A high-carbon steel coil polishing device for textile use

By introducing vacuum channels and waste peeling modules into the high-carbon steel coil polishing device for textiles, the problem of waste flying randomly during the polishing process is solved, and automatic waste removal is achieved, ensuring clean work environment and improving the practicality of the device.

CN119328662BActive Publication Date: 2025-08-01苏州创镕新材料科技有限公司
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Patent Information

Application Number
CN202411875258.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-08-01
Estimated Expiration
2044-12-19

AI Technical Summary

Technical Problem

Most existing high-carbon steel coil polishing devices for textiles are open, and a large amount of waste is generated during the polishing process, which pollutes the working environment and affects health, and is low in practicality.

Method used

A device containing a polishing module and a waste peeling module is designed. The polishing waste is collected using vacuum channels and waste peeling modules, and the automatic removal of waste is achieved through the rotating unit and the decontamination unit to ensure a clean working environment.

Benefits of technology

Effectively prevent polishing waste from flying randomly, protect the working environment from pollution, improve the practicality of the device, and reduce the subsequent cleaning time and labor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a high-carbon steel coil polishing device for textile use, belonging to the technical field of steel coil polishing devices. It includes a bracket. An upper material rack, a guiding module and a polishing module are sequentially arranged from left to right at the upper end of the bracket. A pressing module is arranged on the side of the steel coil reel. A waste stripping module is arranged at the lower end of the polishing module. The polishing module includes an outer cover fixed to the bracket. The output end of the electric telescopic rod is fixedly connected with a bearing frame. A plurality of supports are fixedly connected to the other wall surface of the bearing frame. A polishing roller is rotatably connected to the support. A motor one is fixedly connected to one side of the support. The rotating part of the motor one is connected to one end of the polishing roller. The present invention solves the problem that most of the existing high-carbon steel coil polishing devices for textile use are open-set, a large amount of waste flies around during the polishing process, thereby causing pollution to the surrounding working environment, which will not only affect physical health, but also require time to clean up later, and the practicality is relatively low.
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Description

Technical Field

[0001] The invention belongs to the technical field of polishing devices for steel coils, and particularly relates to a polishing device for high-carbon steel coils used in textiles. Background Art

[0002] In the trend of high-speed, high-efficiency, and high-precision development in the textile machinery industry, the requirements for the materials of key components are getting higher and higher. High-carbon steel coils can be used to prepare textile machinery equipment. High-carbon steel coils have advantages such as wear resistance and high precision. Textile machinery prepared using high-carbon steel coils has also been greatly improved in terms of wear resistance and other properties. During the production process of high-carbon steel coils, it is necessary to polish the surface of the steel coils to ensure that the steel coils meet the preparation requirements of textile machinery.

[0003] Most of the existing polishing devices for high-carbon steel coils used in textiles are open. During the polishing process, a large amount of waste materials fly around, resulting in pollution of the surrounding working environment. This not only affects physical health but also requires time for cleaning later, with relatively low practicality. Summary of the Invention

[0004] The invention provides a polishing device for high-carbon steel coils used in textiles, aiming to solve the problem that most of the existing polishing devices for high-carbon steel coils used in textiles are open, a large amount of waste materials fly around during the polishing process, resulting in pollution of the surrounding working environment, which not only affects physical health but also requires time for cleaning later, with relatively low practicality.

[0005] An embodiment of the invention provides a polishing device for high-carbon steel coils used in textiles, including a bracket. An upper feeding frame, a guiding module, and a polishing module are sequentially arranged from left to right at the upper end of the bracket. A steel coil reel is detachably arranged on the upper feeding frame. A pressing module is arranged on the side of the steel coil reel. A waste material stripping module is arranged at the lower end of the polishing module;

[0006] The polishing module includes an outer cover fixed to the bracket. Electric telescopic rods are fixed to the upper and lower wall surfaces inside the outer cover. The output end of the electric telescopic rod is fixed to a carrier. A plurality of supports are fixed to the other wall surface of the carrier. A polishing roller is rotatably connected to the support. A motor one is fixed to one side of the support. The rotating part of the motor one is connected to one end of the polishing roller.

[0007] Furthermore, the polishing module further includes a pair of suspension rods fixedly connected to the inner upper wall surface of the outer cover in a mirror image manner. The lower ends of the suspension rods are fixedly connected to a square channel. A plurality of dust suction ports are reserved inside the square channel. Two pairs of horizontal channels are connected to both sides of the square channel in a mirror image manner. A plurality of inclined channels are connected to the horizontal channels at equal intervals. The inclined channels are arranged obliquely towards the steel coil. The inclined channels are located between the polishing rollers. The lower ends of a pair of the square channels are connected through a first communication channel. The middle of the first communication channel is connected to a second communication channel.

[0008] Furthermore, the waste stripping module includes an air inlet channel, an air outlet channel and a stripping cylinder. The air inlet channel is connected to the second communication channel. The air inlet channel and the air outlet channel are respectively fixedly connected to the vertical two ends of the stripping cylinder. An assembly bin three, an assembly bin two and an assembly bin one are fixedly connected to the stripping cylinder. A rotating unit is arranged in the assembly bin two. A first stripping piece is arranged in the assembly bin three. A second stripping piece is arranged in the assembly bin one. A waste removing unit and a decontamination unit are arranged on the rotating unit. The waste removing unit includes a vertical moving part and a moving rod. The moving rods are arranged on both vertical sides of the vertical moving part in a mirror image manner. The moving rods are connected to the vertical moving part. The upper end of the moving rod above the vertical moving part passes through the first stripping piece and extends to the upper wall surface of the first stripping piece. The moving rod above the vertical moving part is movably connected to the first stripping piece. The lower end of the moving rod below the vertical moving part passes through the second stripping piece and extends to the lower wall surface of the second stripping piece. The moving rod below the vertical moving part is movably connected to the second stripping piece. The upper end of the moving rod above the vertical moving part and the lower end of the moving rod below the vertical moving part are both provided with rotating blades. A plurality of dredging rods adapted to the stripping openings on the first stripping piece and the second stripping piece are arranged on the rotating blades. The decontamination unit is movably arranged on the moving rod. Both ends of the decontamination unit cooperate with the first stripping piece and the second stripping piece respectively.

