Carding device for producing anti-bacterial and anti-static fiber textile fabric

CN120465263BActive Publication Date: 2026-09-29JIANGSU SENJO TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202510919405.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2026-09-29
Estimated Expiration
2045-07-04

AI Technical Summary

Benefits of technology

一、该具有抗菌防静电功能纤维纺织面料生产用梳理装置,通过上下转筒同步运转,可同时对面料正反两面进行梳理,减少了翻面工序和设备占地面积,适合连续化、规模化生产,并且转筒表面的凸块能够深入面料纤维层,通过挤压、揉搓和分离作用,有效解开纤维纠缠,去除内部杂质和短绒,使得面料平整度和光洁度更佳。

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Abstract

The application discloses a carding device for producing antibacterial and antistatic functional fiber textile fabric, and relates to the technical field of textile fabric production. The carding device comprises a rotating shaft, a rotating drum is fixedly connected to the outer side of the rotating shaft, the number of the rotating shafts is two, the two rotating shafts are symmetrically arranged in the vertical direction with the through hole as the center, the outer side of the rotating drum is fixedly connected with protrusions, the number of the protrusions is multiple, the multiple protrusions are divided into multiple groups, and the multiple groups of protrusions are uniformly distributed on the outer side of the rotating drum in the axial direction. The carding device for producing antibacterial and antistatic functional fiber textile fabric can simultaneously card the front and back surfaces of the fabric through the synchronous operation of the upper and lower rotating drums, reduces the surface turning process and the equipment floor area, is suitable for continuous and large-scale production, and the protrusions on the surface of the rotating drum can penetrate into the fiber layer of the fabric, effectively untangle the fiber entanglement, and remove the internal impurities and short fibers through the extrusion, rubbing and separation effects.
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Description

Technical Field

[0001] This invention relates to the field of textile fabric production technology, specifically to a combing device for producing antibacterial and antistatic fiber textile fabrics. Background Technology

[0002] Textile finishing is a technical process that imparts color effects, shape effects (smoothness, nap, crispness, etc.), and practical effects (waterproof, non-felt, wrinkle-free, mothproof, flame-retardant, etc.) to fabrics. Fabric finishing is a process that improves the appearance and feel of fabrics, enhances their performance, or endows them with special functions through chemical or physical methods. It is a finishing process that "adds the finishing touch" to textiles. Finishing methods can be divided into two main categories: physical or mechanical finishing and chemical finishing. According to the purpose of finishing and the different effects produced, it can be divided into basic finishing, appearance finishing, and functional finishing. The purpose of finishing is to make the textiles uniform in width, stable in size and shape, improve the feel of textiles, enhance the durability of textiles, and endow textiles with special properties.

[0003] When textile machines are producing textiles, it is inevitable that a large amount of wool, velvet, and other debris will adhere to the surface of the fabric. If these debris are not removed, they will affect the quality of the textiles and cause trouble for workers in subsequent processing. Summary of the Invention

[0004] To achieve the above objectives, the present invention is implemented through the following technical solution: a combing device for producing antibacterial and antistatic fiber textile fabrics, comprising a platform, a housing fixedly connected to the top center of the platform, and a through hole opened on the outer side of the housing; The winding assembly is fixedly installed on the top of the platform, and a motor is installed on the outside of the winding assembly; The leveling component is rotatably mounted inside the housing; The combing assembly is rotatably mounted inside the housing. The combing assembly includes a rotating shaft rotatably connected to the housing. Two rotating shafts are fixedly connected to the outer side of the shaft, arranged symmetrically in the vertical direction around a through-hole. Two protrusions are fixedly connected to the outer side of the rotating drum. Two motors at the feed and discharge ends are powered by an external power source, causing the motors to drive a circular rod to rotate, which in turn drives the yarn drum to rotate, thus moving the fabric to be processed. The fabric passes through the gap between the two rotating drums, and the elasticity of the compression springs allows the two rotating drums in the vertical direction to contact both sides of the fabric. By synchronously rotating the upper and lower drums, both sides of the fabric can be combed simultaneously, reducing the need for turning and the equipment's footprint. This is suitable for continuous, large-scale production. Furthermore, the protrusions on the rotating drum surface can penetrate deep into the fabric fiber layer, effectively untangling fibers and removing internal impurities and short fibers through squeezing, rubbing, and separation, resulting in better fabric smoothness and gloss. There are multiple protrusions, divided into multiple groups, evenly distributed on the outer side of the rotating drum in the axial direction. One group of protrusions is arranged circumferentially around the rotating drum.

