Tape winding device for stainless steel band processing line
By introducing a cleaning mechanism and a pneumatic cylinder clamping system into the stainless steel strip winding device, the problems of low efficiency in removing impurities from the steel strip surface and disassembling the winding rollers are solved, achieving efficient cleaning and rapid installation.
Patent Information
- Application Number
- CN202520226704.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-13
AI Technical Summary
Existing stainless steel strip winding devices lack cleaning mechanisms, resulting in the inability to effectively remove dust and debris from the steel strip surface, thus affecting product quality.
A tape winding device including a cleaning mechanism is designed. Dust and debris are removed by using a soft and wear-resistant cleaning roller during the winding process. The cleaning roller is ensured to fit tightly against the surface of the steel strip by the cooperation of the chute and the slider. At the same time, a pneumatic cylinder and a clamping limit plate are used to realize the quick installation and removal of the winding roller.
It effectively removes impurities from the surface of stainless steel strips, improves product appearance and overall quality, and simplifies the installation and disassembly process of the take-up roller, thus improving efficiency.
Smart Images

Figure CN223792583U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stainless steel strip processing technology, specifically a strip winding device for stainless steel strip processing lines. Background Technology
[0002] Stainless steel strip is a narrow and long steel plate, mainly made of stainless steel. In order to facilitate subsequent storage and transportation, stainless steel often needs to be wound up by a winding device.
[0003] Chinese patent CN216302784U discloses a novel stainless steel strip winding device, including a winding bracket with a winding shaft inside. A winding reel body is mounted on the winding shaft. The left end of the winding shaft rotates through to the left side of the winding bracket and is fixedly fitted with a transmission wheel. A drive wheel is connected to the lower part of the transmission wheel via a chain drive. This novel stainless steel strip winding device not only facilitates the winding of stainless steel strip, but also allows for convenient and quick disassembly of the winding reel body from the winding shaft after winding. It solves the problem of inconvenience in removing the wound reel from the winding shaft in existing stainless steel strip winding devices, greatly improving the speed and efficiency of disassembly. Furthermore, it is simple to operate and easy for users to assemble and disassemble.
[0004] Existing stainless steel strip winding devices often lack a cleaning mechanism, which means that the surface of the steel strip cannot be effectively cleaned before winding, and impurities such as dust and debris on the surface of the steel strip cannot be effectively removed, thus affecting the quality of the steel strip. Therefore, a winding device for stainless steel strip processing lines is proposed to address the above problems. Utility Model Content
[0005] In order to overcome the shortcomings of the prior art and solve the problems mentioned in the background art, this utility model proposes a strip winding device for stainless steel strip processing lines.
[0006] The technical solution adopted by this utility model to solve its technical problem is as follows: A strip winding device for a stainless steel strip processing line, comprising a base, on which a winding mechanism and a cleaning mechanism are provided. The cleaning mechanism includes two vertical plates. Two vertical plates are fixedly connected to the top side of the base. Each vertical plate has a groove, and each groove contains a slider. A first cleaning roller is mounted between the two sliders via a first rotating shaft. A first motor is mounted on one of the sliders, and the stable output end of the first motor is connected to one end of the first rotating shaft. Fixed sleeves are installed at the top of each of the two vertical plates. A first spring is fixedly connected to the inner wall of the top of each fixed sleeve, and a movable rod is fixedly connected to the other end of the first spring. The bottom end of the movable rod passes through a rod hole and is fixed to the slider. Rod holes are opened at the top of each of the two vertical plates, and these rod holes communicate with the grooves. The two vertical plates are connected via a second rotating shaft. A second cleaning roller is installed, and a second motor is mounted on one of the vertical plates. The output end of the second motor is connected to one end of the second rotating shaft. Before the stainless steel strip is wound up, in order to effectively remove dust, debris and other impurities from the surface of the steel strip, a cleaning mechanism is set up. During the winding process, when the stainless steel strip passes between the first and second cleaning rollers, the first and second motors are started, causing both the first and second cleaning rollers to rotate. Since the surfaces of the first and second cleaning rollers are usually made of soft and wear-resistant materials, such as rubber, polyurethane or special fabrics, these materials have good cleaning capabilities. When the first and second cleaning rollers rotate, they can effectively remove dust, debris and other impurities from the surface of the stainless steel strip, preventing these impurities from embedding inside the steel strip or forming surface defects during the winding process, thereby improving the appearance quality and overall quality of the product.
[0007] Through the design of the chute and slider, and with the cooperation of the first spring and the movable rod, the first cleaning roller can be allowed to move up and down within a certain range, and the first cleaning roller can always be in close contact with the surface of the stainless steel strip, thereby improving the cleaning effect and meeting the cleaning needs of steel strips of different thicknesses.
