker plates in the prior art is solved, and efficient, stable and precise processing of stainless steel plates is achieved.
Patent Information
- Application Number
- CN202510352119.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2045-03-25
AI Technical Summary
The existing stainless steel plate planing device cannot plan both sides of the stainless steel at the same time, and the stability cannot be guaranteed when the thicker stainless steel plate is planed, and debris are easily generated during the planing process, causing equipment failure.
A stainless steel plate processing device including feeding assembly and planing assembly is designed. The feeding assembly realizes the stable conveying of stainless steel plates and debris recovery through the transmission roller and support frame. The planing assembly realizes the simultaneous planing and welding slag treatment of both sides of the stainless steel plate through multiple sets of planing boards and hydraulic cylinders, and automatically cleans the debris generated by the planing by cleaning the assembly.
It realizes efficient planing of both sides of the stainless steel plate at the same time, ensuring the stability of the thicker plate, and improving processing accuracy and efficiency through automatic debris recovery and cleaning, avoiding equipment failures.
Smart Images

Figure CN119857874B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of metal planing, and particularly relates to a stainless steel plate processing device. Background Art
[0002] Stainless steel plates are widely used in multiple fields due to their excellent corrosion resistance, high strength, and aesthetic appearance. In the construction industry, stainless steel plates are commonly used in curtain walls, roofs, and decorative structures, such as the curved shapes of landmark buildings or the anti-pollution walls of subway stations; in the industrial field, they are made into chemical storage tanks, food processing equipment, and medical instruments because of their smooth surfaces, easy disinfection, and acid and alkali resistance; in transportation, ship hulls, high-speed train carriages, and automobile exhaust pipes rely on the weather resistance and high-temperature oxidation resistance of stainless steel. In addition, household appliances (such as refrigerator panels) and energy equipment (such as nuclear power plant pipelines) also rely on their stable performance.
[0003] A Chinese invention patent with the publication number CN117226163B discloses a stainless steel plate planing device. This device automatically adjusts the initial position of cutting the stainless steel plate. At the same time, this device alternates the processes of planing and lifting to improve the efficiency of planing the stainless steel plate. However, this device cannot plane both sides of the stainless steel simultaneously, and when planing a relatively thick stainless steel plate, this device cannot effectively ensure the stability of the stainless steel plate. At the same time, a large amount of debris is easily hidden in the planing guide rail after long-term use. If not cleaned in time, it is extremely easy to cause equipment failures. Summary of the Invention
[0004] In view of the above technical problems, the present invention discloses a stainless steel plate processing device, including a feeding component. The feeding component includes a base and a first mounting frame. A support frame and a baffle are slidably arranged on the base. A pressing plate is slidably arranged on the baffle. The pressing plate is in contact with the stainless steel plate. The support frame is in contact with the bottom of the stainless steel plate. The stainless steel plate is placed on the base. A planing component is slidably arranged on the base. The planing component includes a second mounting frame slidably mounted on the base. A support block is arranged on the second mounting frame. Two groups of planing plates are slidably arranged on the support block. A first planing knife is slidably arranged on the planing plate. An adjusting plate is slidably arranged on the first mounting frame. An adjusting mechanism is arranged on the adjusting plate to adjust the position of the second planing knife. A plurality of blowing heads are rotatably arranged on the first mounting frame.
[0005] Furthermore, a recovery groove is arranged at the lower end of the base. An adjusting block one is slidably arranged in the recovery groove. A first scraping plate is rotatably arranged on the adjusting block one.
[0006] Further, a plurality of groups of transmission rollers are rotatably arranged on the base, and the transmission rollers convey the stainless steel plate. A groove is arranged at the lower end of the support frame, a second scraper is slidably arranged in the groove, and an opening is arranged at the lower end of the groove, and the opening is aligned with the recovery tank.
[0007] Further, the planing assembly further includes a hydraulic cylinder installed on the base. A placement rack is arranged at the movable end of the hydraulic cylinder. A third mounting rack is slidably arranged on the placement rack. A second adjusting block is slidably arranged on the third mounting rack. A cleaning head is rotatably arranged on the second adjusting block.