[0005] Preferably, there are two through holes located on the same horizontal plane, and two winding assemblies symmetrically arranged around the housing. The two winding assemblies are respectively unwinding and winding. The unwinding assembly is located at the feed end of the equipment, and the winding assembly is located at the discharge end of the equipment. The textile fabric to be processed on the unwinding assembly enters the interior of the housing through the through holes on the housing, passes through the carding assembly and the leveling assembly in sequence, and is finally wound onto the winding assembly. The carding assembly is located at the feed end of the equipment, and the leveling assembly is located at the discharge end of the equipment. Two guide plates are fixedly connected to the bottom of the inner wall of the housing, and the two guide plates are symmetrically arranged on the inner wall of the housing.

[0006] Preferably, four connecting rods are rotatably connected to the outer side of the rotating shaft. Two connecting rods on one rotating shaft are symmetrically arranged at both ends of the shaft, with opposite inclination directions. Two connecting rods at one end of the rotating drum are arranged parallel to each other, with the ends of the connecting rods furthest from the rotating shaft located on both sides of the rotating drum. Two cleaning rollers on both sides of the rotating drum contact the top and bottom surfaces of the fabric on both sides of the rotating drum, thereby cleaning the fabric surface. The cleaning rollers are in direct contact with the upper and lower surfaces of the fabric, which can remove residual impurities, short fibers, and excess fiber debris in real time during the combing process, preventing them from re-adhering to or embedding in the fabric, reducing fabric defects. Furthermore, the cleaning rollers and the rotating drum form a stable clamping and conveying structure, ensuring that the tension is within a suitable range and avoiding problems such as deviation and breakage caused by uneven tension. Compression springs are provided at the intervals of the connecting rods, with both ends of the compression springs fixedly connected to the two connecting rods at one end of the rotating drum. One end of the shaft is rotatably connected to a rotating rod, and the two ends of the rotating rod are connected to two connecting rods located on one side of the rotating drum. A cleaning roller is fixedly connected to the outside of the rotating rod, and a rotating plate is fixedly connected to the outside of the rotating drum. The fabric is in close contact with the two rotating drums in the vertical direction. When the fabric moves, the fabric will drive the rotating drums to rotate relative to each other. At this time, the rotating drums drive the protrusions and rotating plates to rotate. The smooth surface of the rotating plates can effectively prevent fiber entanglement. At the same time, the centrifugal force generated by the rotation of the protrusions can quickly shake off the attached impurities and short fibers, reducing the frequency of cleaning. The gaps formed by the alternating structure also facilitate the discharge of impurities. In addition, the presence of the rotating plates provides a continuous support surface for the fabric, reducing the fabric shaking or deviation caused by the local force of the protrusions, ensuring that it is transported smoothly during the combing process, reducing the incidence of problems such as deviation and wrinkles, and ensuring the consistency of product quality. There are multiple rotating plates, which are arranged circumferentially around the rotating shaft, and the rotating plates are alternately set with multiple protrusions in a group.

[0007] Preferably, the leveling assembly includes a through pipe, which is fixedly connected to the housing. A cylinder is rotatably connected to the outside of the through pipe. There are two through pipes, symmetrically arranged around the cylinder. There are also two cylinders, symmetrically arranged vertically around the through hole. A fixing seat is fixedly connected to the end of each cylinder. There are two fixing seats, symmetrically arranged around the cylinder. The fixing seats and the end faces of the cylinders are fitted with a concave-convex fit. The fixing seats have a convex ring, and the cylinders have a groove. The fixing seats and the cylinders are fitted with a concave-convex fit through the convex ring and groove, thus forming a sealing structure and providing a sealing function. Multiple circular holes are evenly distributed around the cylinder body. A pipe passes through the cylinder body and extends into its interior. A conical cylinder is fixedly connected to the end of the pipe. A fabric passes through the middle of two cylinder bodies and contacts the arc plate on the outer side of the cylinder body. The movement of the fabric causes the cylinder body to rotate. Simultaneously, steam is introduced into the pipe body. The steam enters the interior of the cylinder through the conical cylinder and then enters the gap between the cylinder body and the inner cylinder through a square hole on the inner cylinder. The cylinder body drives the outer arc plate to rotate. When the arc plate moves the cylinder and the circular block closer to the magnetic block, the repulsive force between the magnetic block and the circular block increases. This causes the cylinder to move the arc plate away from the cylinder body. The annular hole on the cylinder is located inside the circular hole, allowing steam between the cylinder and the cylindrical body to escape through the gap between the circular hole and the annular hole, thus contacting the fabric. The softening effect of the steam, combined with the flexible pressure of the arc-shaped pressure plate, reduces the local stress on the fabric, effectively eliminating wrinkles and curling, ensuring the fabric is flat. The cylinder moves the arc plate and the circular block away from the magnetic block, reducing the repulsive force between the circular block and the magnetic block. Utilizing the elasticity of the elastic ring, the arc plate and the cylinder are reset. The conical cylinder is located inside the cylinder, with a cylindrical body fixedly connected to the end of the conical cylinder away from the through pipe. The cylindrical body and the conical cylinder are concentrically arranged, with both ends of the cylindrical body fixedly connected to two conical cylinders on either side. The axial outer side of the cylindrical body is open. A square hole is provided, located on opposite sides between two cylindrical bodies. Multiple inner cylinders are fixedly connected to the inner wall of the cylindrical body, and these inner cylinders are divided into two groups, symmetrically arranged inside the cylindrical body. Magnetic blocks are fixedly connected to the inner wall of the square hole, with opposite magnetic properties to the circular blocks. Multiple magnetic blocks are evenly distributed inside the square hole. Multiple partitions are fixedly connected to the inner wall of the cylindrical body, evenly distributed inside the cylindrical body, and alternately arranged with the circular holes. Pressure components are provided on the outer side of the cylindrical body, with elastic rings inside each pressure component. Multiple pressure components are connected via elastic rings.