[0009] Furthermore, the vertical moving part includes a protective cover, a linear push rod, a movable piece and linkage bars arranged on both sides of the movable piece in a mirror image manner. The protective cover is connected to the rotating unit. Both ends of the linkage bar are respectively rotatably connected to the moving rod and the movable piece. The linear push rod is fixedly connected in the protective cover. The movable piece is fixedly connected to the output end of the linear push rod.

[0010] Furthermore, the rotating unit includes a motor three, a connecting bar, a rotating disc two, a rotating cylinder and a hoop arranged on the outer peripheral surface of the rotating cylinder. The motor three is fixedly connected to the lower end of the assembly bin two. The rotating disc two is fixedly connected to the rotating part of the motor three. The rotating cylinder is rotatably connected to the assembly bin two. The rotating disc two and the hoop are engaged with each other through a tooth profile. The connecting bars are arranged on both sides of the protective cover in a mirror image manner. Both ends of the connecting bar are respectively fixedly connected to the protective cover and the rotating cylinder;

[0011] A circular opening is reserved on the upper wall surface of the rotating cylinder. The lower end of the second assembly bin is fixedly connected with a restraining cylinder, and the restraining cylinder is movably arranged in the circular opening.

[0012] Further, a barrier sheet is arranged in the third assembly bin. The barrier sheet is fixedly connected to one side of the third assembly bin close to the peeling cylinder. A storage chamber is reserved between the barrier sheet and the outer peripheral surface of the third assembly bin. The first peeling sheet is arranged at the upper end of the barrier sheet, and the gap between the upper end of the first peeling sheet and the barrier sheet cooperates with the decontamination unit;

[0013] A bearing sheet is arranged inside the first assembly bin. The bearing sheet is fixedly connected to the lower end of the first assembly bin. A storage chamber is reserved between the bearing sheet and the outer peripheral surface of the first assembly bin. The second peeling sheet is fixedly connected to the upper end of the bearing sheet, and the gap between the upper wall surface of the second peeling sheet and the lower end of the first assembly bin cooperates with the decontamination unit.

[0014] Further, the decontamination unit includes a rotating strip, a traction strip, a decontamination strip, a traction part, a movable part, a helical beryllium copper wire and a moving platform. The traction part is arranged in the protective cover. The movable parts are mirror - arranged on the vertical two sides of the protective cover. The movable parts arranged on the vertical two sides of the protective cover are respectively movably arranged on the moving rods arranged on both sides of the protective cover. The moving platform is movably sleeved on the moving rods, and the moving platform is movably connected to the movable parts. The rotating strips are mirror - arranged on both sides of the movable parts, and the rotating strips mirror - arranged on both sides of the movable parts are rotatably connected to the movable parts. The decontamination strip is rotatably connected to one end of the rotating strip. Both ends of the traction strip are respectively rotatably connected to the other end of the rotating strip and the moving platform. The helical beryllium copper wire is sleeved on the outer peripheral surface of the moving rod, and both ends of the helical beryllium copper wire are respectively connected to the movable part and the moving platform.

[0015] Further, the traction part includes a second motor, a first rotating disk and movable rods arranged on both sides of the first rotating disk. The movable rods arranged on both sides of the first rotating disk are respectively connected to the movable parts arranged on the vertical two sides of the protective cover. The second motor is arranged in the protective cover. The first rotating disk is fixedly connected to the rotating part of the second motor. The first rotating disk and the movable rods arranged on both sides of the first rotating disk are respectively engaged with each other through teeth.

[0016] Further, the movable part includes a first hoop cylinder, a second hoop cylinder and a guiding column. Both ends of the guiding column are respectively fixedly connected to the first hoop cylinder and the second hoop cylinder. Both the first hoop cylinder and the second hoop cylinder are movably arranged on the moving rod, and the movable rod is fixedly connected to the first hoop cylinder.

[0017] Further, the moving platform is arranged between the first hoop cylinder and the second hoop cylinder. The moving platform is movably connected to the guiding column. The helical beryllium copper wire is arranged between the second hoop cylinder and the moving platform;

[0018] The inner surfaces of the first hoop cylinder and the second hoop cylinder are fixedly connected with protrusions, grooves are reserved on the variable rod, and the protrusions can be movably arranged in the grooves.

[0019] The beneficial effects of the present invention are as follows:

[0020] 1. By arranging the polishing module and the waste stripping module, the present invention can strip the waste generated during the polishing process, ensuring that the surrounding working environment will not be polluted, and it will not affect health. There is no need to spend time cleaning later, which greatly improves the practicability of the device.

[0021] 2. Through the cooperation of the vertical variable part, the variable rod, the rotating piece and the dredging rod adapted to the stripping port on the first stripping piece or the second stripping piece arranged on the rotating piece, the waste gathered in the stripping port can be pushed out. With the assistance of the decontamination unit, all the waste pushed out from the stripping port can be removed, ensuring the function of the first stripping piece and the second stripping piece to strip the waste. The rotating unit can drive the waste removal unit and the decontamination unit to rotate, ensuring that all the waste on the first stripping piece and the second stripping piece can be removed, ensuring the function of this device to strip the waste;

[0022] The linear push rod drives the movable piece to move, the movable piece drives one end of the linkage bar to move, and the movement of one end of the linkage bar drives the variable rod to move outward or inward, and then vertically changes the variable rod and the rotating piece at the head end of the variable rod, ensuring that the dredging rod on the rotating piece can be inserted into the stripping port to push out the waste inside the stripping port for decontamination by the decontamination unit;

[0023] The motor three drives the second rotating disc to rotate, the second rotating disc drives the hoop to rotate, the hoop drives the rotating cylinder to rotate, the rotating cylinder drives the connecting bar to rotate, the connecting bar drives the protective cover to rotate, and the protective cover drives the waste removal unit and the decontamination unit to rotate, ensuring that the waste removal unit and the decontamination unit can cooperate with each other to remove the waste gathered in the stripping port;