[0008] Further, a third adjusting block is slidably arranged on the planing plate, and a plurality of groups of knocking plates are slidably arranged on the third adjusting block, and the knocking plates are attached to the stainless steel plate.
[0009] Further, a third mounting rack is slidably arranged on the first mounting rack, and a plurality of groups of limiting blocks are slidably arranged on the third mounting rack.
[0010] Further, the adjusting mechanism includes a top plate slidably installed on the adjusting plate. A fourth adjusting block is slidably arranged on the top plate. A rotating frame is rotatably arranged on the fourth adjusting block. The second planing knife is slidably installed on the rotating frame.
[0011] The beneficial effects of the present invention compared with the prior art are as follows: The feeding assembly provided by the present invention automatically conveys the stainless steel plate and ensures the stability of the stainless steel plate during operation, avoiding the deviation of the stainless steel plate during operation. The feeding assembly recovers the debris generated during the planing of the stainless steel plate, avoiding the influence of the remaining debris on the surface of the stainless steel plate on the processing accuracy of the stainless steel plate. The planing assembly planes the stainless steel plate and simultaneously processes the welding slag on both sides of the stainless steel plate, improving the processing efficiency of the stainless steel plate. At the same time, the planing assembly releases the residual stress generated by the stainless steel plate during processing. At the same time, the planing assembly automatically cleans the residual debris on the planing plate. The cleaning assembly provided by the present invention planes the welding slag at both ends of the stainless steel plate, improving the processing efficiency of the stainless steel plate, and blowing air on the stainless steel plate to avoid the accumulation of debris on the surface of the stainless steel plate and reducing the processing efficiency. Description of the Drawings
[0012] Figure 1 It is a right view of the overall structure of the present invention.
[0013] Figure 2 is Figure 1 A sectional view of the structure in the A-A direction in
[0014] Figure 3 It is a schematic diagram of the overall structure of the present invention.
[0015] Figure 4 It is a schematic diagram of the feeding assembly structure of the present invention.
[0016] Figure 5 This is a cross-sectional view of the feeding component structure of the present invention.
[0017] Figure 6 This is a right view of the planing component structure of the present invention.
[0018] Figure 7 is Figure 6 a cross-sectional view of the structure in the B-B direction in
[0019] Figure 8 is Figure 7 an enlarged schematic view of the structure at A in
[0020] Figure 9 This is a schematic view of the partial structure of the planing component of the present invention.
[0021] Figure 10 This is a front view of the planing component structure of the present invention.
[0022] Figure 11 This is a right view of the cleaning component structure of the present invention.
[0023] Figure 12 is Figure 11 a cross-sectional view of the structure in the C-C direction in
[0024] Reference numerals: 1 - feeding component; 2 - planing component; 3 - cleaning component; 101 - base; 102 - first mounting bracket; 103 - stainless steel plate; 104 - transmission roller; 105 - baffle; 106 - pressing plate; 107 - support frame; 108 - first adjusting block; 109 - first scraper; 110 - second scraper; 201 - second mounting bracket; 202 - support block; 203 - planing plate; 204 - knocking plate; 205 - limit post; 206 - hydraulic cylinder; 207 - placement rack; 208 - second adjusting block; 209 - cleaning head; 210 - third adjusting block; 211 - first planing tool; 212 - third mounting bracket; 213 - limit block; 301 - adjusting plate; 302 - fourth adjusting block; 303 - rotating frame; 304 - top plate; 305 - blowing head; 306 - second planing tool. Detailed implementation manners
[0025] Refer to Figures 1 to 12A stainless steel plate processing device shown in the figure includes a feeding component 1 for conveying the stainless steel plate 103, and fixes the stainless steel plate 103 during the planing process to ensure the stability of the stainless steel plate 103. At the same time, the feeding component 1 recovers the debris generated during the planing of the stainless steel plate 103. A planing component 2 and a cleaning component 3 for planing the stainless steel plate 103 are arranged on the side of the feeding component 1. The planing component 2 planed both sides of the stainless steel plate 103 at the same time to improve the planing effect on the stainless steel plate 103, and knocked on the stainless steel plate 103 during the planing process of the planing component 2 to eliminate the stress generated during the planing of the stainless steel plate 103. The cleaning component 3 planed both sides of the stainless steel plate 103 and automatically adjusted the position of the second planing tool 306 to achieve efficient planing of the welding slag on the stainless steel plate 103. The present invention automatically planes the stainless steel plate 103 and recovers the debris generated during planing.