[0008] Preferably, the pressure assembly includes an arc plate, a cylinder is fixedly connected to the side of the arc plate near the cylinder, the cylinder is located inside a circular hole, the cylinder passes through the circular hole and extends into the cylinder, an annular hole is opened on the outer side of the cylinder, the annular hole is located at the interval between the cylinder and the cylinder, a circular block is fixedly connected to the end of the cylinder away from the arc plate, the circular block is magnetic, the circular block is located inside the cylinder, and a side hole is opened at the middle of the axial outer side of the arc plate, the side holes are symmetrically arranged with the cylinder as the center.

[0009] Preferably, the winding assembly includes a support, which is fixedly connected to the top of the platform. A round rod is rotatably connected to the end of the support away from the platform. A motor is fixedly connected to the support, and the output end of the motor is fixedly connected to the round rod. There are two supports, and the two ends of the round rod are respectively connected to the two supports. A bobbin is rotatably connected to the outer side of the round rod, and a fixing plate is rotatably connected to the outer side of the round rod. The fixing plate is located at the interval between the support and the bobbin and is fixedly connected to the support. A middle rod is rotatably connected to one end of the fixing plate. The fabric passes through the gap between two pressure rollers and is wound onto the bobbin. The motor is powered by an external power source. The motor drives the round rod to rotate, and the round rod drives the bobbin to rotate, causing the bobbin to wind or unwind the fabric. At this time, under the elastic force of the return spring, the contact plate is in close contact with the fabric on the bobbin, which can make the fabric wound flat and tightly, avoiding irregular rolls, facilitating subsequent transportation and processing. At the same time, through the setting... The two pressure rollers at the top act as guides, providing a clear path for the fabric during unwinding and rewinding, effectively preventing wrinkles and tangling caused by deviation, and ensuring production continuity. There are two intermediate rods, symmetrically arranged at both ends of the fixed plate. An annular groove is opened on the outer side of the intermediate rod away from the fixed plate. A limit plate is set on the outer side of the intermediate rod, and the limit plate is slidably connected to the intermediate rod through the annular groove. A spring plate is fixedly connected to the bottom of the limit plate, and the end of the spring plate away from the limit plate is fixedly connected to the fixed plate. A straight rod is rotatably connected to the end of the intermediate rod away from the fixed plate. A pressure roller is fixedly connected to the middle of the outer side of the straight rod. A fixed frame is fixedly connected to the top of the platform, located at the interval between the two supports. A return spring is fixedly connected to the bottom of the inner wall of the fixed frame. A contact plate is fixedly connected to the end of the return spring away from the fixed frame. The contact plate is slidably connected to the fixed frame, and the middle of the contact plate is arc-shaped.

[0010] This invention provides a combing device for producing antibacterial and antistatic fiber textile fabrics. It has the following beneficial effects: I. This carding device for producing antibacterial and antistatic fiber textile fabrics can simultaneously card both sides of the fabric by rotating the upper and lower drums synchronously. This reduces the turning process and equipment footprint, making it suitable for continuous and large-scale production. Furthermore, the protrusions on the surface of the drums can penetrate deep into the fabric fiber layer, effectively untangling the fibers and removing internal impurities and short fibers through squeezing, rubbing, and separation, resulting in better fabric smoothness and gloss.

[0011] II. This combing device for producing antibacterial and antistatic fiber textile fabrics directly contacts the upper and lower surfaces of the fabric with a cleaning roller. It can remove residual impurities, short fibers and excess fiber debris in real time during the combing process, preventing them from re-attaching or embedding into the fabric, reducing fabric defects. Furthermore, the cleaning roller and the rotating drum form a stable clamping and conveying structure, ensuring that the tension is within a suitable range and avoiding problems such as deviation and breakage caused by uneven tension.

