Winding equipment and winding method for stainless steel white skin roll processing
Through the combined design of the pressure roller, support rod, inner clamping column, rotating roller and tensioning roller, the shaking and deviation problems of the stainless steel white paper coil during the winding process are solved, and a stable and tight coil winding effect is achieved.
Patent Information
- Application Number
- CN202511248402.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2025-10-14
AI Technical Summary
During the winding process of stainless steel white coils, when the winding speed changes, the coil is prone to shaking or offset, resulting in poor rolling effect, especially thin coils are more prone to misalignment.
The pressure roller and rubber washer are matched, and the rubber washer is used to deform under contact pressure to increase friction. The support rod and the slide rod guide keep the axis parallel. The inner clamping column and the clamping drum are clamped and fixed. The rotating roller and the pressure roller increase the resistance. The tensioning roller and the elastic ring buffer the tensioning force to ensure stable winding of the coil.
It effectively avoids the shaking and deviation of the coil, improves the fixing effect and tensioning strength of the coil, ensures the tightness and stability of the coil, and prevents the breakage of thin coils.
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Figure CN120774264A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of winding equipment, in particular to a winding equipment for stainless steel white skin coil processing and a winding method. BACKGROUND
[0002] The stainless steel white skin coil refers to a stainless steel hot-rolled coil plate with surface oxide skin removed after annealing, pickling and other process treatments. The plate blank is used as raw material, and after heating, the strip steel is made by a rough rolling mill and a finishing rolling mill. The hot strip steel is cooled to the set temperature by laminar flow cooling after coming out of the last rolling mill of the finishing rolling mill, and is coiled into a steel coil by a coiling machine. At this time, the outer surface of the steel coil has an oxide skin and appears black, which is called "stainless steel black skin coil". The austenitic hot-rolled black skin coil obtained by hot rolling is sent into an annealing furnace for annealing to eliminate internal stress. Then the steel coil obtained by annealing is subjected to neutral salt electrolysis to further remove surface impurities. Finally, the steel coil obtained by neutral salt electrolysis is subjected to mixed acid pickling to obtain an austenitic white skin coil stainless steel material with a clean surface and meeting the requirements of cold rolling process. The white skin coil is wound to form a coiled material for convenient transportation and storage. During the coiling process of the stainless steel white skin coil, when the coiling speed changes unexpectedly, the coiled material moving in the coiling state is prone to shaking. When the thickness of the coiled material is thin, the coiling of the thin coiled material is prone to deviation and misalignment, affecting the coiling effect. SUMMARY
[0003] The present application is implemented by the following technical solutions: A winding equipment for stainless steel white skin coil processing, comprising: A frame body, an electric motor is fixedly installed on the outer side of the frame body, and a sliding chute plate is fixedly installed on the adjacent surface of the frame body and the electric motor; A winding core mechanism, which is rotatably installed on the inner wall of the frame body and is fixedly connected with the output end of the electric motor; A tensioning mechanism, which is installed in the interior of the frame body and is located below the winding core mechanism; The outer side of the sliding groove plate is provided with a wheel groove, and a cross top plate is installed at the wheel groove of the sliding groove plate. The side close to the wheel groove of the cross top plate is rotatably installed with a pulley. The cross top plate is slidably matched with the wheel groove of the sliding groove plate through the pulley. The side close to the sliding groove plate of the cross top plate is fixedly installed with a slide column. The slide column extends to the other side through the sliding groove plate away from the cross top plate. A spring is fixedly installed between the sliding groove plate and the cross top plate. The side away from the sliding groove plate of the cross top plate is fixedly installed with an inclined groove plate. The outer side of the inclined groove plate is provided with an inclined groove, and the inclined groove is inclined to the side of the winding core mechanism from bottom to top. A slide rod is slidably installed at the inclined groove of the inclined groove plate. The outer side of the slide rod is fixedly installed with a winding roller. Through the cooperation of the winding roller and the rubber gasket ring, the winding material in the rolling state is pressed during the contact with the winding material. At the same time, when the rolling speed is accelerated, the rubber gasket ring deforms under the contact pressure, increases the contact area and the friction force, so that the winding core mechanism moves obliquely upward along the inclined groove of the inclined groove plate in the process of rotating, and the trend of approaching the winding core mechanism appears, and the pressing force on the winding material is increased. The sudden acceleration of the rolling speed during the rolling process causes the winding material to vibrate during the movement, causing the winding material to deviate and dislocate during the rolling of the thin winding material, affecting the rolling effect. The outer side of the winding roller is uniformly provided with a ring groove along the axial direction, and a rubber gasket ring is fixedly installed at the ring groove of the winding roller. The side close to the sliding groove plate of the cross top plate is fixedly installed with a support rod. Through the cooperation of the support rod and the slide rod, the moving direction is guided by the support rod and the slide rod during the elastic compression deformation of the spring with the increase of the rolling thickness, so that the rolling shaft center position and the axial center position of the winding roller are always in a parallel state, avoiding deviation and uneven pressure of the winding material during rolling, which cannot continue to roll. The outer side of the support rod is slidably matched with the inner wall of the sliding groove plate.