[0008] Preferably, the winding mechanism includes a fixed base, on which a first rotating column is rotatably mounted. One end of the first rotating column is fixedly connected to a first clamping and limiting disc, and the other end of the first rotating column is fitted with a first gear. A support base is fixedly connected to the base, and a motor is mounted on the support base. A second gear is mounted on the output end of the motor, and the first gear and the second gear mesh with each other. When winding the steel strip, one end of the steel strip passes sequentially through the bottom side of the guide wheel between the first cleaning roller and the second cleaning roller, and its free end is fixed on the winding roller. Then, the motor is started, causing the second gear to rotate, which in turn forces the first gear to rotate, thereby causing the first rotating column to drive the winding roller to rotate, thus enabling the winding of the steel strip.
[0009] Preferably, the base has a limiting groove, and a movable plate is disposed within the limiting groove. A fixing ring is fixedly connected to the top of the movable plate, and a second rotating column is rotatably mounted within the fixing ring. A second clamping limiting plate is fixedly connected to one end of the second rotating column. A fixing block is fixedly connected to the base, and a pneumatic cylinder is mounted on the fixing block. A pneumatic rod is fitted to the actuating end of the pneumatic cylinder, and the end of the pneumatic rod is fixedly connected to the movable plate. When installing the take-up roller, firstly, one end of the take-up roller is sleeved on the first clamping limiting plate, and then the pneumatic cylinder is activated to pneumatically... The lever drives the movable plate to move within the limiting groove, which in turn causes the fixing ring to move the second clamping limiting plate until the second clamping limiting plate moves into close contact with the other end of the take-up roller. At this point, the pneumatic cylinder stops operating, thus enabling the quick installation and fixing of the take-up roller. When disassembling the take-up roller, the pneumatic cylinder is activated, causing the pneumatic rod to move the movable plate, which in turn moves the second clamping limiting plate away from the take-up roller, allowing the take-up roller to be quickly removed. This structural design facilitates the installation, replacement, and disassembly of the take-up roller, greatly improving the efficiency of receipt processing.
[0010] Preferably, a fixing frame is fixedly connected to the top of the fixing seat, and two fixing sleeves are fixedly connected to the fixing frame. A second spring is fixedly connected to the inner wall of the top of each of the two fixing sleeves, and a telescopic rod is fixedly connected to the other end of the second spring. A mounting frame is fixedly connected to the bottom end of the two telescopic rods. A pressing wheel is rotatably installed inside the mounting frame. During the winding process, the cooperation of the second spring and the telescopic rod ensures that the pressing wheel is always in contact with the outer surface of the winding steel strip, thereby pressing the steel strip during winding and making it tightly wrapped around the winding roller. This ensures that the steel strip is tightly attached to the winding roller during the winding process, avoiding gaps or loosening between the steel strips, thereby improving the winding effect.
[0011] Preferably, two upright plates are fixedly connected to the base, and guide wheels are installed between the two upright plates through a rotating shaft. When using the device, the guide wheels can assist in guiding and conveying the steel strip during the winding process.
[0012] The advantages of this utility model are:
[0013] 1. Before the stainless steel strip is wound up, this utility model sets up a cleaning mechanism. During the winding process, when the stainless steel strip passes between the first cleaning roller and the second cleaning roller, the first motor and the second motor are started, causing both the first cleaning roller and the second cleaning roller to rotate. Since the surfaces of the first cleaning roller and the second cleaning roller are usually made of soft and wear-resistant materials, such as rubber, polyurethane or special fabrics, these materials have good cleaning ability. When the first cleaning roller and the second cleaning roller rotate, they can effectively remove dust, debris and other impurities from the surface of the stainless steel strip, preventing these impurities from embedding into the steel strip or forming surface defects during the winding process, thereby improving the appearance quality and overall quality of the product.
[0014] 2. In use, the design of the slide groove and the slider, and with the cooperation of the first spring and the movable rod, allows the first cleaning roller to move up and down within a certain range, and ensures that the first cleaning roller is always in close contact with the surface of the stainless steel strip, thereby improving the cleaning effect and meeting the cleaning needs of steel strips of different thicknesses.
