Non-woven fabric flocculus removing device

By designing the beating and suction components of the nonwoven fabric lint removal device, the problem of fiber breakage and shedding was solved, achieving efficient removal of short and broken fibers and improving the quality of nonwoven fabric products.

CN224160895UActive Publication Date: 2026-04-24RUIAN XINGYUAN NONWOVENS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
RUIAN XINGYUAN NONWOVENS CO LTD
Filing Date
2025-04-30
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

During the mask production process, fibers are prone to breakage and shedding, forming short and broken fibers, which leads to a decline in product quality. Existing technologies are unable to effectively remove these broken fibers.

Method used

A nonwoven fabric lint removal device was designed. By working together with a beating component and a suction component, the beating component removes short and broken fibers from the surface of the nonwoven fabric, and the suction component removes the detached broken fibers, thereby reducing their impact on product quality.

Benefits of technology

It effectively reduces the amount of short and broken fibers in nonwoven products, improves product quality, increases the absorption rate of short and broken fibers, and reduces the possibility of breakage and damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a non-woven fabric wadding removing device which comprises a rack, an unwinding roller is rotationally connected to the left side of the rack, an unwinding wheel detachably and fixedly connected with the unwinding roller is nested outside the unwinding roller, a winding roller is rotationally connected to the right side of the rack, and a winding wheel rotationally connected with the winding roller is nested outside the winding roller. First motors for driving the unwinding roller and the winding roller to rotate are fixed to the left side and the right side of the rack respectively, a supporting seat located between the unwinding roller and the winding roller is fixed to the middle of the rack, and one end of the non-woven fabric is fixed to the outer wall of the unwinding wheel. The short and broken cotton fibers can be conveniently sucked away by the suction assembly, and the possibility that the short and broken cotton fibers affect the quality of non-woven fabric products is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of nonwoven fabric processing technology, specifically to a nonwoven fabric lint removal device. Background Technology

[0002] Non-woven fabric, also known as non-woven cloth, is called cloth because it has the appearance and some properties of cloth. Non-woven fabric has the characteristics of being moisture-proof, breathable, flexible, lightweight, non-flammable, easily degradable, non-toxic and non-irritating, rich in color, inexpensive, and recyclable. Unlike traditional textiles, non-woven fabric is formed by thermal bonding, chemical treatment or mechanical pile-locking, using special chemical fibers or natural fibers to directly form a mesh structure without the need for weaving and knitting processes. It can be used in various industries, such as sound insulation, heat insulation, heating elements, masks, clothing, medical, and filling materials.

[0003] The antibacterial nonwoven fabric used in the masks mainly includes antibacterial and non-stick nonwoven fabric, which uses polypropylene as the main raw material. It is made of short fibers or filaments made of polypropylene and other plastic materials, and is processed through spinning, stretching, web laying and bonding processes. It has excellent filtration and shielding properties.

[0004] However, during the mask production process, friction can cause fibers to break and fall off, forming short and broken fibers. These short and broken fibers cannot be completely removed during processing and, when mixed into the finished mask, they can easily cause lint and affect product quality. Summary of the Invention

[0005] To overcome the shortcomings of existing technologies, this utility model proposes a nonwoven fabric lint removal device, including a frame. A unwinding roller is rotatably connected to the left side of the frame, and an unwinding wheel is detachably fixedly connected to the unwinding roller. A take-up roller is rotatably connected to the right side of the frame, and a take-up wheel is rotatably connected to the take-up roller. First motors for driving the unwinding and take-up rollers to rotate are fixed on the left and right sides of the frame, respectively. A support seat is fixed in the middle of the frame between the unwinding and take-up rollers. One end of the nonwoven fabric is fixed to the outer wall of the unwinding wheel, and the other end wraps around the unwinding wheel and extends beyond it. The nonwoven fabric extending beyond the unwinding wheel passes through the support seat, wraps around the take-up wheel, and is fixed to the end of the take-up wheel. A mounting seat fixed to the frame is provided above the support seat. The mounting seat is equipped with a beating component for beating the nonwoven fabric and a suction component for absorbing the short, broken fibers produced by the beating.