[0004] Preferably, the winding core mechanism comprises an inner rotating disc. The center position of the side close to the motor of the inner rotating disc is fixedly connected with the output end of the motor. The outer side of the inner rotating disc is uniformly provided with a rotating groove. A rotating column is rotatably installed at the rotating groove of the inner rotating disc. The inner rotating disc is rotatably matched with the inner wall of the frame body through the rotating column. The center position of the side away from the motor of the inner rotating disc is fixedly installed with a clamping groove cylinder. The end away from the inner rotating disc of the clamping groove cylinder is fixedly installed with a clamping roller. The outer side of the clamping roller is provided with a through groove.
[0005] Preferably, both ends of the inner wall of the card reel are rotatably installed with rotating blocks, the inner wall of the rotating block is fixedly installed with a rotating shaft, one end of the rotating shaft away from the motor penetrates the card reel and extends to the outside, and the other end of the rotating shaft away from the motor is fixedly installed with a hexagonal block, the outer side of the rotating shaft is fixedly installed with an inner clamping column, the inner clamping column is located between the rotating blocks, and the outer side of the inner clamping column is rotatably matched with the inner wall of the card reel. The side of the inner clamping column close to the through groove is arc-shaped and uniformly provided with a slot. By matching the arc surface of the inner clamping column with the card reel, the inner clamping column is rotated during fixing, the gap between the inner clamping column and the card reel is reduced, one end of the coiled material is clamped and fixed, the slot of the inner clamping column increases the friction between the coiled material, and the clamping force between the inner clamping column and the card reel is matched to improve the fixing effect of the coiled material. The inner wall of the inner clamping column is fixedly installed with a protrusion on both sides.
[0006] Preferably, the tensioning mechanism comprises side plates, the bottom of the side plate is fixedly connected with the inner wall of the frame body, and the number of the side plates is two. The outer side of the side plate close to the winding core mechanism is provided with a straight sliding groove, and the outer side of the side plate away from the winding core mechanism is provided with an inclined groove, and the inclined groove is inclined from top to bottom to the side of the winding core mechanism. The rotating roller is rotatably installed between the side plates. The outer side of the rotating roller is uniformly installed with a rubber cylinder along the axial direction. By matching the rotating roller with the compression roller, in the process of winding, the compression roller is driven by the cylinder to approach the rotating roller to compress the coiled material between the rotating roller and the compression roller. The rubber cylinder on the outer side of the rotating roller is matched to increase the resistance received by the coiled material when moving, limit the movement of the coiled material, avoid the coiled material from shaking during transmission, assist the compression of the coiled material by the tensioning roller, improve the tensioning force of the coiled material, and avoid the coiled material from being not tightly wound. The inner wall of the rubber cylinder is fixedly connected with the outer side of the rotating roller. The non-opposite surface of the side plate is fixedly installed with a cylinder.