[0024] The installation of the constraint cylinder can not only guide the rotating cylinder, but also prevent the rotating cylinder from deviating from the moving track during rotation, ensuring the stable rotation of the rotating cylinder;

[0025] The storage room between the barrier sheet and the third assembly bin is used to store the waste removed from the first stripping piece, ensuring the stripping function of the first stripping piece for the waste;

[0026] The storage room reserved between the bearing sheet and the outer peripheral surface of the first assembly bin is used to store the waste removed from the second stripping piece, ensuring the stripping function of the first stripping piece for the waste;

[0027] The traction part then pulls the movable part towards the directions of the peeling sheet 1 and the peeling sheet 2. When the decontamination strip moves along the center of the peeling sheet 1 or the peeling sheet 2 towards the outside of the peeling sheet 1 or the peeling sheet 2, it will pull the rotating strip to rotate. The rotation of the rotating strip will pull the traction strip to move downward. The downward movement of the traction strip will pull the moving table to move downward along the moving rod. The downward movement of the moving table will press the helical beryllium copper wire. The shortening of the helical beryllium copper wire presses the decontamination strip, ensuring that the decontamination strip always adheres to and moves on the peeling sheet 1 or the peeling sheet 2, ensuring the decontamination effect of the decontamination strip. And the installation of the helical beryllium copper wire is for the decontamination strip to return to its original position;

[0028] The installation of the traction part enables the movable traction part to move vertically along the moving rod. The motor 2 drives the rotating disc 1 to rotate. The rotating disc 1 drives the movable rod to move. The movable rod drives the movable part to move;

[0029] The installation of the hoop cylinder 1, the hoop cylinder 2 and the guiding column is for the traction moving table and the decontamination strip to move along the moving rod, ensuring the decontamination function of the decontamination strip;

[0030] The installation of the circular opening and the boss ensures that the hoop cylinder 1 and the hoop cylinder 2 can rotate together with the moving rod, ensuring that the decontamination strip can always cooperate with the dredging rod on the rotating piece, enhancing the decontamination speed and function of the decontamination strip.

[0031] Other features and advantages of the present invention will be described in the following specification, and partly will become obvious from the specification, or will be understood by implementing the present invention. The objectives and other advantages of the present invention can be achieved and obtained through the structures specifically pointed out in the specification and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention. In the drawings:

[0033] Figure 1 is the front view structural schematic diagram of the embodiment of the present invention;

[0034] Figure 2 is the embodiment of the present invention Figure 1 of the enlarged structural schematic diagram at M;

[0035] Figure 3 is the internal structural schematic diagram of the polishing module of the embodiment of the present invention;

[0036] Figure 4 is the structural schematic diagram of the waste peeling module of the embodiment of the present invention;

[0037] Figure 5 is the cross-sectional structural schematic diagram of the waste peeling module of the embodiment of the present invention;

[0038] Figure 6 Schematic diagram of the assembly structure of the decontamination unit and the waste removal unit according to an embodiment of the present invention;

[0039] Figure 7 Schematic diagram of the structure of the waste removal unit according to an embodiment of the present invention;

[0040] Figure 8 According to an embodiment of the present invention Figure 7 Schematic diagram of the enlarged structure at position E;

[0041] Figure 9 Schematic diagram of the structure of the decontamination unit according to an embodiment of the present invention;

[0042] Figure 10 According to an embodiment of the present invention Figure 9 Schematic diagram of the enlarged structure at position G;

[0043] Figure 11 According to an embodiment of the present invention Figure 7 Schematic diagram of the enlarged structure at position F;

[0044] Figure 12 Schematic diagram of the structure of the traction part according to an embodiment of the present invention;

[0045] Figure 13 Schematic diagram of the cross-sectional structure of the stripping cylinder according to an embodiment of the present invention;

[0046] Figure 14 Schematic diagram of the structure of the rotating unit according to an embodiment of the present invention;

[0047] Reference numerals: 1, bracket; 2, loading rack; 3, steel coil reel; 4, pressing module; 5, guiding module; 6, polishing module; 7, waste stripping module; 41, rotating shaft; 42, torsion spring; 43, L-shaped rod; 44, pressing roller; 51, mounting rack; 52, guiding roller; 61, outer cover; 62, electric telescopic rod; 63, bearing rack; 64, support; 65, polishing roller; 66, motor 1; 67, suspension rod; 68, square channel; 69, horizontal channel; 610, inclined channel; 611, connecting channel 1; 612, connecting channel 2; 71, assembly bin 1; 7101, bearing piece; 72, assembly bin 2; 73, assembly bin 3; 731, barrier piece; 74, air inlet channel; 75, stripping cylinder; 76, air release channel; 77, waste removal unit; 771, protective cover; 772, rotating piece; 773, variable rod; 774, groove; 775, dredging rod; 776, vertical variable part; 777, linear push rod; 778, movable piece; 779, linkage bar; 78, decontamination unit; 781, traction part; 782, traction bar; 783, rotating bar; 784, decontamination bar; 785, helical beryllium copper wire; 786, variable table; 787, movable part; 788, protrusion; 789, motor 2; 7810, movable rod; 7811, rotating disk 1; 7812, hoop cylinder 1; 7813, guiding column; 7814, hoop cylinder 2; 79, rotating unit; 791, motor 3; 792, rotating disk 2; 793, connecting bar; 794, circular opening; 795, rotating cylinder; 796, hoop; 797, constraint cylinder; 710, stripping piece 1; 711, stripping piece 2; 712, square bar; 713, nylon thread; 714, high-pressure blower. Detailed implementation manners

[0048] In order to make the objectives, technical solutions, and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the specific embodiments of the present invention. The same reference numerals in the drawings represent the same components. It should be noted that the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0049] Refer to Figures 1 - 14 , an embodiment of the present invention provides a high-carbon steel coil polishing device for textile, which includes a bracket 1. The upper end of the bracket 1 is successively provided with a loading rack 2, a guiding module 5, and a polishing module 6 from left to right. A steel coil reel 3 is detachably installed on the loading rack 2. A pressing module 4 is installed on the side of the steel coil reel 3. A waste stripping module 7 is installed at the lower end of the polishing module 6.