[0006] To achieve the above objectives, one end of the nonwoven fabric is detachably and fixedly connected to the outer wall of the unwinding roller, and the other end is detachably and fixedly connected to the outer wall of the take-up roller via a support base. Power is provided by two first motors, which drive the unwinding roller and the take-up roller to rotate respectively, so that the nonwoven fabric wrapped around the unwinding roller is continuously wrapped around the take-up roller. The nonwoven fabric is supported by the support base, so that the beating component can beat and suck up the nonwoven fabric on the support base, reducing the possibility of breakage and damage to the nonwoven fabric. By beating the nonwoven fabric by the beating component, short cotton fibers are detached from the nonwoven fabric, making it easy for the suction component to suck up the short cotton fibers, reducing the possibility of short cotton fibers affecting the quality of the nonwoven fabric product.

[0007] Furthermore, the striking assembly includes a mounting box positioned directly above the support base. The mounting box has a hollow interior cavity, and a movable opening communicating with the interior cavity is provided on the front side of the mounting box. A strip-shaped slot is provided on the front side of the mounting box above the movable opening. Several evenly arranged locking blocks are engaged within the strip-shaped slot, and each locking block extends into a strip-shaped groove. An upper connecting piece is integrally formed on the portion of the locking block extending into the strip-shaped groove. An arc-shaped plate with a three-quarter annular cross-section is integrally formed at the bottom end of the upper connecting piece. A lower connecting piece is integrally formed on the end of the arc-shaped plate away from the upper connecting piece. A striking rod is integrally formed on the end of the lower connecting piece away from the arc-shaped plate. A cylindrical striking hammer is integrally formed at the bottom end of the striking rod. A control assembly for controlling the swing of the striking rod is provided inside the mounting box.

[0008] Furthermore, the control component includes a drive shaft disposed within the cavity of the mounting box and rotatably connected to the mounting box. A rotating wheel, coaxially fixed to the drive shaft, is nested on the outer circumference of the drive shaft. A plurality of spring blocks, corresponding one-to-one with the striking rod, are uniformly fixed on the outer circumference of the rotating wheel. The end of the spring block facing the striking rod is an inclined surface, and the end of the striking rod near the spring block is an arc surface. A follower gear, located beside the rotating wheel and coaxially fixed to the drive shaft, is also nested on the outer circumference of the drive shaft. A drive gear, meshing with the follower gear, is rotatably connected to the mounting box. A second motor, driving the drive gear to rotate, is also fixed on the mounting box.

[0009] Furthermore, the suction assembly includes a suction nozzle disposed on the side of the mounting box, the air inlet of the suction nozzle being close to the surface of the non-woven fabric, and the air outlet being connected to the air inlet of a small vacuum cleaner.

[0010] Furthermore, the mounting base has a hollow inner cavity, a lower movable groove communicating with the inner cavity of the mounting base is passed through the bottom end of the mounting base, and an upper movable groove communicating with the inner cavity of the mounting base is passed through the top end of the mounting base. The mounting base is provided with a drive assembly for controlling the alternating movement of the suction nozzle and the mounting box.

[0011] Furthermore, the drive assembly includes a first swing arm rotatably connected to the inner cavity wall of the mounting base, a second swing arm hinged to the end of the first swing arm away from the mounting base, a small vacuum cleaner hinged to the end of the second swing arm away from the first swing arm, the small vacuum cleaner being slidably connected to the inner cavity of the mounting base, the nozzle being slidably connected to the lower movable groove and extending into the inner cavity of the mounting base through the lower movable groove, and a third motor for driving the first swing arm to rotate is fixed on the mounting base.