[0007] Preferably, the output end of the cylinder is fixedly installed with an end cover, the end cover is slidably installed at the inclined groove of the side plate, and the compression roller is rotatably installed between the end covers. The compression roller is located obliquely above the side away from the winding core mechanism of the rotating roller. The tensioning roller is installed between the side plates. By matching the tensioning roller with the elastic ring, the tensioning force of the coiled material is improved when the coiled material is compressed. The elastic deformation of the elastic ring allows the tensioning roller to slide at the straight sliding groove. When the winding speed of the coiled material changes, the tensioning force of the coiled material can be buffered to protect the coiled material and avoid the coiled material from being broken. The both ends of the tensioning roller are fixedly installed with sliding sleeves. The tensioning roller is slidably matched with the straight sliding groove of the side plate through the sliding sleeves. The outer side of the tensioning roller is rotatably installed with a rubber wheel. The rubber wheel is uniformly installed on the outer side of the tensioning roller along the axial direction. The side plate is provided with an elastic ring at the straight sliding groove.
[0008] A winding method of a stainless steel white skin coil processing winding equipment, which is composed of the following steps: S1, the roll material is inserted, the worker inserts the required winding white skin roll into the equipment, so that the roll material is firstly inserted through the tensioning mechanism, then the roll material is inserted from the bottom of the roll core mechanism, and finally the roll material is inserted between the roll core mechanism and the roll pressing roller; S2, the roll material is fixed, after the roll material is inserted into the equipment, one end of the roll material is inserted into the roll core mechanism, and then the worker adjusts the roll core mechanism, so that the roll core mechanism fixes one end of the roll material; S3, the roll material is wound, the roll core mechanism is driven to rotate by the motor, one end of the roll material is fixed by the roll core mechanism, so that the roll material is wound outside the roll core mechanism, and in the winding process, the wound roll material is compressed by the tensioning mechanism and the roll pressing roller; S4, the roll material is unloaded, when the roll material is wound outside the roll core mechanism to a certain thickness, the worker adjusts the roll core mechanism, so that the roll core mechanism is fixed with one end of the roll material, and then the roll material is taken out through the transfer equipment.
[0009] The present application provides a winding equipment for stainless steel white skin roll processing. I. The winding equipment for stainless steel white skin roll processing is provided with a roll pressing roller and a rubber pad ring, which cooperate with each other to press the wound roll material during contact with the roll material. When the winding speed increases, the rubber pad ring deforms under the contact pressure, increases the contact area and the friction force, so that the roll core mechanism moves obliquely upward along the inclined groove of the inclined groove plate in the instant when the speed of the roll pressing roller increases, and the trend of approaching the roll core mechanism appears, which increases the pressing force on the roll material. The sudden increase in winding speed during the winding process causes the roll material to vibrate during movement, which causes the thin roll material to deviate and dislocate during winding, affecting the winding effect.
[0010] II. The winding equipment for stainless steel white skin roll processing is provided with a support rod and a sliding rod, which cooperate with each other to guide the moving direction during the elastic compression deformation of the spring with the increase of the winding thickness, so that the winding axis position and the axis center position of the roll pressing roller are always in parallel state, avoiding deviation and uneven compression of the wound roll material, which cannot continue to wind.
[0011] III. The winding equipment for stainless steel white skin roll processing is provided with an arc surface of an inner clamping column and a clamping roll, which cooperate with each other to rotate the inner clamping column during fixing, reduce the gap between the inner clamping column and the clamping roll, clamp and fix one end of the roll material, and increase the friction force between the inner clamping column and the roll material, and the clamping force between the inner clamping column and the clamping roll, to improve the fixing effect of the roll material.
[0012] Four, the winding equipment for stainless steel white skin roll processing, through the cooperation of the rotating roller and the pressing roller, in the process of rolling, the pressing roller is driven by the cylinder to approach the rotating roller, the coil between the rotating roller and the pressing roller is pressed, the rubber cylinder outside the rotating roller is matched, the resistance received by the coil during movement is increased, the movement of the coil is limited, the pressing of the auxiliary tensioning roller to the coil is assisted, the tensioning degree of the coil is improved, the coil is not tightly rolled during rolling.