[0026] The feeding component 1 includes a base 101. A recovery groove is arranged at the lower end of the base 101. Two groups of adjusting blocks 108 are slidably arranged in the recovery groove. A group of scraping plates 109 are rotatably arranged on the adjusting blocks 108. When driving the adjusting blocks 108 to slide in the base 101, the adjusting blocks 108 drive the scraping plates 109 to move. The scraping plates 109 stir the debris in the recovery groove to prevent the debris in the recovery groove from piling up too high. A plurality of transmission rollers 104 are rotatably arranged at the upper end of the base 101. The transmission rollers 104 are used to transport the stainless steel plate 103. The stainless steel plate 103 is placed on the transmission rollers 104. Driving the transmission rollers 104 to rotate, the transmission rollers 104 drive the stainless steel plate 103 to move. A support frame 107 is slidably arranged in the base 101. An opening is arranged at the lower end of the support frame 107. The opening of the support frame 107 is aligned with the recovery groove on the base 101. A scraping plate 110 is slidably arranged in the support frame 107. When driving the scraping plate 110 to slide in the support frame 107, the scraping plate 110 scrapes the debris in the support frame 107, and the debris falls into the recovery groove of the base 101 through the opening. A group of baffles 105 are slidably arranged on both sides of the base 101. A pressing plate 106 is slidably arranged on the baffle 105. When driving the two groups of baffles 105 to approach each other, the baffles 105 drive the pressing plate 106 to move. The two groups of pressing plates 106 clamp the stainless steel plate 103. When it is necessary to lift the stainless steel plate 103, drive the support frame 107 to slide on the base 101. The support frame 107 drives the stainless steel plate 103 to move. At the same time, drive the pressing plate 106 to slide on the baffle 105. The two groups of pressing plates 106 drive the stainless steel plate 103 to rise to complete the lifting of the stainless steel plate 103. An installation frame 102 is arranged at the upper end of the base 101.
[0027] The planing assembly 2 includes a second mounting frame 201 slidably mounted on the base 101. A support block 202 is provided on the second mounting frame 201. Two groups of planing plates 203 are slidably provided on the support block 202. A third adjusting block 210 and a first planing knife 211 are slidably provided on the planing plate 203. A knocking plate 204 is slidably provided on the third adjusting block 210. The knocking plate 204 is driven to slide on the third adjusting block 210, and the knocking plate 204 knocks on the planing plate 203 to reduce the stress of the stainless steel plate 103 during planing. When the first planing knife 211 slides on the planing plate 203, it planes the stainless steel plate 103. A limiting column 205 is provided at one end of the planing plate 203 away from the support block 202. The planing assembly 2 further includes a hydraulic cylinder 206 mounted on the base 101. A placement rack 207 is provided at the movable end of the hydraulic cylinder 206. Two groups of third mounting frames 212 are slidably provided on the placement rack 207. The third mounting frames 212 are slidably provided on the placement rack 207 in a mirror image manner. A second adjusting block 208 is slidably provided on the third mounting frame 212. Multiple groups of cleaning heads 209 are rotatably provided on the second adjusting block 208. When the cleaning heads 209 are driven to rotate, the cleaning heads 209 wipe the surface of the planing plate 203 to ensure the cleanliness of the planing plate 203. The planing assembly 2 further includes a third mounting frame 212 slidably mounted on the first mounting frame 102. Two groups of limiting blocks 213 are slidably provided on the third mounting frame 212. The limiting column 205 is inserted into the limiting blocks 213, and the limiting blocks 213 improve the stability of the planing plate 203. When the stainless steel plate 103 needs to be planed, the second mounting frame 201 is driven to slide on the base 101, and the second