[0015] 3. When installing the take-up roller, this utility model first places one end of the take-up roller onto the first clamping and limiting plate. Then, the pneumatic cylinder is activated, causing the pneumatic rod to move the moving plate within the limiting groove. This causes the fixing ring to move the second clamping and limiting plate until the second clamping and limiting plate is in close contact with the other end of the take-up roller. At this point, the pneumatic cylinder stops operating, thus quickly completing the installation and fixing of the take-up roller. When disassembling the take-up roller, the pneumatic cylinder is activated, causing the pneumatic rod to move the moving plate, which in turn moves the second clamping and limiting plate away from the take-up roller, allowing the take-up roller to be quickly removed. This structural design facilitates the installation, replacement, and disassembly of the take-up roller, greatly improving the efficiency of receipt processing. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the device;
[0018] Figure 2 A schematic diagram of the three-dimensional structure of the cleaning mechanism;
[0019] Figure 3 This is a schematic diagram of the three-dimensional structure of the vertical plate assembly;
[0020] Figure 4This is a schematic diagram of the three-dimensional structure of the winding mechanism;
[0021] Figure 5 This is a cross-sectional three-dimensional structural diagram of the fixed sleeve.
[0022] In the diagram: 1. Base; 2. Vertical plate; 3. Second cleaning roller; 4. Second motor; 5. Slide groove; 6. Slider; 7. First cleaning roller; 8. First motor; 9. Fixed sleeve; 10. First spring; 11. Movable rod; 12. Fixed seat; 13. First rotating column; 14. First clamping and limiting plate; 15. First gear; 16. Support seat; 17. Electric motor; 18. Second gear; 19. Limiting groove; 20. Moving plate; 21. Second rotating column; 22. Fixed ring; 23. Second clamping and limiting plate; 24. Fixed block; 25. Pneumatic cylinder; 26. Fixed frame; 27. Fixed sleeve; 28. Second spring; 29. Telescopic rod; 30. Mounting frame; 31. Pressing wheel; 32. Vertical plate; 33. Guide wheel. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0024] Please see Figure 1-3As shown, a strip winding device for a stainless steel strip processing line includes a base 1, on which a winding mechanism and a cleaning mechanism are mounted. The cleaning mechanism includes two vertical plates 2. Two vertical plates 2 are fixedly connected to the top side of the base 1. Each vertical plate 2 has a groove 5, and each groove 5 contains a slider 6. A first cleaning roller 7 is mounted between the two sliders 6 via a first rotating shaft. A first motor 8 is mounted on one of the sliders 6, and the stable output end of the first motor 8 is connected to one end of the first rotating shaft. A fixing sleeve 9 is mounted on the top of each of the two vertical plates 2. A first spring 10 is fixedly connected to the inner wall of the top of each of the two fixing sleeves 9, and a movable rod 11 is fixedly connected to the other end of the first spring 10. The bottom end of the movable rod 11 passes through a rod hole and is fixed to the slider 6. Rod holes are opened at the top of the two vertical plates 2, and the rod holes communicate with the grooves 5. A second cleaning roller 3 is mounted between the two vertical plates 2 via a second rotating shaft. A second motor 4 is installed on a vertical plate 2, and the output end of the second motor 4 is connected to one end of the second rotating shaft. Before the stainless steel strip is wound up, in order to effectively remove dust, debris and other impurities from the surface of the steel strip, a cleaning mechanism is set up. During the winding process, when the stainless steel strip passes between the first cleaning roller 7 and the second cleaning roller 3, the first motor 8 and the second motor 4 are started, causing both the first cleaning roller 7 and the second cleaning roller 3 to rotate. Since the surfaces of the first cleaning roller 7 and the second cleaning roller 3 are usually made of soft and wear-resistant materials, such as rubber, polyurethane or special fabrics, these materials have good cleaning ability. When the first cleaning roller 7 and the second cleaning roller 3 rotate, they can effectively remove dust, debris and other impurities from the surface of the stainless steel strip, preventing these impurities from embedding inside the steel strip or forming surface defects during the winding process, thereby improving the appearance quality and overall quality of the product.
[0025] Through the design of the chute 5 and the slider 6, and with the cooperation of the first spring 10 and the movable rod 11, the first cleaning roller 7 can be allowed to move up and down within a certain range, and the first cleaning roller 7 can always be in close contact with the surface of the stainless steel strip, thereby improving the cleaning effect and meeting the cleaning needs of steel strips of different thicknesses.