[0013] Five, the winding equipment for stainless steel white skin roll processing, through the cooperation of the tensioning roller and the elastic ring, in the process of pressing the coil and improving the tensioning force of the coil, the elastic deformation of the elastic ring is utilized, the tensioning roller can slide at the straight sliding groove, when the rolling speed of the coil changes, the tensioning force of the coil can be buffered, the coil is protected, and the coil is not broken when it is thin. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a structure schematic view of the winding equipment for stainless steel white skin roll processing; Figure 2 It is a structure side view of the winding equipment for stainless steel white skin roll processing; Figure 3 It is a partial structure schematic view of the winding equipment for stainless steel white skin roll processing; Figure 4 It is a partial structure side view of the winding equipment for stainless steel white skin roll processing; Figure 5 It is a structure schematic view of the winding core mechanism; Figure 6 It is a partial structure sectional view of the winding core mechanism; Figure 7 It is a partial structure schematic view of the winding core mechanism; Figure 8 It is a structure schematic view of the tensioning mechanism; Figure 9 It is a partial structure schematic view of the tensioning mechanism; Figure 10 It is a winding method schematic view.
[0015] In the figure: 1. frame; 2. tensioning mechanism; 3. winding core mechanism; 4. motor; 5. slide plate; 6. slide column; 7. spring; 8. rubber gasket; 9. cross top plate; 10. slide rod; 11. inclined groove plate; 12. support rod; 13. pressure roller; 14. pulley; 201. side plate; 202. cylinder; 203. end cover; 204. elastic ring; 205. pressure roller; 206. tensioning roller; 207. rubber wheel; 208. rubber cylinder; 209. rotating roller; 210. sliding sleeve; 31. inner turntable; 32. slot cylinder; 33. rotating column; 34. reel; 35. hexagonal block; 36. rotating block; 37. inner clamping column; 38. rotating shaft; 39. protrusion. DETAILED DESCRIPTION
[0016] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0017] The first embodiment, as Figures 1 to 4 As shown, the present invention provides a technical solution: A winding device for processing stainless steel white paper coils, comprising: The frame 1 has a motor 4 fixedly mounted on the outside of the frame 1, and a slide plate 5 fixedly mounted on the adjacent surface of the outside of the frame 1 and the motor 4; The winding core mechanism 3 is rotatably mounted on the inner wall of the frame 1 and is fixedly connected to the output end of the motor 4; The tensioning mechanism 2 is installed inside the frame 1 and is located below the winding core mechanism 3; The outer side of the sliding groove plate 5 is provided with a wheel groove, and the wheel groove of the sliding groove plate 5 is provided with a horizontal top plate 9, the side close to the wheel groove of the horizontal top plate 9 is rotatably provided with a pulley 14, the horizontal top plate 9 is slidably matched with the wheel groove of the sliding groove plate 5 through the pulley 14, and the side close to the sliding groove plate 5 of the horizontal top plate 9 is fixedly provided with a sliding column 6, one end of the sliding column 6 away from the horizontal top plate 9 penetrates through the sliding groove plate 5 and extends to the other side, the sliding groove plate 5 and the horizontal top plate 9 are fixedly provided with a spring 7, the side away from the sliding groove plate 5 of the horizontal top plate 9 is fixedly provided with an inclined groove plate 11, the outer side of the inclined groove plate 11 is provided with an inclined groove, and the inclined groove plate 11 is matched with the pressing roller 13 and the tensioning mechanism 2 and the winding core mechanism 3, in the process of winding, the sliding column 6 is matched with the supporting rod 12, the sliding column 6 is slidably matched with the inner wall of the sliding groove plate 5, the moving direction of the pressing roller 13 is guided, the rotating axis of the pressing roller 13 and the winding core mechanism 3 is in parallel state, the spring 7 is elastically deformed, the thickness of the winding material is gradually increased, the spring 7 is compressed and deformed, the deformation degree of the spring 7 is gradually increased, the elastic force is gradually increased with the thickness of the winding, the inclined groove is inclined to the side of the winding core mechanism 3 from bottom to top, the inclined groove of the inclined groove plate 11 is slidably provided with a sliding rod 10, the outer side of the sliding rod 10 is fixedly provided with the pressing roller 13, the outer side of the pressing roller 13 is uniformly provided with a ring groove in the axial direction, and the ring groove of the pressing roller 13 is fixedly provided with a rubber pad ring 8, the outer side of the pressing roller 13 is in contact with the winding material through the rubber pad ring 8 in the process of pressing the winding material, the contact area and the friction force are increased through the rubber deformation characteristics of the rubber pad ring 8 and the deformation under the contact pressure in the process of winding, when the winding speed is increased, the pressing roller 13 moves obliquely upward along the inclined groove of the inclined groove plate 11, the trend of approaching the winding core mechanism 3 is appeared, the pressing on the winding material is increased, the side close to the sliding groove plate 5 of the horizontal top plate 9 is fixedly provided with the supporting rod 12, and the outer side of the supporting rod 12 is slidably matched with the inner wall of the sliding groove plate 5.