mounting frame 201 drives the two groups of planing plates 203 to move. The stainless steel plate 103 is inserted into the gap between the two groups of planing plates 203. The third mounting frame 212 is driven to slide on the first mounting frame 102, and the third mounting frame 212 drives the limiting blocks 213 to move. The limiting blocks 213 are aligned with the limiting column 205. When the second mounting frame 201 is driven to move, the second mounting frame 201 drives the limiting column 205 to insert into the limiting blocks 213 to complete the fixation of the planing plate 203. The limiting blocks 213 are driven to slide on the third mounting frame 212, and the rotating frame 303 is driven to slide synchronously on the support block 202 to adjust the positions of the planing plate 203 and the first planing knife 211. The first planing knife 211 is driven to slide on the planing plate 203, and the first planing knife 211 planes the stainless steel plate 103. At the same time, the third adjusting block 210 is driven to slide on the planing plate 203, and the third adjusting block 210 drives the knocking plate 204 to move to change the position of the knocking plate 204. The knocking plate 204 is driven to slide on the third adjusting block 210, and the knocking plate 204 knocks on the periphery of the weld of the stainless steel plate 103 to release the residual stress and improve the processing efficiency of the stainless steel plate 103. During the planing process, the support frame 107 is driven to move, and the support frame 107 changes the height of the stainless steel plate 103 and changes the planing position of the first planing knife 211 to improve the planing accuracy of the stainless steel plate 103. After the planing is completed, the second mounting frame 201 is driven to reset, and the second mounting frame 201 drives the planing plate 203 to reset.At this time, the driving hydraulic cylinder 206 works, the hydraulic cylinder 206 drives the placing rack 207 to rise, the placing rack 207 drives the two groups of mounting racks III 212 to reach both sides of the planing board 203, drives the two groups of mounting racks III 212 to approach each other, the two groups of mounting racks III 212 drive the cleaning head 209 to insert into the gap between the two planing boards 203, drives the cleaning head 209 to rotate, the cleaning head 209 cleans the bottom of the planing board 203, and at the same time drives the adjusting block II 208 to slide on the mounting rack III 212 to complete the cleaning of the residual debris on the planing board 203.
[0028] The cleaning assembly 3 includes an adjusting plate 301 slidably mounted on the mounting rack I 102. A top plate 304 is slidably arranged at the lower end of the adjusting plate 301. An adjusting block IV 302 is slidably arranged on the top plate 304. A rotating frame 303 is rotatably arranged on the adjusting block IV 302. A planing knife II 306 is slidably arranged on the rotating frame 303. When driving the planing knife II 306 to slide on the rotating frame 303, it planed the side of the stainless steel plate 103. A plurality of groups of blowing heads 305 are rotatably arranged on both sides of the mounting rack I 102. When driving the blowing heads 305, the blowing heads 305 blow air at the planing position to avoid the accumulation of planing debris at the planing position and improve the planing accuracy of the stainless steel plate 103. When it is necessary to plane both sides of the stainless steel plate 103, drive the adjusting plate 301 to slide on the mounting rack I 102, drive the top plate 304 to slide on the adjusting plate 301, the top plate 304 drives the adjusting block IV 302 to slide closer to or away from the blowing heads 305, drive the adjusting block IV 302 to slide on the top plate 304, the adjusting block IV 302 drives the rotating frame 303 to move, drive the rotating frame 303 to rotate on the adjusting block IV 302, and the rotating frame 303 drives the planing knife II 306 to rotate to complete the adjustment of the position of the planing knife II 306. Driving the planing knife II 306 to reciprocally slide on the rotating frame 303 realizes the planing of the stainless steel plate 103.