[0012] 3. This carding device for producing antibacterial and antistatic fiber textile fabrics uses a rotating drum to drive the protrusions and rotating plates to rotate. At this time, the smooth surface of the rotating plate can effectively prevent fiber entanglement. At the same time, the centrifugal force generated by the rotation of the protrusions can quickly shake off the attached impurities and short fibers, reducing the frequency of cleaning. The gaps formed by the alternating structure also facilitate the discharge of impurities. Furthermore, the presence of the rotating plate provides a continuous support surface for the fabric, reducing fabric shaking or displacement caused by the local force of the protrusions, and ensuring its stable transport during the carding process.

[0013] IV. This combing device for producing antibacterial and antistatic fiber textile fabrics reduces local stress on the fabric through the softening effect of steam combined with the flexible pressure of the arc-shaped pressure plate, effectively eliminating wrinkles and curling edges, ensuring the fabric is flat. The cylinder moves the arc plate and the round block away from the magnetic block, reducing the repulsive force between the round block and the magnetic block. The elasticity of the elastic ring allows the arc plate and the cylinder to return to their original positions. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a cross-sectional structural schematic diagram of the present invention; Figure 3 This is a schematic diagram of the structure of the component of the present invention; Figure 4 This is a partial structural diagram of the component of the present invention; Figure 5 This is a schematic diagram of the leveling component of the present invention; Figure 6 This is a cross-sectional structural schematic diagram of the leveling component of the present invention; Figure 7 This is a partial structural schematic diagram of the leveling component of the present invention; Figure 8 This is a schematic diagram of the pressure component of the present invention; Figure 9 This is a schematic diagram of the winding assembly of the present invention; Figure 10This is a partial structural schematic diagram of the winding assembly of the present invention. In the figure: 1. Platform; 2. Winding assembly; 21. Support; 22. Round rod; 23. String; 24. Fixing plate; 25. Intermediate rod; 26. Annular groove; 27. Limiting plate; 28. Spring plate; 29. ​​Straight rod; 210. Pressure roller; 211. Fixing frame; 212. Contact plate; 213. Return spring; 3. Housing; 4. Through hole; 5. Combing assembly; 51. Rotating shaft; 52. Rotating drum; 53. Connecting rod; 54. Rotating rod; 55. Cleaning roller; 56. Compression spring; 57. Protrusion; 58. Rotating plate; 6. Leveling assembly; 61. Through pipe; 62. Cylinder; 63. Fixing base; 64. Pressure assembly; 641. Arc plate; 642. Side hole; 643. Cylinder; 644. Ring hole; 645. Round block; 65. Conical cylinder; 66. Cylinder; 67. Elastic ring; 68. Inner cylinder; 69. Round hole; 610. Square hole; 611. Partition plate; 612. Magnetic block; 7. Guide plate; 8. Motor. Detailed Implementation

[0015] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0016] First embodiment, such as Figures 1 to 4 As shown, the present invention provides a technical solution: a combing device for producing antibacterial and antistatic fiber textile fabrics, including a platform 1, a housing 3 fixedly connected to the top middle of the platform 1, and a through hole 4 opened on the outer side of the housing 3. Winding assembly 2 is fixedly installed on the top of platform 1, and a motor 8 is provided on the outside of winding assembly 2; Leveling component 6 is rotatably mounted inside housing 3; Combing component 5 is rotatably mounted inside housing 3; The combing assembly 5 includes a rotating shaft 51, which is rotatably connected to the housing 3. A rotating drum 52 is fixedly connected to the outer side of the rotating shaft 51. There are two rotating shafts 51, symmetrically arranged vertically around the through hole 4. A protrusion 57 is fixedly connected to the outer side of the rotating drum 52. Two motors 8 at the feed and discharge ends are connected to an external power source, causing the motors 8 to drive the round rod 22 to rotate. The round rod 22 then drives the bobbin 23 to rotate, thus moving the fabric to be processed. The fabric passes through the gap between the two rotating drums 52, utilizing the elasticity of the compression spring 56 to move the two rotating drums vertically. The rotating drums 52 contact both sides of the fabric. By rotating the upper and lower drums 52 synchronously, the front and back sides of the fabric can be combed at the same time, reducing the turning process and the equipment floor space. This is suitable for continuous and large-scale production. Furthermore, the protrusions 57 on the surface of the rotating drums 52 can penetrate deep into the fabric fiber layer. Through squeezing, rubbing and separating, they can effectively untangle the fibers, remove internal impurities and short fibers, and make the fabric smoother and more lustrous. There are multiple protrusions 57, which are divided into multiple groups. The multiple groups of protrusions 57 are evenly distributed on the outer side of the rotating drums 52 in the axial direction. One group of protrusions 57 is arranged in a circle around the rotating drums 52.