[0026] Please see Figure 4-5As shown, the winding mechanism includes a fixed base 12, on which a first rotating column 13 is rotatably mounted. One end of the first rotating column 13 is fixedly connected to a first clamping and limiting plate 14, and the other end of the first rotating column 13 is fitted with a first gear 15. A support base 16 is fixedly connected to the base 1, and a motor 17 is mounted on the support base 16. A second gear 18 is mounted on the output end of the motor 17, and the first gear 15 and the second gear 18 mesh with each other. Two vertical plates 32 are fixedly connected to the base 1, and a guide wheel 33 is installed between the two vertical plates 32 through a rotating shaft. When winding the steel strip, one end of the steel strip passes through the bottom side of the guide wheel 33 between the first cleaning roller 7 and the second cleaning roller 3 in sequence, and its free end is fixed on the winding roller. Then, the motor 17 is started, causing the second gear 18 to rotate, which forces the first gear 15 to rotate, thereby causing the first rotating column 13 to drive the winding roller to rotate, thus enabling the steel strip to be wound.
[0027] The base 1 has a limiting groove 19, and a movable plate 20 is arranged in the limiting groove 19. A fixing ring 22 is fixedly connected to the top of the movable plate 20. A second rotating column 21 is rotatably installed in the fixing ring 22. A second clamping limiting plate 23 is fixedly connected to one end of the second rotating column 21. A fixing block 24 is fixedly connected to the base 1. A pneumatic cylinder 25 is installed on the fixing block 24. A pneumatic rod is assembled at the working end of the pneumatic cylinder 25. The end of the pneumatic rod is fixedly connected to the movable plate 20. When installing the take-up roller, firstly, one end of the take-up roller is sleeved on the first clamping limiting plate 14. Then, the pneumatic cylinder 25 is activated, causing the pneumatic rod to move. The moving plate 20 moves within the limiting groove 19, which in turn causes the fixing ring 22 to move the second clamping limiting plate 23 until the second clamping limiting plate 23 is in close contact with the other end of the take-up roller. At this point, the pneumatic cylinder 25 stops operating, thus enabling the quick installation and fixing of the take-up roller. When disassembling the take-up roller, the pneumatic cylinder 25 is activated, causing the pneumatic rod to move the moving plate 20, which in turn moves the second clamping limiting plate 23 away from the take-up roller, allowing the take-up roller to be quickly disassembled. This structural design facilitates the installation, replacement, and disassembly of the take-up roller, greatly improving the efficiency of receipt processing.
[0028] Please see Figure 5As shown, a fixing frame 26 is fixedly connected to the top of the fixing base 12. Two fixing sleeves 27 are fixedly connected to the fixing frame 26. A second spring 28 is fixedly connected to the inner wall of the top of each of the two fixing sleeves 27. A telescopic rod 29 is fixedly connected to the other end of the second spring 28. A mounting frame 30 is fixedly connected to the bottom of the two telescopic rods 29. A pressing wheel 31 is rotatably installed inside the mounting frame 30. During the winding process, the cooperation of the second spring 28 and the telescopic rod 29 ensures that the pressing wheel 31 is always in contact with the outer surface of the winding steel strip. This presses the steel strip during winding, making it tightly wrapped around the winding roller. This ensures that the steel strip adheres tightly to the winding roller during the winding process, preventing gaps or loosening between the steel strips, thereby improving the winding effect.
[0029] Working Principle: Existing stainless steel strip winding devices often lack a cleaning mechanism, which prevents effective cleaning of the steel strip surface before winding. This results in the inability to effectively remove dust, debris, and other impurities from the steel strip surface, thus affecting the quality of the steel strip. Therefore, to address the above problem, a winding device for stainless steel strip processing lines is proposed. Before winding the stainless steel strip, in order to effectively remove dust, debris, and other impurities from the steel strip surface, a cleaning mechanism is set up. During the winding process, when the stainless steel strip passes between the first cleaning roller 7 and the second cleaning roller 3, the first motor 8 and the second motor 4 are activated, causing both the first cleaning roller 7 and the second cleaning roller 3 to rotate. Since the surfaces of the first cleaning roller 7 and the second cleaning roller 3 are usually made of soft and wear-resistant materials, such as rubber, polyurethane, or special fabrics, these materials have good cleaning capabilities. When the first cleaning roller 7 and the second cleaning roller 3 rotate, they can effectively remove dust, debris, and other impurities from the surface of the stainless steel strip, preventing these impurities from embedding inside the steel strip or forming surface defects during the winding process, thereby improving the appearance quality and overall quality of the product.