[0012] Furthermore, two opposing ear plates are fixed to the top of the mounting base, and an upper horizontal shaft and a lower horizontal shaft are fixed between the two ear plates. A first connecting rod is hinged to the outer wall of the small vacuum cleaner. A second connecting rod is hinged to the end of the first connecting rod away from the small vacuum cleaner. The middle position of the second connecting rod is nested outside the lower horizontal shaft and rotatably connected to the lower horizontal shaft. A third connecting rod is hinged to the end of the second connecting rod away from the first connecting rod. The bottom end of the third connecting rod enters the inner cavity of the mounting base through the upper movable groove. The bottom end of the third connecting rod entering the inner cavity of the mounting base enters the lower part of the mounting base through the lower movable groove. The end of the third connecting rod entering the lower part of the mounting base is fixed to the mounting box. A fourth connecting rod is nested outside the upper horizontal shaft and rotatably connected to the upper horizontal shaft. The end of the fourth connecting rod away from the upper horizontal shaft is rotatably connected to the top end of the third connecting rod.

[0013] In summary, this nonwoven fabric lint removal device has the following beneficial effects:

[0014] (1) In this nonwoven fabric lint removal device, one end of the nonwoven fabric is detachably fixed to the outer wall of the unwinding wheel, and the other end is detachably fixed to the outer wall of the winding wheel via a support seat. Power is provided by two first motors, which drive the unwinding roller and the winding roller to rotate respectively, so that the nonwoven fabric wrapped around the unwinding roller is continuously wrapped around the winding roller. The nonwoven fabric is supported by the support seat, so that the beating component can beat and suck the nonwoven fabric on the support seat, reducing the possibility of nonwoven fabric breakage and damage. By beating the nonwoven fabric by the beating component, the short cotton fibers are detached from the nonwoven fabric, making it easy for the suction component to suck away the short cotton fibers, reducing the possibility of short cotton fibers affecting the quality of nonwoven fabric products.

[0015] (2) The nonwoven fabric lint removal device provides power through the drive component, which drives the suction nozzle and the installation box to move alternately. When the beating rod contacts the surface of the nonwoven fabric and completes the beating, it leaves the surface of the nonwoven fabric. At this time, the suction nozzle moves and approaches the surface of the nonwoven fabric to absorb the short and broken fibers that have been beated. After the absorption action is completed, the suction nozzle moves away from the nonwoven fabric, and the installation box moves until the beating rod contacts the surface of the nonwoven fabric. The beating and absorption actions do not affect each other, which effectively improves the absorption rate of short and broken fibers. Attached Figure Description

[0016] The present invention will be further described and explained below with reference to the accompanying drawings.

[0017] Figure 1 This is a schematic diagram of the overall structure of the preferred embodiment of this utility model;

[0018] Figure 2 This is the utility model Figure 1 Enlarged structural diagram at point A in the middle;

[0019] Figure 3 This is the utility model Figure 1 Enlarged structural diagram at point B;

[0020] Figure 4 This is a schematic diagram illustrating the structure of the first pendulum rod of this utility model;

[0021] Figure 5 This is a cross-sectional view of the mounting base of this utility model;

[0022] Figure 6 This is a bottom view schematic diagram of the mounting base of this utility model;

[0023] Figure 7 This is a schematic diagram illustrating the structure of the slapping rod of this utility model;

[0024] Figure 8 This is a schematic diagram illustrating the structure of the spring block in this utility model.

[0025] Reference numerals: 1. Frame; 2. Unwinding roller; 3. Unwinding wheel; 4. Rewinding roller; 5. Rewinding wheel; 6. Support base; 7. Mounting base; 701. Lower movable groove; 702. Upper movable groove; 8. Beating assembly; 801. Mounting box; 802. Movable opening; 803. Strip-shaped slot; 804. Locking block; 805. Upper connecting piece; 806. Arc-shaped plate; 807. Lower connecting piece; 808. Beating rod; 809. Columnar beating hammer; 810. Drive shaft; 811. Rotary wheel; 812. Spring block; 813. Follower gear; 814. Drive gear; 9. Drawer Suction assembly; 901, suction nozzle; 902, mini vacuum cleaner; 10, drive assembly; 1001, first swing arm; 1002, second swing arm; 1003, ear plate; 1004, upper horizontal shaft; 1005, lower horizontal shaft; 1006, first connecting rod; 1007, second connecting rod; 1008, third connecting rod; 1009, fourth connecting rod; 11, first tension roller; 12, second upper tension roller; 13, second lower tension roller; 14, third tension roller; 15, fourth tension roller; 16, fifth upper tension roller; 17, fifth lower tension roller; 18, sixth tension roller. Detailed Implementation

[0026] The technical solution of this utility model will be more clearly and completely explained below with reference to the accompanying drawings and through the description of the preferred embodiments of this utility model.