[0029] Working principle: During work, place the stainless steel plate 103 on the transmission roller 104, drive the transmission roller 104 to rotate, the transmission roller 104 drives the stainless steel plate 103 to move. After the stainless steel plate 103 is located above the support frame 107, stop driving the transmission roller 104 to rotate, drive the two groups of baffles 105 to approach each other, the baffles 105 drive the pressing plate 106 to move, and the two groups of pressing plates 106 clamp the stainless steel plate 103. When lifting the stainless steel plate 103, drive the support frame 107 to slide on the base 101, the support frame 107 drives the stainless steel plate 103 to rise, and at the same time drive the two groups of pressing plates 106 to slide on the baffles 105, the pressing plate 106 drives the stainless steel plate 103 to move synchronously, improving the stability of the stainless steel plate 103 during movement and avoiding the deviation of the stainless steel plate 103, and completing the adjustment of the position of the stainless steel plate 103.
[0030] When planing both sides of the stainless steel plate 103, the driving mounting frame two 201 slides on the base 101. The mounting frame two 201 drives the planing plate 203 to move. The two groups of planing plates 203 reach both sides of the stainless steel plate 103 respectively. At the same time, the driving mounting frame three 212 slides on the mounting frame one 102. The mounting frame three 212 drives the limiting block 213 to move. After the limiting block 213 is aligned with the limiting column 205, the driving of the mounting frame three 212 stops. Continue to drive the mounting frame two 201 to move. The mounting frame two 201 drives the limiting column 205 to insert into the limiting block 213 to complete the fixation of the planing plate 203. Drive the planing plate 203 to slide on the support block 202 to adjust the position of the planing plate 203. At the same time, drive the limiting block 213 to slide on the mounting frame three 212 to ensure the stability of the planing plate 203. After the position adjustment of the planing plate 203 is completed, drive the first planing knife 211 to slide on the planing plate 203. The first planing knife 211 planes the stainless steel plate 103 to remove the welding slag on the stainless steel plate 103 and ensure the flatness of the surface of the stainless steel plate 103. At the same time, drive the third adjusting block 210 to slide on the planing plate 203. Drive the knocking plate 204 to slide on the third adjusting block 210. The knocking plate 204 knocks on the stainless steel plate 103 to eliminate the residual stress on the stainless steel plate 103. At the same time, drive the support frame 107 to move. The support frame 107 changes the height of the stainless steel plate 103, changes the planing position of the first planing knife 211, and improves the planing accuracy of the stainless steel plate 103. The planing of both sides of the stainless steel plate 103 is completed.
[0031] During the planing process, drive the second scraper 110 to slide on the support frame 107. The second scraper 110 scrapes the debris in the support frame 107 to the lower end opening of the support frame 107 and drops into the recovery tank of the base 101. Regularly start the first adjusting block 108 to slide on the base 101. The first adjusting block 108 drives the first scraper 109 to move. The first scraper 109 stirs the debris in the recovery tank to prevent the debris in the recovery tank from piling up too high.
[0032] After the planing is completed, drive the mounting frame two 201 to reset. The mounting frame two 201 drives the support block 202 to move. After the planing plate 203 is reset, drive the hydraulic cylinder 206 to work. The hydraulic cylinder 206 drives the placing frame 207 to rise. The placing frame 207 drives the two groups of mounting frames three 212 to reach both sides of the planing plate 203. Drive the two groups of mounting frames three 212 to approach each other. The two groups of mounting frames three 212 drive the cleaning head 209 to insert into the gap between the two groups of planing plates 203. Drive the cleaning head 209 to rotate. The cleaning head 209 cleans the planing plate 203. At the same time, drive the second adjusting block 208 to slide on the mounting frame three 212 to complete the cleaning of the residual debris on the planing plate 203.