[0030] When installing the take-up roller, first, one end of the take-up roller is fitted onto the first clamping and limiting plate 14. Then, the pneumatic cylinder 25 is activated, causing the pneumatic rod to move the moving plate 20 within the limiting groove 19. This, in turn, causes the fixing ring 22 to move the second clamping and limiting plate 23 until the second clamping and limiting plate 23 is in close contact with the other end of the take-up roller. The pneumatic cylinder 25 then stops, thus quickly completing the installation and fixing of the take-up roller. When disassembling the take-up roller, the pneumatic cylinder 25 is activated, causing the pneumatic rod to move the moving plate 20, which in turn moves the second clamping and limiting plate 23 away from the take-up roller, allowing for rapid removal of the take-up roller. This structural design facilitates the installation, replacement, and disassembly of the take-up roller, greatly improving receipt efficiency. After the initial setup is complete, when winding the steel strip, one end of the steel strip is passed sequentially through the bottom side of the guide wheel 33 between the first cleaning roller 7 and the second cleaning roller 3, and its free end is fixed on the winding roller. Then, the motor 17 is started, causing the second gear 18 to rotate, which in turn forces the first gear 15 to rotate, thereby causing the first rotating column 13 to drive the winding roller to rotate, thus enabling the steel strip to be wound. During the winding process, through the cooperation of the second spring 28 and the telescopic rod 29, it is ensured that the pressing wheel 31 is always in contact with the outer surface of the wound steel strip, thereby pressing the steel strip during winding and making it tightly wrapped on the winding roller. This ensures that the steel strip is tightly attached to the winding roller during the winding process, avoiding gaps or looseness between the steel strips, thereby improving the winding effect.
[0031] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0032] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.
Claims
1. A coiling device for a stainless steel strip processing line, characterized by: The utility model provides a kind of paper roll machine, including base (1), the base (1) is provided with winding mechanism and cleaning mechanism, the cleaning mechanism includes two vertical boards (2), the top side of base (1) is fixedly connected with two vertical boards (2), two vertical boards (2) are all provided with sliding slot (5), two sliding slots (5) are all provided with sliding block (6), first cleaning roller (7) is installed between two sliding blocks (6) by first rotating shaft cooperation, one sliding block (6) is installed with first motor (8), and the stable output end of first motor (8) is connected with one end of first rotating shaft, the top of two vertical boards (2) is installed with fixed sleeve (9), the top inner wall of two fixed sleeve (9) is fixedly connected with first spring (10), and the other end of first spring (10) is fixedly connected with movable rod (11), and the bottom of movable rod (11) is fixedly connected in sliding block (6) by rod hole, the top of two vertical boards (2) is provided with rod hole, and rod hole is communicated with sliding slot (5), and second cleaning roller (3) is installed between two vertical boards (2) by second rotating shaft cooperation, one vertical board (2) is installed with second motor (4), and the output end of second motor (4) is connected with one end of second rotating shaft.
2. A coiling device for a stainless steel strip processing line according to claim 1, characterized in that: The winding mechanism includes fixed seat (12), the first rotating column (13) is rotatably installed on the fixed seat (12), one end of the first rotating column (13) is fixedly connected with the first clamping limiting disc (14), the other end of the first rotating column (13) is sleeved with the first gear (15), the base (1) is fixedly connected with the support seat (16), the support seat (16) is installed with the motor (17), the output end of the motor (17) is installed with the second gear (18), and the first gear (15) and the second gear (18) are engaged with each other.
3. A coiling device for a stainless steel strip processing line according to claim 1, characterized in that: The base (1) is provided with a limiting groove (19), and the limiting groove (19) is provided with a moving plate (20). The top of the moving plate (20) is fixedly connected with a fixed ring (22). The fixed ring (22) is rotatably installed with a second rotating column (21). One end of the second rotating column (21) is fixedly connected with a second clamping limiting disc (23).
4. The coiling device for a stainless steel strip processing line according to claim 1, characterized in that: The base (1) is fixedly connected with a fixed block (24). The fixed block (24) is installed with a pneumatic cylinder (25). The acting end of the pneumatic cylinder (25) is assembled with a pneumatic rod. The end of the pneumatic rod is fixedly connected with the moving plate (20).
5. A coiling device for a stainless steel strip processing line according to claim 2, characterized in that: The top of the fixed seat (12) is fixedly connected with a fixed frame (26). The fixed frame (26) is fixedly connected with two fixed sleeves (27). The top inner wall of the two fixed sleeves (27) is fixedly connected with a second spring (28). The other end of the second spring (28) is fixedly connected with a telescopic rod (29). The bottom of the two telescopic rods (29) is cooperatively fixedly connected with a mounting frame (30). The mounting frame (30) is rotatably installed with a pressing wheel (31).
6. A coiling device for a stainless steel strip processing line according to claim 1, characterized in that: The base (1) is fixedly connected with two vertical plates (32). The two vertical plates (32) are cooperatively installed with a guide wheel (33) through a rotating shaft.
Citation Information
Patent Citations
Novel stainless steel band winding device
CN216302784U