[0027] like Figure 1-8 As shown, the preferred embodiment of this utility model of a nonwoven fabric lint removal device includes a frame 1. A unwinding roller 2 is rotatably connected to the left side of the frame 1, and an unwinding wheel 3 is detachably and fixedly connected to the unwinding roller 2. A take-up roller 4 is rotatably connected to the right side of the frame 1, and a take-up wheel 5 is rotatably connected to the take-up roller 4. First motors for driving the rotation of the unwinding roller 2 and the take-up roller 4 are fixedly fixed on the left and right sides of the frame 1, respectively. From left to right, the frame 1 is rotatably connected to a first tensioning roller 11, a second upper tensioning roller 12, a second lower tensioning roller 13, a third tensioning roller 14, a fourth tensioning roller 15, a fifth upper tensioning roller 16, a fifth lower tensioning roller 17, and a sixth tensioning roller 18 located below the unwinding roller 2 and the take-up roller 4. A support seat 6 is fixed in the middle of the frame 1, located between the unwinding roller 2 and the take-up roller 4. The upper surface of the support seat 6 is integrally formed on both sides. The nonwoven fabric has a slide for the nonwoven fabric to pass through. The first tension roller 11, the second upper tension roller 12, and the second lower tension roller 13 are located on the left side of the support base 6, and the fourth tension roller 15, the fifth upper tension roller 16, the fifth lower tension roller 17, and the sixth tension roller 18 are located on the right side of the support base 6. One end of the nonwoven fabric is detachably fixed to the outer wall of the unwinding roller 3, and the other end passes through the first tension roller 11, the second upper tension roller 12, the second lower tension roller 13, the third tension roller 14, the support base 6, the fourth tension roller 15, the fifth upper tension roller 16, the fifth lower tension roller 17, and the sixth tension roller 18 in sequence and is detachably fixed to the outer wall of the take-up roller 5. Power is provided by two first motors, which drive the unwinding roller 2 and the take-up roller 4 to rotate respectively, so that the nonwoven fabric wrapped around the unwinding roller 3 is continuously wrapped around the take-up roller 5. This is the existing structure and technology, so it will not be described in detail here.

[0028] like Figure 1 and Figure 3 and Figure 4 and Figure 5 To reduce the amount of short, broken fibers adhering to the nonwoven fabric, a mounting base 7 fixed to the frame 1 is provided above the support base 6. The mounting base 7 is equipped with a beating component 8 for beating the nonwoven fabric and a suction component 9 for absorbing the short, broken fibers. The nonwoven fabric is supported by the support base 6 so that the beating component 8 can beat and suction the nonwoven fabric on the support base 6, reducing the possibility of breakage or damage to the nonwoven fabric. By beating the nonwoven fabric with the beating component 8, the short, broken cotton fibers are detached from the nonwoven fabric, making it easy for the suction component 9 to suck up the short, broken cotton fibers, thus reducing the possibility of short, broken cotton fibers affecting the quality of the nonwoven fabric product.

