Stainless steel product surface wire drawing device

By combining the XY moving device and the downward rotating device, the problem that existing equipment can only perform straight-line wire drawing is solved, and multiple patterns of composite wire drawing processing of stainless steel plates are realized, which improves the applicability of the equipment and the quality of products.

CN223971377UActive Publication Date: 2026-03-06SHANDONG QINGXI STAINLESS STEEL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing stainless steel surface brushing equipment can only perform straight-line brushing, which has poor applicability and cannot perform surface brushing in different areas, resulting in low product quality.

Method used

By combining an XY moving device, a pressing and rotating device, and a wire drawing device, composite wire drawing processing of various patterns on stainless steel plates can be achieved. The XY moving device and the pressing and rotating device can achieve wire drawing processing of patterns and directions in different areas.

Benefits of technology

It improves the machine's applicability, enabling it to perform composite wire drawing processes with various patterns, and enhances the wire drawing effect in different areas of stainless steel plates, thereby improving product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stainless steel surface wiredrawing equipment, in particular to a stainless steel product surface wiredrawing device, which can perform composite wiredrawing treatment of various patterns on a stainless steel plate by arranging an XY moving device, a pressing rotating device and a wiredrawing device, so that the applicability of the machine is improved, and the production efficiency is improved. An XY moving device, a pressing rotating device and a wire drawing device are arranged, so that wire drawing treatment in different patterns and directions can be conveniently carried out on different areas of the stainless steel plate, and the product quality is improved; comprising a positioning device; the wire drawing machine further comprises an XY moving device, a pressing rotating device, a wire drawing device and two clamping and fixing devices, the XY moving device and the two clamping and fixing devices are all installed on the positioning device, the pressing rotating device is installed on the XY moving device, and the wire drawing device is installed on the pressing rotating device.
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Description

Technical Field

[0001] This utility model relates to the technical field of stainless steel surface drawing equipment, and in particular to a stainless steel product surface drawing device. Background Technology

[0002] Stainless steel is a type of steel that is rust-proof and corrosion-resistant. It is commonly used to make equipment panels. To improve the gloss and scratch resistance of stainless steel, it needs to undergo a surface brushing process.

[0003] Existing stainless steel surface drawing equipment, such as the Chinese utility model patent CN221871514U, which is a stainless steel sheet surface drawing treatment device, represents a class of prior art. Its main structure includes a driving component, a drawing component, and a rotating support base. The driving component drives the drawing component to perform surface drawing treatment on the stainless steel sheet, and the rotating support base fixes and rotates the stainless steel sheet.

[0004] However, the existing technology and equipment still have the following problems when in use: the existing machines can only perform straight-line wire drawing on stainless steel plates, which makes the machines less adaptable. Furthermore, the existing machines can only perform overall wire drawing on stainless steel plates and cannot perform surface wire drawing on different areas, resulting in lower product quality. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides a stainless steel product surface drawing device that can perform composite wire drawing treatment of stainless steel plates with various patterns by setting an XY moving device, a pressing and rotating device, and a wire drawing device, thereby improving the applicability of the machine. Furthermore, by setting an XY moving device, a pressing and rotating device, and a wire drawing device, it is convenient to perform wire drawing treatment of different areas of stainless steel plates with different patterns and directions, thereby improving product quality.

[0006] This utility model discloses a stainless steel product surface drawing device, including a positioning device; it also includes an XY moving device, a pressing and rotating device, a drawing device, and two clamping and fixing devices. The XY moving device and the two clamping and fixing devices are all mounted on the positioning device, the pressing and rotating device is mounted on the XY moving device, and the drawing device is mounted on the pressing and rotating device. The positioning device positions the stainless steel plate, the XY moving device, the pressing and rotating device, and the drawing device work together to perform surface drawing on the stainless steel plate, and the clamping and fixing devices fix the stainless steel plate.

[0007] Preferably, the positioning device includes a body, three positioning plates and two brackets, all of which are mounted on the top of the body and are located between the two brackets; the positioning plates position the stainless steel plate.