[0018] The second embodiment is based on the first embodiment, please refer to Figures 5 to 7 As shown in the drawing, the winding core mechanism 3 comprises an inner rotating disc 31, the center position of the side close to the motor 4 of the inner rotating disc 31 is fixedly connected with the output end of the motor 4, the outer side of the inner rotating disc 31 is uniformly provided with a rotating groove, the rotating groove of the inner rotating disc 31 is rotatably provided with a rotating column 33, the inner rotating disc 31 is rotatably matched with the inner wall of the frame body 1 through the rotating column 33, the inner rotating disc 31 is fixedly connected with the output end of the motor 4, the inner rotating disc 31 is driven by the motor 4, the clamping roller 34 is driven to rotate through the clamping groove cylinder 32, when the winding material is clamped by the clamping roller 34, one end of the winding material is inserted into the equipment, then the worker rotates the hexagonal block 35 through the wrench, the center position of the side away from the motor 4 of the inner rotating disc 31 is fixedly provided with the clamping groove cylinder 32, one end of the clamping groove cylinder 32 away from the inner rotating disc 31 is fixedly provided with the clamping roller 34, and the outer side of the clamping roller 34 is provided with a through groove.
[0019] The two ends of the inner wall of the card winding drum 34 are rotatably installed with rotating blocks 36, the inner wall of the rotating block 36 is fixedly installed with rotating shafts 38, one end of the rotating shaft 38 away from the motor 4 penetrates through the card winding drum 34 and extends to the outside, and the other end of the rotating shaft 38 away from the motor 4 is fixedly installed with a hexagonal block 35, the outer side of the rotating shaft 38 is fixedly installed with an inner clamping column 37, the inner clamping column 37 is located between the rotating blocks 36, the inner clamping column 37 is driven to rotate on the inner wall of the card winding drum 34 through the rotating shaft 38, and the arc surface close to the through slot side of the card winding drum 34 is used in cooperation with the inner wall of the card winding drum 34. In the process of rotating, the gap between the winding drum 34 and the inner clamping column 37 is gradually reduced, so that the inner clamping column 37 cooperates with the card winding drum 34 to clamp and fix one end of the winding material, and the outer side of the inner clamping column 37 is rotatably matched with the inner wall of the card winding drum 34. The side of the inner clamping column 37 close to the through slot is an arc surface and uniformly provided with a slot, and the two sides of the inner wall of the inner clamping column 37 are fixedly installed with protrusions 39.
[0020] The third embodiment is based on the first and second embodiments, please refer to Figures 8 to 10 As shown in the figure, the tensioning mechanism 2 includes side plates 201, the bottom of the side plate 201 is fixedly connected with the inner wall of the frame body 1, and the number of the side plate 201 is two. The outer side of the side plate 201 close to the winding core mechanism 3 is provided with a straight sliding groove, and the outer side of the side plate 201 away from the winding core mechanism 3 is provided with an inclined groove, and the inclined groove is inclined from top to bottom to the side of the winding core mechanism 3. The rotating rollers 209 are rotatably installed between the side plates 201. When the winding material is inserted, the winding material first passes through the gap between the pressing roller 205 and the rotating roller 209, and then the winding material passes through the bottom of the tensioning roller 206, so that the bottom of the tensioning roller 206 is in contact with the winding material. The outer side of the rotating roller 209 is uniformly provided with rubber cylinders 208 in the axial direction, the inner wall of the rubber cylinder 208 is fixedly connected with the outer side of the rotating roller 209, and the non-opposing surfaces of the side plates 201 are fixedly installed with air cylinders 202.