[0029] like Figure 7 and Figure 8The tapping assembly 8 includes a mounting box 801 positioned directly above the support base 6. The mounting box 801 has a hollow interior. A movable opening 802 communicating with the interior of the mounting box 801 is located on the front side of the mounting box 801. A strip-shaped slot 803 is located above the movable opening 802 on the front side of the mounting box 801. Several evenly arranged locking blocks 804 are engaged within the strip-shaped slot 803. Each locking block 804 extends out of a strip-shaped slot. An upper connecting piece 805 is integrally formed on the portion of the locking block 804 extending out of its slot. The bottom end of the upper connecting piece 805 has an arc-shaped section with a three-quarter annular cross-section integrally formed. The curved plate 806 has an integrated lower connecting plate 807 at one end away from the upper connecting piece 805. The lower connecting piece 807 has an integrated striking rod 808 at one end away from the curved plate 806. The bottom end of the striking rod 808 has an integrated cylindrical striking hammer 809. The inner cavity of the mounting box 801 is equipped with a control component for controlling the swing of the striking rod 808. Each adjacent locking block 804, upper connecting piece 805, curved plate 806, lower connecting piece 807, striking rod 808 and cylindrical striking hammer 809 are all integrated structures and have elasticity, and can be made of rubber or certain thermoplastics.

[0030] like Figure 7 and Figure 8 The control component provides power to drive the beating rod 808 and the cylindrical beating hammer 809 to swing and beat the surface of the nonwoven fabric, thereby causing short and broken fibers to detach from the nonwoven fabric. The cooperation of the strip groove 803 and the locking block 804 reduces the possibility of the beating rod 808 detaching and falling off. The cooperation of the upper connecting piece 805, the arc plate 806 and the lower connecting piece 807 facilitates the swinging and return of the beating rod 808 to its original position.

[0031] like Figure 7 and Figure 8 The control component includes a drive shaft 810 disposed in the inner cavity of the mounting box 801 and rotatably connected to the mounting box 801. A rotating wheel 811 coaxially fixed to the drive shaft 810 is nested on the outer circumference of the drive shaft 810. A plurality of spring blocks 812 corresponding one-to-one with the striking rod 808 are uniformly fixed on the outer circumference of the rotating wheel 811. The end of the spring block 812 facing the striking rod 808 is an inclined surface, and the end of the striking rod 808 near the spring block 812 is an arc surface. A follower gear 813 located next to the rotating wheel 811 and coaxially fixed to the drive shaft 810 is also nested on the outer circumference of the drive shaft 810. A drive gear 814 meshing with the follower gear 813 is rotatably connected to the mounting box 801. A second motor driving the drive gear 814 to rotate is also fixed on the mounting box 801.

[0032] like Figure 7 and Figure 8The second motor provides power to drive the active gear 814, which is coaxially fixed with the output shaft of the second motor, to rotate. The active gear 814 and the follower gear 813 transmit power to drive the drive shaft 810, which is coaxially fixed with the follower gear 813, to rotate. The rotation of the drive shaft 810 will drive the rotating wheel 811, which is coaxially fixed with it, and the spring block 812, which is integrated with the rotating wheel 811, to rotate. When the spring block 812 rotates to contact the arc surface of the striking rod 808, it causes the striking rod 808 to swing, which facilitates the beating of the non-woven fabric.

[0033] like Figure 5 and Figure 6 The suction assembly 9 includes a suction nozzle 901 located next to the mounting box 801. The air inlet of the suction nozzle 901 is close to the surface of the non-woven fabric, and the air outlet is connected to the air inlet of the mini vacuum cleaner 902. The mini vacuum cleaner 902 provides power so that the short and broken fibers that are beaten out are collected by the mini vacuum cleaner 902 through the suction nozzle 901. The mini vacuum cleaner 902 is an existing mechanism, so it will not be described in detail here.

[0034] like Figure 3 and Figure 4 and Figure 5 and Figure 6 The mounting base 7 has a hollow inner cavity. The bottom of the mounting base 7 has a lower movable groove 701 that communicates with the inner cavity of the mounting base 7, and the top has an upper movable groove 702 that communicates with the inner cavity of the mounting base 7. The width of the lower movable groove 701 is slightly larger than the width of the mounting box 801 and slightly larger than the outer diameter of the suction nozzle 901, which facilitates the mounting box 801 to enter or leave the mounting base 7 and also facilitates the movement of the suction nozzle 901. The mounting base 7 is provided with a drive assembly 10 that controls the alternating movement of the suction nozzle 901 and the mounting box 801. The drive assembly 10 provides power to drive the suction nozzle 901 and the mounting box 801 to move alternately. When the beating rod 808 contacts the surface of the nonwoven fabric and completes the beating, it leaves the surface of the nonwoven fabric. At this time, the suction nozzle 901 moves and approaches the surface of the nonwoven fabric to suck up the short and broken fibers that have been beaten. After the sucking action is completed, the suction nozzle 901 moves away from the nonwoven fabric, and the mounting box 801 moves until the beating rod 808 contacts the surface of the nonwoven fabric.