[0008] Preferably, the XY moving device includes two lead screws, two sprockets, a chain, a reducer, a motor, two sliders, a bracket, two lead screws, two sprockets, a chain, two gears, a reducer, a motor, and two sliders. The two lead screws are rotatably mounted on the two brackets. The two sprockets are rotatably mounted on one side of a bracket, and the two sprockets pass through this bracket and are fixedly connected to it. The chain is mounted on the two sprockets. The reducer is fixedly mounted on one side of the same bracket and is rotatably connected to one sprocket. The motor is fixedly mounted on one side of the reducer and provides power to one sprocket connected to it via the reducer. The two sliders are slidably mounted on the two lead screws, and the two sliders are threadedly engaged with the two lead screws. The bracket is mounted on the top of the two sliders, and the two lead screws are rotatably mounted inside the bracket. Both sprockets are rotatably mounted on the side of the bracket, and are fixedly connected between the bracket and the two lead screws. A chain is mounted on the two sprockets. One gear is fixedly mounted on the side of one sprocket. A reducer is fixedly mounted on the bracket near the sprocket. Another gear is rotatably mounted on the side of the reducer, and the two gears mesh with each other. A motor is fixedly mounted on the other side of the reducer, and provides power to one of the connected gears through the reducer. Two sliders are slidably mounted on the two lead screws, and are threadedly engaged with each other. The motor provides power, which is transmitted through the sprocket, chain, and reducer, driving the two lead screws to rotate synchronously, causing the bracket to move left and right. The motor provides power, which is transmitted through the reducer, gear, chain, and sprocket, driving the two lead screws to rotate synchronously, causing the downward rotating device to move back and forth.

[0009] Preferably, the downward rotating device includes a bracket three, a hydraulic cylinder one, multiple guide pillars one, a bracket four, a reducer three, a motor three, a gear two, a bracket five, and a gear ring. The bracket three is mounted on two sliders two. The top of the bracket three is provided with a mounting groove one and multiple through holes one. The hydraulic cylinder one is fixedly mounted in the mounting groove one. The multiple guide pillars one are slidably mounted in the multiple through holes one respectively. The bracket four is mounted at the bottom of the hydraulic cylinder one and the multiple guide pillars one. The reducer three is fixedly mounted on the bracket four. The motor three is fixedly mounted at the top of the reducer three. The gear two is rotatably mounted at the bottom of the reducer three, and the motor three provides power to the gear two through the reducer three. The bracket five is rotatably mounted at the bottom of the bracket four. The gear ring is fixedly mounted at the top of the bracket five, and the gear two and the gear ring mesh with each other. The hydraulic cylinder one provides power to drive the bracket four to move up and down. The motor three provides power, which is transmitted through the reducer three, the gear two, and the gear ring to drive the bracket five to rotate.

[0010] Preferably, the wire drawing device includes a bracket six, a bracket seven, a bracket eight, a reducer four, a motor four, a rotating shaft, two sprockets three, a chain three, and a wire drawing wheel. Brackets six, seven, and eight are all mounted on the bottom of bracket five. The reducer four is fixedly mounted on bracket six. The motor four is fixedly mounted on one side of the reducer four. The rotating shaft is rotatably mounted on the other side of the reducer four, and the motor four provides power to the rotating shaft through the reducer four. Both sprockets three are rotatably mounted on bracket seven, and one sprocket three passes through bracket seven and is fixedly connected to the rotating shaft. The chain three is mounted on both sprockets three. The wire drawing wheel is rotatably mounted on the bottom of brackets seven and eight, and passes through bracket seven and is fixedly connected to the other sprocket three. The motor four provides power, which is transmitted through the reducer four, the rotating shaft, the sprockets three, and the chain three, driving the wire drawing wheel to rotate and perform surface wire drawing on the stainless steel plate.