[0021] The output end of the air cylinder 202 is fixedly installed with an end cover 203, the end cover 203 is slidingly installed at the inclined groove of the side plate 201, and the pressure roller 205 is rotationally installed between the end covers 203, the pressure roller 205 is located obliquely above the side of the rotating roller 209 away from the winding core mechanism 3, the tension roller 206 is installed between the side plates 201, and the both ends of the tension roller 206 are fixedly installed with sliding sleeves 210, the tension roller 206 is slidingly matched with the straight sliding grooves of the side plates 201 through the sliding sleeves 210, after the winding of the winding material is completed, the end cover 203 is slidingly driven by the air cylinder 202 at the inclined groove of the side plate 201, so that the pressure roller 205 approaches the rotating roller 209, the winding material is clamped and pressed by the cooperation of the pressure roller 205 and the rubber cylinder 208, the resistance in the winding process of the winding material is increased, the tension degree of the winding material in the winding process is maintained by the cooperation of the tension roller 206 and the elastic force ring 204, when the winding material is pressed, the tension degree of the winding material is buffered by the elastic deformation of the elastic force ring 204 according to the winding speed, and the rubber wheels 207 are rotationally installed outside the tension roller 206, the rubber wheels 207 are uniformly installed outside the tension roller 206 along the axial direction, and the elastic force ring 204 is clamped at the straight sliding groove of the side plate 201.
[0022] A winding method of a winding equipment for processing a stainless steel white skin roll, which comprises the following steps: S1, winding material is inserted, the worker inserts the white skin roll required to be wound into the equipment, so that the winding material first passes through the tensioning mechanism 2, then the winding material is inserted from the bottom of the winding core mechanism 3, and finally passes between the winding core mechanism 3 and the winding roller 13; S2, winding material is fixed, after the winding material is inserted into the equipment, one end of the winding material is inserted into the winding core mechanism 3, then the worker adjusts the winding core mechanism 3, so that the winding core mechanism 3 fixes one end of the winding material; S3, winding material is wound, the winding core mechanism 3 is driven to rotate by the motor 4, one end of the winding material is fixed by the winding core mechanism 3, so that the winding material is wound outside the winding core mechanism 3, and the wound winding material is pressed by the cooperation of the tensioning mechanism 2 and the winding roller 13 during the winding process; S4, the winding material is unloaded, when the winding material is wound to a certain thickness outside the winding core mechanism 3, the worker adjusts the winding core mechanism 3, so that the fixing of one end of the winding material by the winding core mechanism 3 is released, and then the winding material is taken out by the transfer equipment.
[0023] During use, the worker inserts the white leather roll to be rolled into the equipment, so that the roll first passes through the tensioning mechanism 2, and then passes through the bottom of the core mechanism 3, and finally passes between the core mechanism 3 and the pressing roller 13. After the roll passes through the equipment, one end of the roll is inserted into the core mechanism 3, and then the worker adjusts the core mechanism 3 so that the core mechanism 3 fixes one end of the roll, and finally drives the core mechanism 3 to rotate through the motor 4. Through the fixation of the core mechanism 3 and one end of the roll, the roll is rolled on the outside of the core mechanism 3. At the same time, during the rolling process, the tensioning mechanism 2 cooperates with the pressing roller 13 to press the rolled roll.
[0024] When the roller 13 is in the process of pressing the material, the spring 7 is compressed, and the spring 7 gradually increases in deformation, and the elastic force gradually increases with the thickness of the rolled material. At the same time, when the roller 13 is in the process of pressing the material, the spring 7 is compressed, and the spring 7 gradually increases in deformation, and the elastic force gradually increases with the thickness of the rolled material. At the same time, when the roller 13 is in the process of pressing the material, the spring 7 contacts the material through the rubber gasket 8. During the rolling process, the rubber deformation characteristics of the rubber gasket 8, combined with the deformation under the contact pressure, increase the contact area and increase the friction. When the rolling speed is accelerated, the roller 13 moves obliquely upward along the inclined groove of the inclined groove plate 11, tends to approach the core mechanism 3, and increases the pressure on the material.