[0017] There are two through holes 4, which are located on the same horizontal plane. There are two winding assemblies 2, which are symmetrically arranged with the housing 3 as the center. The two winding assemblies 2 are unwinding and winding, respectively. The unwinding assembly is located at the feed end of the equipment, and the winding assembly is located at the discharge end of the equipment. The textile fabric to be processed on the unwinding assembly enters the interior of the housing 3 through the through holes 4 on the housing 3, passes through the carding assembly 5 and the leveling assembly 6 in sequence, and is finally wound onto the winding assembly. The carding assembly 5 is located at the feed end of the equipment, and the leveling assembly 6 is located at the discharge end of the equipment. There are two guide plates 7 fixedly connected to the bottom of the inner wall of the housing 3, which are symmetrically arranged on the inner wall of the housing 3.

[0018] Four connecting rods 53 are rotatably connected to the outer side of the rotating shaft 51. Two connecting rods 53 located on one rotating shaft 51 are symmetrically arranged at both ends of the rotating shaft 51, with opposite inclination directions. Two connecting rods 53 located at one end of the rotating drum 52 are arranged parallel to each other, with the ends of the connecting rods 53 away from the rotating shaft 51 located on both sides of the rotating drum 52. Two cleaning rollers 55 located on both sides of the rotating drum 52 contact the top and bottom surfaces of the fabric located on both sides of the rotating drum 52, thereby cleaning the fabric surface. The cleaning roller 55 directly contacts the upper and lower surfaces of the fabric, removing residual impurities, short fibers, and excess fiber debris in real time during the combing process. This prevents these impurities from re-adhering to or embedding into the fabric, reducing fabric defects. Furthermore, the cleaning roller 55 and the rotating drum 52 form a stable clamping and conveying structure, ensuring the tension is within a suitable range and preventing issues such as misalignment or breakage caused by uneven tension. Compression springs 56 are installed at intervals on the connecting rods 53, with both ends of the springs fixedly connected to two connecting rods 53 located at one end of the rotating drum 52. The connecting rods 53 are located away from the rotating drum. A rotating rod 54 is rotatably connected to one end of shaft 51. Both ends of the rotating rod 54 are connected to two connecting rods 53 located on one side of rotating drum 52. A cleaning roller 55 is fixedly connected to the outer side of the rotating rod 54, and a rotating plate 58 is fixedly connected to the outer side of rotating drum 52. The fabric is in close contact with the two rotating drums 52 in the vertical direction. When the fabric moves, it causes the rotating drums 52 to rotate relative to each other. At this time, the rotating drums 52 drive the protrusions 57 and rotating plate 58 to rotate. The smooth surface of the rotating plate 58 can effectively prevent fiber entanglement, and simultaneously, the rotation of the protrusions 57 generates a lifting effect. The rotating plate 58 can quickly shake off attached impurities and short fibers, reducing the frequency of cleaning. The gaps formed by the alternating structure also facilitate the discharge of impurities. Furthermore, the presence of the rotating plate 58 provides a continuous support surface for the fabric, reducing fabric shaking or deviation caused by the local force of the protrusions 57. This ensures that the fabric is transported smoothly during the combing process, reducing the incidence of problems such as deviation and wrinkles, and ensuring consistent product quality. There are multiple rotating plates 58, which are arranged circumferentially around the rotating shaft 51. The rotating plates 58 are alternately set with multiple protrusions 57 in a group.