[0035] like Figure 3 and Figure 4 and Figure 5 and Figure 6The drive assembly 10 includes a first swing arm 1001 rotatably connected to the inner cavity wall of the mounting base 7. A second swing arm 1002 is hinged to the end of the first swing arm 1001 away from the mounting base 7. The end of the second swing arm 1002 away from the first swing arm 1001 is hinged to a small vacuum cleaner 902. The small vacuum cleaner 902 is slidably connected to the inner cavity of the mounting base 7. The nozzle 901 is slidably connected to the lower movable groove 701 and extends into the inner cavity of the mounting base 7 through the lower movable groove 701. A third motor that drives the first swing arm 1001 to rotate is fixed on the mounting base 7. The first swing arm 1001 will not contact the inner cavity wall of the mounting base 7 when it rotates in the mounting base 7.

[0036] like Figure 3 and Figure 4 and Figure 5 and Figure 6 Power is provided by the third motor to drive the first swing arm 1001 to rotate. The rotation of the first swing arm 1001 will drive the second swing arm 1002, which is hinged to the first swing arm 1001, to rotate. This will cause the small vacuum cleaner 902, which is adapted to the mounting base 7, to slide within the mounting base 7, thereby causing the nozzle 901 to move along the long side of the mounting base 7.

[0037] like Figure 3 and Figure 4 and Figure 5 and Figure 6 The mounting base 7 has two opposing ear plates 1003 fixed to its top. An upper horizontal shaft 1004 and a lower horizontal shaft 1005 are fixed between the two ear plates 1003. A first connecting rod 1006 is hinged to the outer wall of the mini vacuum cleaner 902. A second connecting rod 1007 is hinged to the end of the first connecting rod 1006 away from the mini vacuum cleaner 902. The middle position of the second connecting rod 1007 is nested outside the lower horizontal shaft 1005 and rotatably connected to it. The end of the second connecting rod 1007 away from the first connecting rod 1006 is hinged to... A third connecting rod 1008 is connected. The bottom end of the third connecting rod 1008 enters the inner cavity of the mounting base 7 through the upper movable groove 702. The bottom end of the third connecting rod 1008 entering the inner cavity of the mounting base 7 enters the lower part of the mounting base 7 through the lower movable groove 701. The end of the third connecting rod 1008 entering the lower part of the mounting base 7 is fixed to the mounting box 801. A fourth connecting rod 1009 is nested outside the upper horizontal shaft 1004 and is rotatably connected to the upper horizontal shaft 1004. The end of the fourth connecting rod 1009 away from the upper horizontal shaft 1004 is rotatably connected to the top end of the third connecting rod 1008.

[0038] like Figure 3 and Figure 4 and Figure 5 and Figure 6When the mini vacuum cleaner 902 moves, it will cause the first connecting rod 1006, which is hinged to the mini vacuum cleaner 902, to rotate, which in turn causes the second connecting rod 1007, which is hinged to the first connecting rod 1006, to rotate, thereby causing the third connecting rod 1008, which is hinged to the second connecting rod 1007, to move. By setting the fourth connecting rod 1009, the movement of the third connecting rod 1008 in the vertical direction is limited.