[0011] Preferably, the clamping and fixing device includes a bracket nine, a hydraulic cylinder two, multiple guide posts two, and a clamping plate. The bracket nine is installed on the top of the machine body and is provided with an installation groove two and multiple through holes two. The hydraulic cylinder two is fixedly installed in the installation groove two of the bracket nine. The multiple guide posts two are slidably installed in the multiple through holes two of the bracket nine. The clamping plate is installed on the hydraulic cylinder two and the multiple guide posts two. The two clamping and fixing devices are symmetrically installed on the left and right sides of the three brackets one. The hydraulic cylinder two provides power to drive the clamping plates to move closer or further apart from each other. The clamping plates move closer together to fix and clamp the stainless steel plate.

[0012] Compared with the prior art, the advantages of this utility model are: it can perform composite wire drawing treatment of stainless steel plates with various patterns, and has good machine applicability; it can also perform wire drawing treatment of different areas of stainless steel plates with different patterns and directions, resulting in higher product quality. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the isometric structure of this utility model;

[0014] Figure 2 This is an isometric structural diagram of the positioning device;

[0015] Figure 3 This is an isometric structural diagram of the XY motion device;

[0016] Figure 4 This is a schematic diagram of the isometric structure of the downward rotating device;

[0017] Figure 5 This is an isometric structural diagram of the wire drawing device;

[0018] Figure 6 This is an isometric structural diagram of the clamping and fixing device.

[0019] In the attached diagram, the following components are marked: 01, Positioning device; 11, Machine body; 12, Positioning plate; 13, Support 1; 02, XY moving device; 21, Lead screw 1; 22, Sprocket 1; 23, Chain 1; 24, Reducer 1; 25, Motor 1; 26, Slider 1; 27, Support 2; 28, Lead screw 2; 29, Sprocket 2; 30, Chain 2; 61, Gear 1; 62, Reducer 2; 63, Motor 2; 64, Slider 2; 03, Pressing and rotating device; 31, Support 3; 32 1. Hydraulic cylinder 1; 33. Guide column 1; 34. Bracket 4; 35. Reducer 3; 36. Motor 3; 37. Gear 2; 38. Bracket 5; 39. Gear ring; 04. Wire drawing device; 41. Bracket 6; 42. Bracket 7; 43. Bracket 8; 44. Reducer 4; 45. Motor 4; 46. Shaft; 47. Sprocket 3; 48. Chain 3; 49. Wire drawing wheel; 05. Clamping and fixing device; 51. Bracket 9; 52. Hydraulic cylinder 2; 53. Guide column 2; 54. Clamping plate. Detailed Implementation

[0020] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example 1

[0021] like Figure 1 As shown, the device includes a positioning device 01; it also includes an XY moving device 02, a pressing and rotating device 03, a wire drawing device 04, and two clamping and fixing devices 05. The XY moving device 02 and the two clamping and fixing devices 05 are all mounted on the positioning device 01, the pressing and rotating device 03 is mounted on the XY moving device 02, and the wire drawing device 04 is mounted on the pressing and rotating device 03. The positioning device 01 positions the stainless steel plate, the XY moving device 02, the pressing and rotating device 03, and the wire drawing device 04 cooperate to perform surface wire drawing on the stainless steel plate, and the clamping and fixing devices 05 fix the stainless steel plate.

[0022] like Figure 2 As shown, the positioning device 01 includes a body 11, three positioning plates 12 and two brackets 13. The three positioning plates 12 and the two brackets 13 are all installed on the top of the body 11, and the three positioning plates 12 are all located between the two brackets 13.