[0025] In the winding core mechanism 3, the inner turntable 31 is fixedly connected to the output end of the motor 4, so that the inner turntable 31 drives the clamping drum 34 to rotate through the clamping groove drum 32 under the drive of the motor 4. When the coil is fixed by the clamping drum 34, one end of the coil is passed through the equipment and then passed into the interior of the clamping drum 34 through the through groove of the clamping drum 34. Then the worker turns the hexagonal block 35 with a wrench to rotate the hexagonal block 35, and at the same time drives the inner clamping column 37 to rotate on the inner wall of the clamping drum 34 through the rotating shaft 38. The arc surface of the clamping drum 34 close to the side of the through groove is used to cooperate with the inner wall of the clamping drum 34. During the rotation process, the gap between the clamping drum 34 at the coil position and the inner clamping column 37 is gradually reduced, so that the inner clamping column 37 cooperates with the clamping drum 34 to clamp and fix one end of the coil.
[0026] In the tensioning mechanism 2, the coiled material is first passed through the gap between the pressure roller 205 and the rotating roller 209 when it is threaded, and then the coiled material is passed through the bottom of the tensioning roller 206, so that the bottom of the tensioning roller 206 is in contact with the coiled material. After the coiled material is fixed, the end cover 203 is driven by the air cylinder 202 to slide in the inclined groove of the side plate 201, so that the pressure roller 205 is close to the rotating roller 209. The coiled material is clamped and compressed by the cooperation of the pressure roller 205 and the rubber cylinder 208, so as to increase the resistance of the coiled material during the rolling process. The tensioning roller 206 cooperates with the elastic ring 204 to keep the tension of the coiled material during the rolling process. At the same time, when the tensioning roller 206 compresses the coiled material, according to the rolling speed, the elastic deformation of the elastic ring 204 can buffer the tension of the coiled material when the rolling speed is increased.
[0027] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises... " does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element.
[0028] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A winding device for processing stainless steel white paper coils, characterized in that: include: A frame (1), a motor (4) being fixedly mounted on the outer side of the frame (1), and a slide plate (5) being fixedly mounted on the adjacent surface of the outer side of the frame (1) and the motor (4); A winding core mechanism (3), the winding core mechanism (3) being rotatably mounted on the inner wall of the frame (1), and the winding core mechanism (3) being fixedly connected to the output end of the motor (4); A tensioning mechanism (2), the tensioning mechanism (2) being installed inside the frame (1), and the tensioning mechanism (2) being located below the winding core mechanism (3); A wheel groove is provided on the outer side of the chute plate (5), and a transverse top plate (9) is installed at the wheel groove of the chute plate (5), and a pulley (14) is rotatably installed on the side of the transverse top plate (9) close to the wheel groove. The transverse top plate (9) is slidably adapted to the wheel groove of the chute plate (5) through the pulley (14), and a sliding column (6) is fixedly installed on the side of the transverse top plate (9) close to the chute plate (5), and one end of the sliding column (6) away from the transverse top plate (9) passes through the chute plate (5) and extends to the other side. A spring (7) is fixedly installed between the chute plate (5) and the transverse top plate (9), and the side of the transverse top plate (9) away from the chute plate (5) is fixed. A chute plate (11) is fixedly installed, and a chute is provided on the outer side of the chute plate (11), and the chute is inclined from bottom to top toward one side of the winding core mechanism (3), a slide rod (10) is slidably installed at the chute of the chute plate (11), and a pressing roller (13) is fixedly installed on the outer side of the slide rod (10), and an annular groove is uniformly provided on the outer side of the pressing roller (13) along the axial direction, and a rubber gasket (8) is fixedly installed at the annular groove of the pressing roller (13), and a support rod (12) is fixedly installed on the side of the horizontal top plate (9) close to the chute plate (5), and the outer side of the support rod (12) is slidably adapted to the inner wall of the chute plate (5).
2. The winding equipment for processing stainless steel white coils according to claim 1, characterized in that: The winding core mechanism (3) includes an inner turntable (31), the inner turntable (31) is fixedly connected to the output end of the motor (4) at a center position close to one side of the motor (4), and the outer side of the inner turntable (31) is evenly provided with rotation grooves, and a rotation column (33) is rotatably installed at the rotation groove of the inner turntable (31), and the inner turntable (31) is rotatably adapted to the inner wall of the frame (1) through the rotation column (33).
3. The winding equipment for processing stainless steel white coils according to claim 2, characterized in that: A clamping groove cylinder (32) is fixedly mounted at the center of the inner rotating disk (31) away from the motor (4), and a clamping roll cylinder (34) is fixedly mounted at one end of the clamping groove cylinder (32) away from the inner rotating disk (31), with a through groove being formed on the outer side of the clamping roll cylinder (34).