[0050] Refer to Figure 1 And Figure 2, the pressing module 4 includes a rotating shaft 41 rotatably connected to the loading rack 2. A torsion spring 42 is clamped on the outer peripheral surface of the rotating shaft 41. An L-shaped rod 43 is arranged at the other end of the rotating shaft 41. The two ends of the torsion spring 42 are fixedly connected to the loading rack 2 and the L-shaped rod 43 respectively. A pressure roller 44 is rotatably connected to the L-shaped rod 43. The pressure roller 44 presses against the steel coil on the steel coil reel 3. With the cooperation of the torsion spring 42, the pressure roller 44 is always pressed against the steel coil on the steel coil reel 3 to ensure the normal progress of the polishing process.

[0051] Refer to Figure 1 , the guiding module 5 includes a mounting frame 51 fixedly connected to the support 1. A pair of guiding rollers 52 are rotatably connected to the mounting frame 51. The steel coil on the steel coil reel 3 passes through between the pair of guiding rollers 52 to realize the guiding of the steel coil and ensure that the steel coil moves to the polishing position in the polishing module 6, thereby ensuring the normal polishing of the steel coil.

[0052] Refer to Figure 1 And Figure 3 , the polishing module 6 includes an outer cover 61 fixedly connected to the support 1. Electric telescopic rods 62 are fixedly connected to the upper and lower wall surfaces inside the outer cover 61. The output end of the electric telescopic rod 62 is fixedly connected to a carrier 63. A plurality of supports 64 are fixedly connected to the other wall surface of the carrier 63. A polishing roller 65 is rotatably connected to the support 64. A motor one 66 is fixedly connected to one side of the support 64. The rotating part of the motor one 66 is connected to one end of the polishing roller 65. By extending the electric telescopic rod 62, the polishing roller 65 moves to the surface of the steel coil. The motor one 66 drives the polishing roller 65 to rotate, and the rotating polishing roller 65 polishes the moving steel coil.

[0053] Refer to Figure 3 , the polishing module 6 further includes a pair of suspension rods 67 fixedly connected to the upper wall surface inside the outer cover 61 in a mirror image manner. A square channel 68 is fixedly connected to the lower end of the suspension rod 67. A plurality of dust suction ports are reserved inside the square channel 68. Two pairs of horizontal channels 69 are connected to both sides of the square channel 68 in a mirror image manner. A plurality of inclined channels 610 are connected to the horizontal channels 69 at equal intervals. The inclined channels 610 are arranged obliquely towards the steel coil and are located between the polishing rollers 65. The lower ends of a pair of square channels 68 are connected through a connecting channel one 611. A connecting channel two 612 is connected to the middle of the connecting channel one 611. By providing a suction force through the waste stripping module 7, the square channel 68 sucks the waste generated by polishing to the connecting channel one 611 through the dust suction ports and the inclined channels 610, and then sucks the waste to the waste stripping module 7 through the connecting channel one 611 and the connecting channel two 612, so as to prevent the waste from flying around and polluting the surrounding working environment, and there is no need to perform manual cleaning of the waste subsequently.

[0054] Refer to Figure 4 And Figure 5, the waste stripping module 7 includes an air inlet channel 74, an air outlet channel 76 and a stripping cylinder 75. The air inlet channel 74 is connected to the communication channel II 612. The air inlet channel 74 and the air outlet channel 76 are respectively fixed to the vertical two ends of the stripping cylinder 75. The assembly bin III 73, the assembly bin II 72 and the assembly bin I 71 are fixed to the stripping cylinder 75. A rotating unit 79 is installed in the assembly bin II 72. The assembly bin II 72 is arranged to assemble the rotating unit 79 and may also protect the rotating unit 79. A first stripping piece 710 is installed in the assembly bin III 73, and a second stripping piece 711 is installed in the assembly bin I 71. A plurality of stripping openings are reserved on the first stripping piece 710 and the second stripping piece 711. The first stripping piece 710 and the second stripping piece 711 are arranged to strip the sundries in the sucked air, ensure the collection of the waste generated during the polishing of the steel coil, and then ensure the surrounding working environment. A waste removal unit 77 and a decontamination unit 78 are installed on the rotating unit 79. The rotating unit 79 is arranged to drive the waste removal unit 77 and the decontamination unit 78 to move. The cooperation of the waste removal unit 77 and the decontamination unit 78 can remove the waste collected in the stripping openings on the first stripping piece 710 and the second stripping piece 711, ensuring that the equipment can normally strip the air with waste.

[0055] Refer to Figure 6 And Figure 7 , the waste removal unit 77 includes a vertical moving part 776 and a moving rod 773. The moving rods 773 are mirror-installed on the vertical two sides of the vertical moving part 776. The moving rods 773 and the vertical moving part 776 are connected to each other. The upper end of the moving rod 773 installed above the vertical moving part 776 extends through the first stripping piece 710 to the upper wall surface of the first stripping piece 710. The moving rod 773 above the vertical moving part 776 is movably connected to the first stripping piece 710. The lower end of the moving rod 773 installed below the vertical moving part 776 extends through the second stripping piece 711 to the lower wall surface of the second stripping piece 711. The moving rod 773 below the vertical moving part 776 is movably connected to the second stripping piece 711. The upper end of the moving rod 773 installed above the vertical moving part 776 and the lower end of the moving rod 773 installed below the vertical moving part 776 are both provided with rotating blades 772. A plurality of dredging rods 775 adapted to the stripping openings on the first stripping piece 710 and the second stripping piece 711 are installed on the rotating blades 772. The decontamination unit 78 is movably installed on the moving rod 773. The two ends of the decontamination unit 78 cooperate with the first stripping piece 710 and the second stripping piece 711 respectively, and then ensure that the waste collected in the stripping openings on the first stripping piece 710 and the second stripping piece 711 can be removed.