[0023] like Figure 3As shown, the XY moving device 02 includes two lead screws 21, two sprockets 22, a chain 23, a reducer 24, a motor 25, two sliders 26, a bracket 27, two lead screws 28, two sprockets 29, a chain 30, two gears 61, a reducer 62, a motor 63, and two sliders 64. Both lead screws 21 are rotatably mounted on two brackets 13, and both sprockets 22 are rotatably mounted on the side of one bracket 13. Wheel 22 passes through bracket 13 and is fixedly connected to the two sprockets 22. Chain 23 is mounted on the two sprockets 22. Reducer 24 is fixedly mounted on the side of the same bracket 13 and is rotatably connected to one sprocket 22. Motor 25 is fixedly mounted on the side of reducer 24 and provides power to one of the sprockets 22 connected to it through reducer 24. Two sliders 26 are slidably mounted on the two lead screws 21. The two sliders 26 are threadedly engaged with the two lead screws 21 respectively. The bracket 27 is installed on the top of the two sliders 26. The two lead screws 28 are rotatably installed inside the bracket 27. The two sprockets 29 are rotatably installed on the side of the bracket 27. The two sprockets 29 are fixedly connected between the bracket 27 and the two lead screws 28 respectively. The chain 30 is installed on the two sprockets 29. A gear 61 is fixedly installed on the side of one sprocket 29. The reducer 62 is fixedly installed on the bracket 27 near the side of this sprocket 29. Another gear 61 is rotatably installed on the side of the reducer 62. The two gears 61 mesh with each other. The motor 63 is fixedly installed on the other side of the reducer 62. The motor 63 provides power to a gear 61 connected to it through the reducer 62. The two sliders 64 are slidably installed on the two lead screws 28 respectively. The two sliders 64 are threadedly engaged with the two lead screws 28 respectively.

[0024] like Figure 4As shown, the downward rotating device 03 includes a bracket 31, a hydraulic cylinder 32, multiple guide pillars 33, a bracket 4 34, a reducer 35, a motor 36, a gear 2 37, a bracket 5 38, and a gear ring 39. The bracket 31 is mounted on two sliders 2 64. The top of the bracket 31 is provided with a mounting groove and multiple through holes. The hydraulic cylinder 32 is fixedly mounted in the mounting groove. The multiple guide pillars 33 are slidably mounted in the multiple through holes. The bracket 4 34 is mounted at the bottom of the hydraulic cylinder 32 and the multiple guide pillars 33. The reducer 35 is fixedly mounted on the bracket 4 34. The motor 36 is fixedly mounted at the top of the reducer 35. The gear 2 37 is rotatably mounted at the bottom of the reducer 35, and the motor 36 provides power to the gear 2 37 through the reducer 35. The bracket 5 38 is rotatably mounted at the bottom of the bracket 4 34. The gear ring 39 is fixedly mounted at the top of the bracket 5 38, and the gear 2 37 and the gear ring 39 mesh with each other.

[0025] like Figure 5 As shown, the wire drawing device 04 includes a bracket 6 41, a bracket 7 42, a bracket 8 43, a reducer 44, a motor 45, a rotating shaft 46, two sprockets 3 47, a chain 3 48, and a wire drawing wheel 49. The brackets 6 41, 7 42, and 8 43 are all mounted on the bottom of the bracket 5 38. The reducer 44 is fixedly mounted on the bracket 6 41. The motor 45 is fixedly mounted on the side of the reducer 44. The rotating shaft 46 is rotatably mounted on the other side of the reducer 44, and the motor 45 provides power to the rotating shaft 46 through the reducer 44. The two sprockets 3 47 are rotatably mounted on the bracket 7 42, and one sprocket 3 47 passes through the bracket 7 42 and is fixedly connected to the rotating shaft 46. The chain 3 48 is mounted on the two sprockets 3 47. The wire drawing wheel 49 is rotatably mounted on the bottom of the bracket 7 42 and the bracket 8 43, and the wire drawing wheel 49 passes through the bracket 7 42 and is fixedly connected to the other sprocket 3 47.