[0019] The second embodiment is based on the first embodiment; please refer to [link / reference]. Figures 5 to 8As shown, the leveling component 6 includes a through pipe 61, which is fixedly connected to the housing 3. A cylinder 62 is rotatably connected to the outside of the through pipe 61. There are two through pipes 61, which are symmetrically arranged around the cylinder 62. There are also two cylinders 62, which are symmetrically arranged vertically around the through hole 4. A fixing seat 63 is fixedly connected to the end of the cylinder 62. There are two fixing seats 63, which are symmetrically arranged around the cylinder 62. The fixing seats 63 and the end faces of the cylinder 62 are fitted together. The fixing seats 63 are provided with a convex ring, and the cylinder 62 is provided with a groove. The fixing seats 63 and the cylinder 62 are fitted together by the convex ring and the groove, thus forming a sealing structure and playing a sealing role. A circular hole 69 is provided on the outer side of cylinder 62. Multiple circular holes 69 are evenly distributed around cylinder 62. A pipe 61 passes through cylinder 62 and extends into its interior. A conical cylinder 65 is fixedly connected to the end of pipe 61. Fabric passes through the middle of two cylinders 62 and contacts the arc plate 641 on the outer side of cylinder 62. The movement of the fabric causes cylinder 62 to rotate, simultaneously introducing steam into pipe 61. The steam enters cylinder 66 through conical cylinder 65 and then into the space between cylinder 62 and cylinder 66 via square hole 610. Cylinder 62 causes the outer arc plate 641 to rotate. When the arc plate 641 causes cylinder 643 and block 645 to approach magnetic block 612, magnetic block 612 and block 643... The increased repulsive force between cylinders 643 and 66 causes the arc plate 641 to move away from the cylinder 66, placing the annular hole 644 on the cylinder 643 inside the circular hole 69. This allows the steam between the cylinder 62 and the cylinder 66 to escape through the gap between the circular hole 69 and the annular hole 644, thus contacting the fabric. The softening effect of the steam, combined with the flexible pressure of the arc-shaped pressure plate, reduces the local stress on the fabric, effectively eliminating wrinkles and curling, ensuring the fabric is flat. The cylinder 62 then moves the arc plate 641 and the circular block 645 away from the magnetic block 612, reducing the repulsive force between the circular block 645 and the magnetic block 612. Utilizing the elastic properties of the elastic ring 67, the arc plate 641 and the cylinder 643 return to their original positions, and the conical cylinder 65 is located inside the cylinder 62, moving away from the passageway. One end of tube 61 is fixedly connected to a cylinder 66, which is concentrically arranged with the cylinder body 62. Both ends of cylinder 66 are fixedly connected to two conical cylinders 65 on either side. A square hole 610 is opened on the axial outer side of cylinder 66, located on opposite sides between the two cylinder bodies 62. Multiple inner cylinders 68 are fixedly connected to the inner wall of cylinder 66, arranged in two groups symmetrically inside cylinder 66. A magnetic block 612 is fixedly connected to the inner wall of the square hole 610. The magnetic blocks 612 and the circular block 645 have opposite magnetic properties. Multiple magnetic blocks 612 are evenly distributed inside the square hole 610. Multiple partitions 611 are fixedly connected to the inner wall of cylinder body 62.Multiple baffles 611 are evenly distributed inside the cylinder 62, with baffles 611 and circular holes 69 alternating. Pressure components 64 are arranged on the outer side of the cylinder 62, and elastic rings 67 are arranged inside the pressure components 64. Multiple pressure components 64 are connected by the elastic rings 67.

[0020] The pressure assembly 64 includes an arc plate 641. A cylinder 643 is fixedly connected to the side of the arc plate 641 near the cylinder 62. The cylinder 643 is located inside the circular hole 69. The cylinder 643 passes through the circular hole 69, penetrates the cylinder 62, and extends into the interior of the cylinder 62. An annular hole 644 is opened on the outer side of the cylinder 643. The annular hole 644 is located at the interval between the cylinder 62 and the cylinder 66. A circular block 645 is fixedly connected to the end of the cylinder 643 away from the arc plate 641. The circular block 645 is magnetic and is located inside the cylinder 62. A side hole 642 is opened at the middle of the outer side of the arc plate 641. The side holes 642 are symmetrically arranged with the cylinder 643 as the center.

[0021] The third embodiment is based on embodiments one and two; please refer to [link / reference]. Figures 9 to 10As shown, the winding assembly 2 includes a support 21, which is fixedly connected to the top of the platform 1. A round rod 22 is rotatably connected to the end of the support 21 away from the platform 1. A motor 8 is fixedly connected to the support 21, and the output end of the motor 8 is fixedly connected to the round rod 22. There are two supports 21, and the two ends of the round rod 22 are respectively connected to the two supports 21. A bobbin 23 is rotatably connected to the outer side of the axial direction of the round rod 22, and a fixing plate 24 is rotatably connected to the outer side of the axial direction of the round rod 22. The fixing plate 24 is located at the interval between the support 21 and the bobbin 23, and the fixing plate 24 is fixed to the support 21. A fixed connection is established, with a middle rod 25 rotatably connected to one end of the fixed plate 24. The fabric passes through the gap between the two pressure rollers 210 and is wound onto the bobbin 23. The motor 8 is powered by an external power source, driving the round rod 22 to rotate, which in turn drives the bobbin 23 to rotate. This causes the bobbin 23 to wind or unwind the fabric. At this time, under the elastic force of the return spring 213, the contact plate 212 makes close contact with the fabric on the bobbin 23, ensuring that the fabric is wound flat and tightly, avoiding irregular rolls, and facilitating subsequent transportation and processing. Simultaneously, the two pressure rollers at the top... Roller 210 acts as a guide, providing a clear path for the fabric during unwinding and rewinding, effectively preventing wrinkles and tangling caused by deviation, and ensuring production continuity. There are two intermediate rods 25, symmetrically positioned at both ends of the fixed plate 24. An annular groove 26 is formed on the outer side of the end of the intermediate rod 25 furthest from the fixed plate 24. A limiting plate 27 is provided on the outer side of the intermediate rod 25, slidingly connected to the intermediate rod 25 via the annular groove 26. A spring plate 28 is fixedly connected to the bottom of the limiting plate 27, and the spring plate 28 is located away from the limiting plate 24. One end of 7 is fixedly connected to the fixed plate 24. The end of the middle rod 25 away from the fixed plate 24 is rotatably connected to the straight rod 29. The middle of the outer side of the straight rod 29 is fixedly connected to the pressure roller 210. The top of the platform 1 is fixedly connected to the fixed frame 211. The fixed frame 211 is located at the interval between the two supports 21. The bottom of the inner wall of the fixed frame 211 is fixedly connected to the return spring 213. The end of the return spring 213 away from the fixed frame 211 is fixedly connected to the contact plate 212. The contact plate 212 is slidably connected to the fixed frame 211. The middle part of the contact plate 212 is arc-shaped.