[0056] Refer to Figure 8, the vertical moving part 776 includes a protective cover 771, a linear push rod 777, a movable piece 778, and linkage bars 779 symmetrically arranged on both sides of the movable piece 778. The protective cover 771 is connected to the rotating unit 79. Both ends of the linkage bar 779 are rotatably connected to the moving rod 773 and the movable piece 778 respectively. The linear push rod 777 is fixedly connected in the protective cover 771, and the movable piece 778 is fixedly connected to the output end of the linear push rod 777.

[0057] The linear push rod 777 drives the movable piece 778 to move. The movable piece 778 drives one end of the linkage bar 779 to move. The movement of one end of the linkage bar 779 drives the moving rod 773 to move outward or inward, and then vertically moves the moving rod 773 and the rotating piece 772 at the head end of the moving rod 773, ensuring that the cleaning rod 775 on the rotating piece 772 can be inserted into the peeling opening to push out the waste in the peeling opening for the decontamination of the decontamination unit 78.

[0058] Refer to Figure 14 , the rotating unit 79 includes a motor three 791, a connecting bar 793, a rotating disk two 792, a rotating cylinder 795, and a hoop 796 arranged on the outer peripheral surface of the rotating cylinder 795. The motor three 791 is fixedly connected to the lower end of the assembly bin two 72. The rotating disk two 792 is fixedly connected to the rotating part of the motor three 791. The rotating cylinder 795 is rotatably connected to the assembly bin two 72. A plurality of teeth are evenly reserved on the outer peripheral surfaces of the rotating disk two 792 and the hoop 796. The rotating disk two 792 and the hoop 796 are engaged with each other through the teeth. The connecting bars 793 are symmetrically arranged on both sides of the protective cover 771. Both ends of the connecting bar 793 are fixedly connected to the protective cover 771 and the rotating cylinder 795 respectively.

[0059] The motor three 791 drives the rotating disk two 792 to rotate. The rotating disk two 792 drives the hoop 796 to rotate. The hoop 796 drives the rotating cylinder 795 to rotate. The rotating cylinder 795 drives the connecting bar 793 to rotate. The connecting bar 793 drives the protective cover 771 to rotate. The protective cover 771 drives the waste removal unit 77 and the decontamination unit 78 to rotate, ensuring that the waste removal unit 77 and the decontamination unit 78 can cooperate with each other to remove the waste collected in the peeling opening.

[0060] Refer to Figure 13 And Figure 4 , a circular opening 794 is reserved on the upper wall surface of the rotating cylinder 795. The lower end of the assembly bin two 72 is fixedly connected with a restraint cylinder 797, and the restraint cylinder 797 is movably arranged in the circular opening 794.

[0061] The installation of the restraint cylinder 797 can not only guide the rotating cylinder 795 but also prevent the rotating cylinder 795 from deviating from the moving track during rotation, ensuring the smooth rotation of the rotating cylinder 795.

[0062] Refer to Figure 13, a barrier sheet 731 is installed in the third assembly bin 73. The barrier sheet 731 is fixedly connected to one side of the third assembly bin 73 close to the peeling cylinder 75. A storage chamber is reserved between the barrier sheet 731 and the outer peripheral surface of the third assembly bin 73. A first peeling sheet 710 is installed at the upper end of the barrier sheet 731. The gap between the first peeling sheet 710 and the upper end of the barrier sheet 731 cooperates with the decontamination unit 78.

[0063] The storage chamber between the barrier sheet 731 and the third assembly bin 73 is used to store the waste removed from the first peeling sheet 710, ensuring the peeling function of the first peeling sheet 710 for the waste.

[0064] Refer to Figure 13 , a bearing sheet 7101 is installed inside the first assembly bin 71. The bearing sheet 7101 is fixedly connected to the lower end of the first assembly bin 71. A storage chamber is reserved between the bearing sheet 7101 and the outer peripheral surface of the first assembly bin 71. A second peeling sheet 711 is fixedly connected to the upper end of the bearing sheet 7101. The gap between the upper wall surface of the second peeling sheet 711 and the lower end of the first assembly bin 71 cooperates with the decontamination unit 78.

[0065] The storage chamber reserved between the bearing sheet 7101 and the outer peripheral surface of the first assembly bin 71 is used to store the waste removed from the second peeling sheet 711, ensuring the peeling function of the first peeling sheet 710 for the waste.

[0066] Refer to Figure 9 , the decontamination unit 78 includes a rotating bar 783, a traction bar 782, a decontamination bar 784, a traction part 781, a movable part 787, a helical beryllium copper wire 785 and a moving table 786. The traction part 781 is installed in the protective cover 771. The movable parts 787 are symmetrically installed on both vertical sides of the protective cover 771. The movable parts 787 installed on both vertical sides of the protective cover 771 are respectively movably installed on the moving rods 773 installed on both sides of the protective cover 771. The moving table 786 is movably sleeved on the moving rods 773. The moving table 786 is movably connected to the movable parts 787. The rotating bars 783 are symmetrically installed on both sides of the movable parts 787. The rotating bars 783 symmetrically installed on both sides of the movable parts 787 are rotatably connected to the movable parts 787. The decontamination bar 784 is rotatably connected to one end of the rotating bar 783. Both ends of the traction bar 782 are respectively rotatably connected to the other end of the rotating bar 783 and the moving table 786. The helical beryllium copper wire 785 is sleeved on the outer peripheral surface of the moving rod 773. Both ends of the helical beryllium copper wire 785 are respectively connected to the movable parts 787 and the moving table 786. The movable parts 787 installed on both vertical sides of the protective cover 771 by the traction part 781 approach the positions of the first peeling sheet 710 and the second peeling sheet 711 until the decontamination bar 784 touches the first peeling sheet 710 or the second peeling sheet 711, ensuring that the dredging rod 775 can push out the waste from the peeling port for decontamination.

[0067] The traction part 781 then moves the traction moving part 787 closer to the directions of the release sheet 1 710 and the release sheet 2 711. When the decontamination strip 784 moves along the center of the release sheet 1 710 or the release sheet 2 711 towards the outside of the release sheet 1 710 or the release sheet 2 711, it will drive the rotation bar 783 to rotate. The rotation of the rotation bar 783 will drive the traction bar 782 to move downward. The downward movement of the traction bar 782 will drive the moving platform 786 to move downward along the moving rod 773. The downward movement of the moving platform 786 will compress the helical beryllium copper wire 785. The shortening of the helical beryllium copper wire 785 compresses the decontamination strip 784, ensuring that the decontamination strip 784 always adheres to and moves on the release sheet 1 710 or the release sheet 2 711, ensuring the decontamination function of the decontamination strip 784. And the helical beryllium copper wire 785 is installed so that the decontamination strip 784 can return to its original position.