[0026] First, the stainless steel plate is placed on top of the machine body 11. The positioning plate 12 positions the stainless steel plate. Then, motors 1-25, 2-63, 1-32, 3-36, and 4-45 are activated. Motor 1-25 provides power, which is transmitted through sprocket 1-22, chain 1-23, and reducer 1-24, driving the two lead screws 1-21 to rotate synchronously, causing the bracket 2-27 to move left and right. Motor 2-63 provides power, which is transmitted through reducer 2-62, gear 1-61, chain 2-30, and sprocket 2-29, driving the two lead screws 2-28 to rotate synchronously, leading to... The moving downward rotating device 03 moves back and forth, with hydraulic cylinder 32 providing power to drive bracket 34 to move up and down. Motor 36 provides power, which is transmitted through reducer 35, gear 2 37 and gear ring 39 to drive bracket 38 to rotate. Motor 45 provides power, which is transmitted through reducer 44, shaft 46, sprocket 3 47 and chain 3 48 to drive wire drawing wheel 49 to rotate. Motor 25, motor 63, hydraulic cylinder 32, motor 36 and motor 45 work together to drive wire drawing wheel 49 to perform surface wire drawing treatment on stainless steel plate. Example 2

[0027] In addition to Example 1, it also includes:

[0028] like Figure 6 As shown, the clamping and fixing device 05 includes a bracket 9 51, a hydraulic cylinder 2 52, multiple guide posts 2 53, and a clamping plate 54. The bracket 9 51 is installed on the top of the machine body 11. The bracket 9 51 is provided with an installation groove 2 and multiple through holes 2. The hydraulic cylinder 2 52 is fixedly installed in the installation groove 2 of the bracket 9 51. The multiple guide posts 2 53 are slidably installed in the multiple through holes 2 of the bracket 9 51. The clamping plate 54 is installed on the hydraulic cylinder 2 52 and the multiple guide posts 2 53. The two clamping and fixing devices 05 are symmetrically installed on the left and right sides of the three brackets 13.

[0029] First, the stainless steel plate is placed on top of the machine body 11. The positioning plate 12 positions the stainless steel plate. Then, hydraulic cylinder 2 52 is activated, providing power to drive the clamping plates 54 to move closer or further apart. The clamping plates 54 move closer together to fix and clamp the stainless steel plate. Next, motors 1 25, 2 63, hydraulic cylinder 1 32, motor 36, and motor 45 are activated. Motor 1 25 provides power, which is transmitted through sprocket 1 22, chain 1 23, and reducer 1 24, driving the two lead screws 1 21 to rotate synchronously, causing the bracket 2 27 to move left and right. Motor 2 63 provides power, which is transmitted through reducer 2 62, gear 1 61, and chain 1 24. The transmission from bar 20 and sprocket 29 drives the two lead screws 28 to rotate synchronously, which in turn drives the downward rotating device 03 to move back and forth. Hydraulic cylinder 1 32 provides power to drive bracket 4 34 to move up and down. Motor 3 36 provides power, which is transmitted through reducer 3 35, gear 2 37 and gear ring 39 to drive bracket 5 38 to rotate. Motor 4 45 provides power, which is transmitted through reducer 4 44, shaft 46, sprocket 3 47 and chain 3 48 to drive the wire drawing wheel 49 to rotate. Motor 1 25, motor 2 63, hydraulic cylinder 1 32, motor 3 36 and motor 4 45 work together to drive the wire drawing wheel 49 to perform surface wire drawing on the stainless steel plate.

[0030] like Figures 1 to 6 As shown, this utility model discloses a stainless steel product surface drawing device. During operation, a stainless steel plate is first placed on the top of the machine body 11, and the positioning plate 12 positions the stainless steel plate. Then, hydraulic cylinder 2 52 is activated, providing power to drive clamping plates 54 to move closer or further apart. The clamping plates 54 move closer together to fix and clamp the stainless steel plate. Afterwards, motors 1 25, 2 63, hydraulic cylinder 1 32, motor 36, and motor 45 are activated. Motor 1 25 provides power, which is transmitted through sprocket 1 22, chain 1 23, and reducer 1 24, driving two lead screws 1 21 to rotate synchronously, causing bracket 2 27 to move left and right. Motor 2 63 provides power, which is transmitted through... The power is transmitted through reducer 262, gear 161, chain 230 and sprocket 229, driving two lead screws 228 to rotate synchronously, which in turn drives the pressing rotating device 03 to move back and forth. Hydraulic cylinder 132 provides power to drive bracket 434 to move up and down. Motor 336 provides power, which is transmitted through reducer 335, gear 237 and gear ring 39 to drive bracket 538 to rotate. Motor 445 provides power, which is transmitted through reducer 444, shaft 46, sprocket 347 and chain 348 to drive the wire drawing wheel 49 to rotate. Motor 125, motor 263, hydraulic cylinder 132, motor 336 and motor 445 work together to drive the wire drawing wheel 49 to perform surface wire drawing treatment on the stainless steel plate.