[0022] In use, the textile fabric to be processed on the unwinding assembly enters the interior of the housing 3 through the through hole 4 on the housing 3, passes through the combing assembly 5 and the leveling assembly 6 in sequence, and is finally wound onto the winding assembly.

[0023] Two motors 8 at the feeding end and the discharging end are connected to an external power source. The motors 8 drive the round rod 22 to rotate, which in turn drives the bobbin 23 to rotate, thereby moving the fabric to be processed. At this time, the fabric passes through the gap between the two rotating drums 52. Utilizing the elasticity of the compression spring 56, the two rotating drums 52 in the vertical direction come into contact with the two sides of the fabric respectively. By rotating the upper and lower drums 52 synchronously, the front and back sides of the fabric can be combed at the same time.

[0024] The fabric passes through the middle of the two cylinders 62 and contacts the arc plate 641 on the outer side of the cylinder 62. The movement of the fabric causes the cylinder 62 to rotate, and at the same time, steam is introduced into the inside of the pipe 61. The steam enters the inside of the cylinder 66 through the conical cylinder 65. The steam enters the gap between the cylinder 62 and the cylinder 66 through the square hole 610 on the cylinder 66. The cylinder 62 drives the outer arc plate 641 to rotate. When the arc plate 641 drives the cylinder 643 and the round block 645 to approach the magnetic block 612, the repulsive force between the magnetic block 612 and the round block 645 increases, causing the cylinder 643 to drive the arc plate 641 to move away from the cylinder 66. This causes the annular hole 644 on the cylinder 643 to be located inside the round hole 69, allowing the steam between the cylinder 62 and the cylinder 66 to be discharged through the gap between the round hole 69 and the annular hole 644, thus contacting the fabric.

[0025] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0026] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A combing device for producing antibacterial and antistatic fiber textile fabrics, characterized in that, include: The platform has a housing fixedly connected to the top center, and a through hole is opened on the outside of the housing; The winding assembly is fixedly installed on the top of the platform, and a motor is installed on the outside of the winding assembly; The leveling component is rotatably mounted inside the housing; The combing assembly is rotatably mounted inside the housing. The combing component includes a rotating shaft, which is rotatably connected to the housing. A rotating cylinder is fixedly connected to the outside of the rotating shaft. There are two rotating shafts, which are symmetrically arranged in the vertical direction with the through hole as the center. A protrusion is fixedly connected to the outside of the rotating cylinder. There are multiple protrusions, which are divided into multiple groups. The multiple groups of protrusions are evenly distributed on the outside of the rotating cylinder in the axial direction. One group of protrusions is arranged in a circle around the rotating cylinder as the center. The leveling assembly includes a through pipe, which is fixedly connected to the housing. A cylinder is rotatably connected to the outside of the through pipe. There are two through pipes, which are symmetrically arranged with the cylinder as the center. There are two cylinders, which are symmetrically arranged in the vertical direction with the through hole as the center. A fixing seat is fixedly connected to the end of the cylinder. There are two fixing seats, which are symmetrically arranged with the cylinder as the center. The fixing seats are adapted to the end face of the cylinder. The cylinder has multiple circular holes on its axial outer side, evenly distributed around the cylinder. A pipe passes through the cylinder and extends into the interior. A conical cylinder is fixedly connected to the end of the pipe, located inside the cylinder. A cylindrical cylinder is fixedly connected to the end of the conical cylinder away from the pipe, and the cylindrical cylinder is concentric with the cylinder. Both ends of the cylindrical cylinder are fixedly connected to two conical cylinders on both sides. A square hole is opened on the axial outer side of the cylindrical cylinder, located on opposite sides between the two cylinders. Multiple inner cylinders are fixedly connected to the inner wall of the cylindrical cylinder, divided into two groups, which are symmetrically arranged inside the cylindrical cylinder. A magnetic block is fixedly connected to the inner wall of the square hole. There are multiple magnetic blocks, which are evenly distributed inside the square hole. A partition is fixedly connected to the inner wall of the cylinder. There are multiple partitions, which are evenly distributed inside the cylinder. The partitions and the round hole are alternately arranged. A pressure component is provided on the outer side of the cylinder. An elastic ring is provided inside the pressure component. The pressure assembly includes an arc plate, a cylinder is fixedly connected to the side of the arc plate near the cylinder, the cylinder is located inside a circular hole, the cylinder passes through the circular hole and extends into the cylinder, an annular hole is opened on the outer side of the cylinder, the annular hole is located at the interval between the cylinder and the cylinder, and a circular block is fixedly connected to the end of the cylinder away from the arc plate, the circular block is located inside the cylinder.