[0068] Refer to Figure 12 , the traction part 781 includes the motor 2 789, the rotating disk 1 7811 and the movable rods 7810 installed on both sides of the rotating disk 1 7811. The movable rods 7810 installed on both sides of the rotating disk 1 7811 are respectively connected to the moving parts 787 installed on the vertical sides of the protective cover 771. The motor 2 789 is installed in the protective cover 771. The rotating disk 1 7811 is fixedly connected to the rotating part of the motor 2 789. A plurality of notches are reserved at equal intervals on the outer peripheral surface of the rotating disk 1 7811. A plurality of notches are reserved at equal intervals on one wall surface of the movable rod 7810. The rotating disk 1 7811 and the movable rods 7810 installed on both sides of the rotating disk 1 7811 are engaged with each other through the notches.

[0069] The installation of the traction part 781 enables the movable traction moving part 787 to move vertically along the moving rod 773. The motor 2 789 drives the rotating disk 1 7811 to rotate. The rotating disk 1 7811 drives the movable rod 7810 to move. The movable rod 7810 drives the moving part 787 to move.

[0070] Refer to Figure 11 , the moving part 787 includes the hoop cylinder 1 7812, the hoop cylinder 2 7814 and the guide post 7813. The two ends of the guide post 7813 are respectively fixedly connected to the hoop cylinder 1 7812 and the hoop cylinder 2 7814. The hoop cylinder 1 7812 and the hoop cylinder 2 7814 are both movably installed on the moving rod 773. The movable rod 7810 is fixedly connected to the hoop cylinder 1 7812.

[0071] The installation of the hoop cylinder 1 7812, the hoop cylinder 2 7814 and the guide post 7813 enables the traction moving platform 786 and the decontamination strip 784 to move along the moving rod 773, ensuring the decontamination function of the decontamination strip 784.

[0072] Refer to Figure 10, a boss 788 is fixedly connected to the inner surfaces of the first hoop cylinder 7812 and the second hoop cylinder 7814. A groove 774 is reserved on the movable rod 773. The boss 788 can be movably arranged in the groove 774. The arrangement of the boss 788 and the groove 774 can ensure that the first hoop cylinder 7812 and the second hoop cylinder 7814 always follow the movable rod 773 during the movement, and can also ensure that the first hoop cylinder 7812 and the second hoop cylinder 7814 always rotate together with the movable rod 773 during the rotation, ensuring that the decontamination strip 784 can always remove all the waste materials ejected by the dredging rod 775 on the rotating piece 772, thereby ensuring the speed of waste material removal.

[0073] Refer to Figure 11 , a movable table 786 is arranged between the first hoop cylinder 7812 and the second hoop cylinder 7814. The movable table 786 is movably connected to the guide post 7813. A spiral beryllium copper wire 785 is arranged between the second hoop cylinder 7814 and the movable table 786. The spiral beryllium copper wire 785 is used to press the decontamination strip 784 to ensure that the decontamination strip 784 always closely adheres to the walls of the first peeling piece 710 and the second peeling piece 711 when removing the waste materials on the walls of the first peeling piece 710 and the second peeling piece 711, ensuring the waste material removal effect.

[0074] The arrangement of the circular opening 794 and the boss 788 ensures that the first hoop cylinder 7812 and the second hoop cylinder 7814 can rotate together with the movable rod 773, ensuring that the decontamination strip 784 can always cooperate with the dredging rod 775 on the rotating piece 772, enhancing the speed and function of the decontamination strip 784 in removing dirt.

[0075] Refer to Figure 5 , the waste material peeling module 7 further includes a square strip 712. The square strip 712 is fixedly connected to the connecting strip 793. The two ends of the square strip 712 respectively extend along the peeling cylinder 75 towards the two ends of the peeling cylinder 75. A plurality of groups of nylon threads 713 are reserved at equal intervals on the wall of the square strip 712 close to the peeling cylinder 75.

[0076] The square strip 712 rotates under the traction of the connecting strip 793. The square strip 712 pulls the nylon threads 713 to be in contact with the inner surface of the peeling cylinder 75, thereby removing the waste materials adhered to the inner surface of the peeling cylinder 75 and the accumulated waste materials, preventing the waste materials from adhering to the inner surface of the peeling cylinder 75 and affecting the waste material peeling effect of the peeling cylinder 75 on the waste materials in the air.

[0077] )]]Refer to Figure 3 , the lower end of the air release channel 76 is connected to a high-pressure blower 714. The high-pressure blower 714 can provide strong suction force, thereby sucking away the waste materials generated by polishing.

[0078] The implementation method is specifically as follows: During operation, the pressure roller 44 is toggled, and the coil reel 3 with the steel coil is installed on the loading rack 2. Then the pressure roller 44 is loosened. With the cooperation of the torsion spring 42, the pressure roller 44 presses tightly on the steel coil on the coil reel 3. One side of the steel coil is pulled and sequentially passes through the guiding module 5 and the polishing module 6. The electric telescopic rod 62 extends, causing the polishing roller 65 to move to the surface of the steel coil. The motor 66 drives the polishing roller 65 to rotate, and the rotating polishing roller 65 polishes the moving steel coil. During polishing, the high-pressure blower 714 operates. The square channel 68 sucks the waste generated by polishing into the connecting channel 611 through the dust suction port and the inclined channel 610, and then sucks the waste into the waste stripping module 7 through the connecting channel 611 and the connecting channel 612. The waste stripping module 7 strips the waste sucked into the air;

[0079] When the waste stripping module 7 is operating, at the beginning, the rotating piece 772 is separated from the stripping piece 710 or the stripping piece 711. The hoop cylinder 7812 is on the side close to the protective cover 771, and the decontamination strip 784 is at the center close to the stripping piece 710 or the stripping piece 711;