[0031] The two lead screws 21, two sprockets 22, chain 23, motor 25, two lead screws 28, two sprockets 29, chain 30, two gears 61, motor 63, hydraulic cylinder 32, motor 36, gear 37, gear ring 39, motor 45, two sprockets 47, chain 48, wire drawing wheel 49, and two hydraulic cylinders 52 of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.

[0032] The main functions achieved by this utility model are as follows: by setting up the XY moving device 02, the pressing and rotating device 03, and the wire drawing device 04, composite wire drawing treatment of stainless steel plates with various patterns can be performed, improving the applicability of the machine. Furthermore, by setting up the XY moving device 02, the pressing and rotating device 03, and the wire drawing device 04, it is convenient to perform wire drawing treatment of different patterns and directions on different areas of the stainless steel plate, thereby improving product quality. This solves the existing technical problems that existing machines can only perform straight wire drawing treatment on stainless steel plates, resulting in poor machine applicability, and that existing machines can only perform overall wire drawing treatment on stainless steel plates, unable to perform surface wire drawing in different areas, leading to lower product quality.

[0033] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A stainless steel product surface wire drawing device comprising a positioning device (01); characterized in that, XY moving device (02), down pressure rotating device (03), wire drawing device (04) and two clamping fixing devices (05) are further included, the XY moving device (02) and the two clamping fixing devices (05) are both installed on the positioning device (01), the down pressure rotating device (03) is installed on the XY moving device (02), and the wire drawing device (04) is installed on the down pressure rotating device (03); the positioning device (01) positions the stainless steel plate, the XY moving device (02), the down pressure rotating device (03) and the wire drawing device (04) cooperate to carry out surface wire drawing treatment on the stainless steel plate, and the clamping fixing device (05) fixes the stainless steel plate.

2. A device for drawing the surface of a stainless steel product as claimed in claim 1, characterized in that, The positioning device (01) comprises a machine body (11), three positioning plates (12) and two brackets one (13), the three positioning plates (12) and the two brackets one (13) are both installed on the top end of the machine body (11), and the three positioning plates (12) are all located between the two brackets one (13).

3. A device for drawing the surface of a stainless steel product as claimed in claim 2, characterized in that The XY moving device (02) includes two lead screws one (21), two sprockets one (22), chain one (23), reducer one (24), motor one (25), two sliders one (26), bracket two (27), two lead screws two (28), two sprockets two (29), chain two (30), two gears one (61), reducer two (62), motor two (63) and two sliders two (64), both lead screw one (21) is rotatably mounted on two brackets one (13), both sprocket one (22) is rotatably mounted on one bracket one (13) side end, and both sprocket one (22) is fixedly connected between the two sprocket one (22) and the bracket one (13), chain one (23) is installed on both sprocket one (22), reducer one (24) is fixedly installed on the same bracket one (13) side end, and the reducer one (24) is rotatably connected with one sprocket one (22), motor one (25) is fixedly installed on the side end of the reducer one (24), and the motor one (25) provides power to one sprocket one (22) through the reducer one (24), both sliders one (26) are slidably installed on two lead screws one (21), and both sliders one (26) are threadedly connected with two lead screws one (21), respectively, bracket two (27) is installed on the top end of two sliders one (26), both lead screws two (28) are rotatably installed in the bracket two (27), both sprockets two (29) are rotatably installed on the side end of the bracket two (27), and both sprockets two (29) are fixedly connected between the bracket two (27) and the two lead screws two (28), chain two (30) is installed on both sprockets two (29), one gear one (61) is fixedly installed on one sprocket two (29) side end, reducer two (62) is fixedly installed on one side of the bracket two (27) close to the sprocket two (29), the other gear one (61) is rotatably installed on the side end of the reducer two (62), and both gears one (61) are rotatably connected with each other, motor two (63) is fixedly installed on the other side end of the reducer two (62), and the motor two (63) provides power to one gear one (61) through the reducer two (62), both sliders two (64) are slidably installed on two lead screws two (28), and both sliders two (64) are threadedly connected with two lead screws two (28), respectively.