2. The carding device for producing antibacterial and antistatic fiber textile fabrics according to claim 1, characterized in that: There are two through holes, which are located on the same horizontal plane. There are two winding assemblies, which are symmetrically arranged with the shell as the center. The combing assembly is located at the feed end of the equipment, and the leveling assembly is located at the discharge end of the equipment. There are two guide plates fixedly connected to the bottom of the inner wall of the shell, which are symmetrically arranged on the inner wall of the shell.

3. The combing device for producing antibacterial and antistatic fiber textile fabrics according to claim 1, characterized in that: There are four connecting rods rotatably connected to the outside of the rotating shaft. Two connecting rods on one rotating shaft are symmetrically arranged at both ends of the rotating shaft. The two connecting rods at both ends of the rotating shaft are inclined in opposite directions. Two connecting rods at one end of the rotating drum are arranged in parallel, and the ends of the connecting rods away from the rotating shaft are located on both sides of the rotating drum. Compression springs are provided at the intervals of the connecting rods.

4. The combing device for producing antibacterial and antistatic fiber textile fabrics according to claim 3, characterized in that: The two ends of the compression spring are fixedly connected to two connecting rods located at one end of the rotating drum. The end of the connecting rod away from the rotating shaft is rotatably connected to a rotating rod. The two ends of the rotating rod are connected to two connecting rods located on one side of the rotating drum. A cleaning roller is fixedly connected to the outside of the rotating rod. A rotating plate is fixedly connected to the outside of the rotating drum. There are multiple rotating plates, which are arranged in a circle around the rotating shaft. The rotating plates are alternately set with multiple protrusions in a group.

5. The combing device for producing antibacterial and antistatic fiber textile fabrics according to claim 1, characterized in that: A side hole is provided at the middle of the outer side of the arc plate, and the side holes are symmetrically arranged with the cylinder as the center.

6. The combing device for producing antibacterial and antistatic fiber textile fabrics according to claim 2, characterized in that: The winding assembly includes a support, which is fixedly connected to the top of the platform. A round rod is rotatably connected to the end of the support away from the platform. A motor is fixedly connected to the support, and the output end of the motor is fixedly connected to the round rod. There are two supports. The two ends of the round rod are respectively connected to the two supports. A bobbin is rotatably connected to the outer side of the round rod. A fixing plate is rotatably connected to the outer side of the round rod. The fixing plate is located at the interval between the support and the bobbin and is fixedly connected to the support. An intermediate rod is rotatably connected to one end of the fixing plate. There are two intermediate rods. The two intermediate rods are symmetrically arranged at both ends of the fixing plate. An annular groove is opened on the outer side of the end of the intermediate rod away from the fixing plate. A limit plate is provided on the outer side of the intermediate rod. The limit plate is slidably connected to the intermediate rod through the annular groove.

7. A combing device for producing antibacterial and antistatic fiber textile fabrics according to claim 6, characterized in that: A spring plate is fixedly connected to the bottom of the limiting plate. The end of the spring plate away from the limiting plate is fixedly connected to the fixed plate. A straight rod is rotatably connected to the end of the middle rod away from the fixed plate. A pressure roller is fixedly connected to the middle of the outer side of the straight rod. A fixed frame is fixedly connected to the top of the platform. The fixed frame is located at the interval between the two supports. A return spring is fixedly connected to the bottom of the inner wall of the fixed frame. A contact plate is fixedly connected to the end of the return spring away from the fixed frame. The contact plate is slidably connected to the fixed frame. The middle part of the contact plate is arc-shaped.

Citation Information

Patent Citations

  • Ironing device used for textile fabric

    CN111379101A

  • Textile fabric carding device

    CN112080921A