[0080] During operation, the linear push rod 777 drives the movable piece 778 to change. The movable piece 778 drives the linkage bar 779 to change. The linkage bar 779 drives the changing rod 773 to move towards the center of the protective cover 771. The changing of the changing rod 773 towards the center drives the rotating piece 772 at the head end of the changing rod 773 to move towards the stripping piece 710 or the stripping piece 711 until the dredging rod 775 on the rotating piece 772 is inserted into the stripping port on the stripping piece 710 or the stripping piece 711, and the waste accumulated in the stripping port is ejected from the stripping port;

[0081] The second motor 789 drives the first rotating disk 7811 to rotate. The movable rods 7810 on both sides of the first rotating disk 7811 each change towards the vertical two sides. The movable rods 7810 drive the first hoop cylinder 7812 to change along the changing rod 773 towards the side away from the protective cover 771. The first hoop cylinder 7812 drives the guiding column 7813, the second hoop cylinder 7814, the traction strip 782, the rotating strip 783, the changing table 786, the helical beryllium copper wire 785 and the decontamination strip 784 to change towards the side away from the protective cover 771. Then the first hoop cylinder 7812 continues to change to make the decontamination strip 784 change from the center of the first peeling piece 710 or the second peeling piece 711 towards the side of the first peeling piece 710 or the second peeling piece 711, and then removes the waste ejected from the peeling port by the dredging rod 775 to the storage room reserved between the blocking piece 731 and the outer peripheral surface of the third assembly bin 73 or the storage room reserved between the bearing piece 7101 and the outer peripheral surface of the first assembly bin 71, ensuring the function of the first peeling piece 710 and the second peeling piece 711 to peel off waste. During the change of the decontamination strip 784 towards the side of the first peeling piece 710 or the second peeling piece 711, the rotating strip 783 is driven to rotate around the connection point of the rotating strip 783 and the second hoop cylinder 7814. The rotation of the rotating strip 783 drives the traction strip 782 to approach the second hoop cylinder 7814. The approach of the traction strip 782 to the second hoop cylinder 7814 drives the changing table 786 to approach the second hoop cylinder 7814. The approach of the changing table 786 to the second hoop cylinder 7814 compresses the helical beryllium copper wire 785. Since the helical beryllium copper wire 785 is always in a compressed state, the helical beryllium copper wire 785 exerts a force on the changing table 786 to change it towards the direction away from the second hoop cylinder 7814, enabling the traction strip 782 to drive one end of the rotating strip 783 to rotate around the connection point of the rotating strip 783 and the second hoop cylinder 7814, ensuring that the decontamination strip 784 is always in close contact with the first peeling piece 710 or the second peeling piece 711 during use and ensuring the decontamination function of the decontamination strip 784;

[0082] When the decontamination strip 784 changes from the center of the first peeling piece 710 or the second peeling piece 711 to the side, the waste at this position of the first peeling piece 710 and the second peeling piece 711 is removed. Then the second motor 789 rotates reversely to drive the decontamination strip 784 to return. The linear push rod 777 shortens to drive the changing rod 773 to change towards the side away from the protective cover 771 until the dredging rod 775 on the rotating piece 772 moves out of the peeling port;

[0083] The third motor 791 drives the second rotating disk 792 to rotate. The second rotating disk 792 drives the hoop 796 to rotate. The hoop 796 drives the rotating cylinder 795 to rotate. The rotating cylinder 795 drives the connecting strip 793 to rotate. The connecting strip 793 drives the protective cover 771 to rotate, and the protective cover 771 rotates to turn the waste removal unit 77 and the decontamination unit 78 to another position;

[0084] After the waste removal unit 77 and the decontamination unit 78 have completed rotation, then by repeating the above actions, decontamination can be performed on the stripping openings at the remaining positions of the first stripping sheet 710 and the second stripping sheet 711. The decontamination operation of this device does not need to be performed with the device shut down, ensuring the stripping speed of waste in the air and at the same time ensuring the stripping function for waste in the air;

[0085] In addition, during the rotation of the connecting strip 793, the square strip 712 can be driven to rotate. The square strip 712 drives the nylon thread 713 on the square strip 712 to rotate. The nylon thread 713 is in contact with the inner surface of the stripping cylinder 75, achieving the function of decontaminating the inner surface of the stripping cylinder 75 and preventing waste from adhering to the inner surface of the stripping cylinder 75 and reducing the stripping function for waste in the air.