4. A device for drawing the surface of a stainless steel product as claimed in claim 3, characterized in that, The lower pressing rotating device (03) comprises a support three (31), a hydraulic cylinder one (32), a plurality of guide columns one (33), a support four (34), a speed reducer three (35), a motor three (36), a gear two (37), a support five (38) and a gear ring (39), the support three (31) is installed on the two sliding blocks two (64), the top of the support three (31) is provided with a mounting groove one and a plurality of through holes one, the hydraulic cylinder one (32) is fixedly installed in the mounting groove one, the plurality of guide columns one (33) are slidably installed in the plurality of through holes one respectively, the support four (34) is installed at the bottom of the hydraulic cylinder one (32) and the plurality of guide columns one (33), the speed reducer three (35) is fixedly installed on the support four (34), the motor three (36) is fixedly installed at the top of the speed reducer three (35), the gear two (37) is rotatably installed at the bottom of the speed reducer three (35), and the motor three (36) provides power to the gear two (37) through the speed reducer three (35), the support five (38) is rotatably installed at the bottom of the support four (34), and the gear ring (39) is fixedly installed at the top of the support five (38), and the gear two (37) and the gear ring (39) are meshed with each other.

5. A device for drawing the surface of a stainless steel product as claimed in claim 4, characterized in that, The wire drawing device (04) comprises a support six (41), a support seven (42), a support eight (43), a speed reducer four (44), a motor four (45), a rotating shaft (46), two sprocket wheels three (47), a chain three (48) and a wire drawing wheel (49), the support six (41), the support seven (42) and the support eight (43) are all installed at the bottom of the support five (38), the speed reducer four (44) is fixedly installed on the support six (41), the motor four (45) is fixedly installed at one side end of the speed reducer four (44), the rotating shaft (46) is rotatably installed at the other side end of the speed reducer four (44), and the motor four (45) provides power to the rotating shaft (46) through the speed reducer four (44), the two sprocket wheels three (47) are rotatably installed on the support seven (42), and one sprocket wheel three (47) is fixedly connected between the support seven (42) and the rotating shaft (46), the chain three (48) is installed on the two sprocket wheels three (47), and the wire drawing wheel (49) is rotatably installed at the bottom of the support seven (42) and the support eight (43), and the wire drawing wheel (49) is fixedly connected between the support seven (42) and the other sprocket wheel three (47).

6. A device for drawing the surface of a stainless steel product as claimed in claim 5, characterized in that, The clamping and fixing device (05) comprises a support nine (51), a hydraulic cylinder two (52), a plurality of guide columns two (53) and a clamping plate (54), the support nine (51) is installed at the top of the fuselage (11), the support nine (51) is provided with a mounting groove two and a plurality of through holes two, the hydraulic cylinder two (52) is fixedly installed in the mounting groove two of the support nine (51), the plurality of guide columns two (53) are slidably installed in the plurality of through holes two of the support nine (51) respectively, and the clamping plate (54) is installed on the hydraulic cylinder two (52) and the plurality of guide columns two (53).

Citation Information

Patent Citations

  • Stainless steel plate surface wiredrawing treatment device

    CN221871514U