4. The winding equipment for processing stainless steel white coils according to claim 3, characterized in that: Rotating blocks (36) are rotatably mounted on both ends of the inner wall of the card reel (34), and a rotating shaft (38) is fixedly mounted on the inner wall of the rotating block (36). The end of the rotating shaft (38) away from the motor (4) passes through the card reel (34) and extends to the outside, and a hexagonal block (35) is fixedly mounted on the end of the rotating shaft (38) away from the motor (4).
5. The winding equipment for processing stainless steel white coils according to claim 4, characterized in that: An inner clamping column (37) is fixedly mounted on the outer side of the rotating shaft (38), the inner clamping column (37) is located between the rotating blocks (36), and the outer side of the inner clamping column (37) is rotationally adapted to the inner wall of the clamping drum (34), the side of the inner clamping column (37) close to the through groove is an arc surface and is evenly provided with grooves, and protrusions (39) are fixedly mounted on both sides of the inner wall of the inner clamping column (37).
6. The winding equipment for processing stainless steel white coils according to claim 1, characterized in that: The tensioning mechanism (2) comprises a side plate (201), the bottom of the side plate (201) is fixedly connected to the inner wall of the frame (1), and the number of the side plates (201) is two, a straight sliding groove is provided on the outer side of the side plate (201) close to the winding core mechanism (3), and an inclined groove is provided on the outer side of the side plate (201) away from the winding core mechanism (3), and the inclined groove is inclined from top to bottom toward the side of the winding core mechanism (3).
7. The winding equipment for processing stainless steel white coils according to claim 6, characterized in that: Rollers (209) are rotatably mounted between the side plates (201), rubber cylinders (208) are evenly mounted axially on the outer sides of the rollers (209), the inner walls of the rubber cylinders (208) are fixedly connected to the outer sides of the rollers (209), and cylinders (202) are fixedly mounted on non-opposite surfaces of the side plates (201).
8. The winding equipment for processing stainless steel white coils according to claim 7, characterized in that: An end cover (203) is fixedly mounted on the output end of the cylinder (202), and the end cover (203) is slidably mounted on the inclined groove of the side plate (201). A pressure roller (205) is rotatably mounted between the end covers (203), and the pressure roller (205) is located obliquely above the side of the rotating roller (209) away from the winding core mechanism (3).
9. The winding device for processing stainless steel white coils according to claim 6, characterized in that: A tensioning roller (206) is installed between the side plates (201), and a sliding sleeve (210) is fixedly installed at both ends of the tensioning roller (206). The tensioning roller (206) is slidably adapted to the straight sliding groove of the side plate (201) through the sliding sleeve (210), and a rubber wheel (207) is rotatably installed on the outer side of the tensioning roller (206). The rubber wheel (207) is evenly installed on the outer side of the tensioning roller (206) along the axial direction, and an elastic ring (204) is clamped at the straight sliding groove of the side plate (201).
10. The winding method of a stainless steel white coil winding device according to any one of claims 1 to 9, characterized in that: It consists of the following steps: S1, coil insertion, the worker inserts the white leather coil to be rolled into the equipment, so that the coil first passes through the tensioning mechanism (2), then passes through the bottom of the winding core mechanism (3), and finally passes between the winding core mechanism (3) and the pressing roller (13); S2, the coil is fixed. After the coil is passed through the equipment, one end of the coil is inserted into the winding core mechanism (3). Then the worker adjusts the winding core mechanism (3) so that the winding core mechanism (3) fixes one end of the coil; S3, coiling the material, the motor (4) drives the winding core mechanism (3) to rotate, and the winding core mechanism (3) is fixed to one end of the coil, so that the coil is rolled outside the winding core mechanism (3), and at the same time, during the rolling process, the tensioning mechanism (2) cooperates with the pressing roller (13) to press the rolled material; S4, coil unloading, when the coil is rolled to a certain thickness on the outside of the winding core mechanism (3), the worker adjusts the winding core mechanism (3) to release the fixation between the winding core mechanism (3) and one end of the coil, and then takes the coil out through the transfer equipment.
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CN121626747A