[0086] The above has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A high-carbon steel coil polishing device for textile use, comprising a bracket, characterized in that, At the upper end of the bracket, a loading rack, a guiding module, and a polishing module are successively arranged from left to right. A steel coil reel is detachably arranged on the loading rack. A pressing module is arranged on the side of the steel coil reel. A waste stripping module is arranged at the lower end of the polishing module; The polishing module includes an outer cover fixed to the bracket. Electric telescopic rods are fixed to the upper and lower wall surfaces inside the outer cover. The output end of the electric telescopic rod is fixed to a carrier. A plurality of supports are fixed to the other wall surface of the carrier. A polishing roller is rotatably connected to the support. A motor one is fixed to one side of the support. The rotating part of the motor one is connected to one end of the polishing roller; The waste stripping module includes an air inlet channel, an air outlet channel, and a stripping cylinder. The air inlet channel and the air outlet channel are respectively fixed to the vertical two ends of the stripping cylinder. An assembly bin three, an assembly bin two, and an assembly bin one are fixed to the stripping cylinder. A rotating unit is arranged in the assembly bin two. A stripping piece one is arranged in the assembly bin three. A stripping piece two is arranged in the assembly bin one. A waste removing unit and a decontamination unit are arranged on the rotating unit. The waste removing unit includes a vertical moving part and a moving rod. The moving rods are mirror-symmetrically arranged on the vertical two sides of the vertical moving part. The moving rod and the vertical moving part are connected to each other. The upper end of the moving rod arranged above the vertical moving part extends through the stripping piece one to the upper wall surface of the stripping piece one. The moving rod above the vertical moving part is movably connected to the stripping piece one. The lower end of the moving rod arranged below the vertical moving part extends through the stripping piece two to the lower wall surface of the stripping piece two. The moving rod below the vertical moving part is movably connected to the stripping piece two. The upper end of the moving rod arranged above the vertical moving part and the lower end of the moving rod arranged below the vertical moving part are both provided with rotating pieces. A plurality of dredging rods adapted to the stripping openings on the stripping piece one and the stripping piece two are arranged on the rotating pieces. The decontamination unit is movably arranged on the moving rod. The two ends of the decontamination unit respectively cooperate with the stripping piece one and the stripping piece two; A blocking piece is arranged in the assembly bin three. The blocking piece is fixed to the side of the assembly bin three close to the stripping cylinder. A storage chamber is reserved between the blocking piece and the outer peripheral surface of the assembly bin three. The stripping piece one is arranged at the upper end of the blocking piece. The gap between the stripping piece one and the upper end of the blocking piece cooperates with the decontamination unit; A bearing piece is arranged inside the assembly bin one. The bearing piece is fixed to the lower end of the assembly bin one. A storage chamber is reserved between the bearing piece and the outer peripheral surface of the assembly bin one. The stripping piece two is fixed to the upper end of the bearing piece. The gap between the upper wall surface of the stripping piece two and the lower end of the assembly bin one cooperates with the decontamination unit; The decontamination unit includes a rotating bar, a traction bar, a decontamination bar, a traction part, a movable part, a spiral beryllium copper wire, and a movable table. The traction part is installed in the protective cover. The movable parts are mirror-installed on both vertical sides of the protective cover. The movable parts installed on both vertical sides of the protective cover are respectively movably installed on the movable rods installed on both sides of the protective cover. The movable table is movably clamped on the movable rod. The movable table and the movable part are movably connected. The rotating bars are mirror-installed on both sides of the movable part. The rotating bars mirror-installed on both sides of the movable part are rotatably connected to the movable part. The decontamination bar is rotatably connected to one end of the rotating bar. Both ends of the traction bar are respectively rotatably connected to the other end of the rotating bar and the movable table. The spiral beryllium copper wire is clamped on the outer peripheral surface of the movable rod. Both ends of the spiral beryllium copper wire are respectively connected to the movable part and the movable table; The movable table is installed between the first clamping cylinder and the second clamping cylinder. The movable table is movably connected to the guide post. The spiral beryllium copper wire is installed between the second clamping cylinder and the movable table; The vertical moving part includes a protective cover. The protective cover is connected to the rotating unit. The rotating unit includes connecting bars. The connecting bars are mirror-installed on both sides of the protective cover; The waste stripping module further includes a square bar. The square bar is fixedly connected to the connecting bar. Both ends of the square bar respectively extend along the stripping cylinder towards both ends of the stripping cylinder. Multiple groups of nylon wires are reserved at equal intervals on the wall surface of the square bar close to the stripping cylinder.

2. The high-carbon steel coil polishing device for textile according to claim 1, characterized in that: The polishing module further includes a pair of suspension rods fixedly connected to the upper wall surface inside the outer cover. The lower ends of the suspension rods are fixedly connected to a square channel. Multiple dust suction ports are reserved inside the square channel. Two pairs of horizontal channels are mirror-connected to both sides of the square channel. Multiple inclined channels are connected at equal intervals to the horizontal channels. The inclined channels are arranged obliquely towards the steel coil. The inclined channels are located between the polishing rollers. The lower ends of a pair of square channels are connected through a first connecting channel. The center of the first connecting channel is connected to a second connecting channel, and the air inlet channel is connected to the second connecting channel.

3. A high-carbon steel coil polishing device for textile use according to claim 1, characterized in that: The vertical moving part further includes a linear push rod, a movable piece, and linkage bars mirror-installed on both sides of the movable piece. Both ends of the linkage bars are respectively rotatably connected to the movable rod and the movable piece. The linear push rod is fixedly connected in the protective cover. The movable piece is fixedly connected to the output end of the linear push rod.

4. A high-carbon steel coil polishing device for textile use according to claim 3, characterized in that: The rotating unit further includes a motor three, a rotating disc two, a rotating cylinder, and a clamping ring installed on the outer peripheral surface of the rotating cylinder. The motor three is fixedly connected to the lower end of the assembly bin two. The rotating disc two is fixedly connected to the rotating part of the motor three. The rotating cylinder is rotatably connected to the assembly bin two. The rotating disc two and the clamping ring are engaged with each other through teeth. Both ends of the connecting bar are respectively fixedly connected to the protective cover and the rotating cylinder; A circular opening is reserved on the upper wall surface of the rotating cylinder. The lower end of the assembly bin two is fixedly connected to a restraint cylinder. The restraint cylinder is movably installed in the circular opening.

5. A high-carbon steel coil polishing device for textile use according to claim 1, characterized in that: The traction part includes a motor two, a rotating disc one, and movable rods installed on both sides of the rotating disc one. The movable rods installed on both sides of the rotating disc one are respectively connected to the movable parts installed on both vertical sides of the protective cover. The motor two is installed in the protective cover. The rotating disc one is fixedly connected to the rotating part of the motor two. The rotating disc one and the movable rods installed on both sides of the rotating disc one are engaged with each other through teeth.

6. The high-carbon steel coil polishing device for textile according to claim 5, characterized in that: The movable part includes a first clamping cylinder, a second clamping cylinder, and a guide post. Both ends of the guide post are respectively fixedly connected to the first clamping cylinder and the second clamping cylinder. Both the first clamping cylinder and the second clamping cylinder are movably installed on the movable rod. The movable rod is fixedly connected to the first clamping cylinder.

7. A high-carbon steel coil polishing device for textile use according to claim 6, characterized in that: The inner surfaces of the first hoop cylinder and the second hoop cylinder are fixedly connected with bosses, and grooves are reserved on the movable rod, and the bosses can be movably arranged in the grooves.

Citation Information

Patent Citations

  • Abrasive cloth wheel polishing machine for double-sided curve grinding and polishing method of abrasive cloth wheel polishing machine

    CN113601377A

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    CN216066948U