[0033] When cleaning the welding slag on both sides of the stainless steel plate 103, the driving adjustment plate 301 slides on the first mounting frame 102, the driving top plate 304 slides on the adjustment plate 301, the top plate 304 drives the fourth adjustment block 302 to slide closer to or away from the blowing head 305, the driving fourth adjustment block 302 slides on the top plate 304, the fourth adjustment block 302 drives the rotating frame 303 to move, the driving rotating frame 303 rotates on the fourth adjustment block 302, the rotating frame 303 drives the second planing tool 306 to rotate, completing the adjustment of the position of the second planing tool 306, the driving second planing tool 306 reciprocally slides on the rotating frame 303 to achieve the planing of the stainless steel plate 103, the planing depth of the second planing tool 306 is adjusted in real time according to the planing state, at the same time the baffle 105 is driven to rotate on the first mounting frame 102 to adjust the position of the blowing head 305, and when the blowing head 305 is started, the blowing is carried out on the planing position to avoid the accumulation of debris on the surface of the stainless steel plate 103 affecting the planing accuracy.
Claims
1. A stainless steel plate processing device, comprising a feed assembly (1), wherein the feed assembly (1) comprises a base (101) and a mounting frame (102), characterized in that: A support frame (107) and a baffle (105) are slidably arranged on the base (101); a pressing plate (106) is slidably arranged on the baffle (105); the pressing plate (106) is fitted with the stainless steel plate (103); the support frame (107) is fitted with the bottom of the stainless steel plate (103); the stainless steel plate (103) is placed on the base (101); a planing assembly (2) is slidably arranged on the base (101); the planing assembly (2) comprises a mounting frame (107) slidably mounted on the base (101); (201), a support block (202) is provided on the second mounting frame (201), two groups of planing plates (203) are slidably provided on the support block (202), a planing knife (211) is slidably provided on the planing plate (203), an adjustment plate (301) is slidably provided on the first mounting frame (102), an adjustment mechanism is provided on the adjustment plate (301), and the adjustment mechanism is used to adjust the position of the second planing knife (306), and a plurality of groups of blowing heads (305) are rotatably provided on the first mounting frame (102); The planing assembly (2) further comprises a hydraulic cylinder (206) mounted on the base (101); a placing frame (207) is provided at a movable end of the hydraulic cylinder (206); a mounting frame 3 (212) is slidably provided on the placing frame (207); an adjusting block 2 (208) is slidably provided on the mounting frame 3 (212); and a cleaning head (209) is rotatably provided on the adjusting block 2 (208); An adjusting block three (210) is slidably arranged on the planing plate (203), and a plurality of knocking plates (204) are slidably arranged on the adjusting block three (210), wherein the knocking plates (204) are fitted to the stainless steel plate (103); A mounting frame 3 (212) is slidably disposed on the mounting frame 1 (102), and a plurality of groups of limit blocks (213) are slidably disposed on the mounting frame 3 (212); The adjustment mechanism comprises a top plate (304) slidably mounted on the adjustment plate (301), an adjustment block four (302) is slidably mounted on the top plate (304), a rotating frame (303) is rotatably mounted on the adjustment block four (302), and the planing knife two (306) is slidably mounted on the rotating frame (303).
2. A stainless steel plate processing device according to claim 1, characterized in that: A recovery groove is provided at the lower end of the base (101), an adjustment block (108) is slidably provided in the recovery groove, and a scraper (109) is rotatably provided on the adjustment block (108).
3. A stainless steel plate processing device according to claim 2, characterized in that: A plurality of groups of transmission rollers (104) are rotatably arranged on the base (101), and the transmission rollers (104) transport the stainless steel plate (103). A groove is arranged at the lower end of the support frame (107), and a second scraper (110) is slidably arranged in the groove. An opening is arranged at the lower end of the groove, and the opening is aligned with the recovery groove.
Citation Information
Patent Citations
Stainless steel plate planing device
CN117226163B
Stainless steel plate cutting machine with burr removing function
CN113579744A
Bamboo wood planing and flattening all-in-one machine equipment
CN118418240A
Cutting device for building boards
CN221136215U
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