[0039] In use, the power is turned on and the switch is turned on. One end of the nonwoven fabric is detachably fixed to the outer wall of the unwinding wheel 3, and the other end wraps around the unwinding wheel 3 and extends out of it. The nonwoven fabric extending out of the unwinding wheel 3 passes over the first tension roller, then through the second upper tension roller and the second lower tension roller, and contacts them. The nonwoven fabric passing through the second upper tension roller and the second lower tension roller passes over the third tension roller, and then through the slide rail on the support seat 6. The nonwoven fabric passes through the slide rail to... The position of the fabric is limited so that the nonwoven fabric unfolds on the support 6 without wrinkles. The slide and the support 6 do not affect the movement of the nonwoven fabric. The nonwoven fabric passing through the slide passes around the fourth tension roller. The nonwoven fabric passing around the fourth tension roller passes through the fifth upper tension roller and the fifth lower tension roller and contacts the fifth upper tension roller and the fifth lower tension roller. The nonwoven fabric passing through the fifth upper tension roller and the fifth lower tension roller passes around the sixth tension roller. The nonwoven fabric passing around the sixth tension roller is wrapped around the outside of the take-up roller 4 and is detachably fixed to the outer wall of the take-up wheel 5.

[0040] Turn on the first motor, which provides power to drive the unwinding roller 2 and the take-up roller 4 to rotate. This causes the nonwoven fabric on the unwinding roller 3 to pass sequentially through the first tensioning roller, the second upper tensioning roller, the second lower tensioning roller, the third tensioning roller, the support seat 6, the fourth tensioning roller, the fifth upper tensioning roller, the fifth lower tensioning roller, and the sixth tensioning roller. After that, it wraps around the take-up roller 5 and is collected by the take-up roller 4.

[0041] At the same time, the third motor is turned on, and the third motor provides power to drive the first swing arm 1001 to rotate. The rotation of the first swing arm 1001 will drive the second swing arm 1002, which is hinged to the first swing arm 1001, to rotate. This will drive the small vacuum cleaner 902, which is adapted to the mounting base 7, to slide within the mounting base 7, thereby driving the nozzle 901 to move along the long side of the mounting base 7. The nozzle 901 moves and gradually moves away from the non-woven fabric.

[0042] When the small vacuum cleaner 902 moves away from the non-woven fabric, it will cause the first link 1006, which is hinged to the small vacuum cleaner 902, to rotate. The rotation of the first link 1006 will cause the second link 1007, which is hinged to the first link 1006, to rotate around the lower horizontal axis 1005. The rotation of the second link 1007 will cause the third link 1008, which is hinged to the second link 1007, to move towards the non-woven fabric. The movement of the third link 1008 will cause the fourth link 1009, which is hinged to the third link 1008, to rotate around the upper horizontal axis 1004.

[0043] The movement of the third link 1008 toward the nonwoven fabric will cause the mounting box 801, which is fixed to the bottom of the third link 1008, to extend out of the mounting base 7 and approach the nonwoven fabric. At the same time, the second motor is turned on, and the second motor provides power to drive the drive gear 814, which is fixed coaxially with the output shaft of the second motor, to rotate. The rotation of the drive gear 814 will drive the follower gear 813, which meshes with the drive gear 814, to rotate. The rotation of the follower gear 813 will drive the drive shaft 810, which is fixed coaxially with the follower gear 813, to rotate. The rotation of the drive shaft 810 will drive the rotating wheel 811, which is fixed coaxially with it, and the spring block 812, which is integrated with the rotating wheel 811, to rotate. When the spring block 812 rotates to contact the arc surface of the striking rod 808, the striking rod 808 swings, which facilitates the beating of the nonwoven fabric. At this time, the short and broken fibers adsorbed on the nonwoven fabric are beaten away from the nonwoven fabric and are no longer adsorbed on the nonwoven fabric and difficult to detach.

[0044] Then, the third motor continues to drive the first swing arm 1001 to rotate. The rotation of the first swing arm 1001 causes the small vacuum cleaner 902 to move towards the non-woven fabric. The small vacuum cleaner 902 is turned on, and the nozzle 901 is close to the non-woven fabric, so that the short and broken fibers that have detached from the non-woven fabric enter the nozzle 901 and are collected by the small vacuum cleaner 902. At the same time, the movement of the small vacuum cleaner 902 will drive the first connecting rod 1006, the second connecting rod 1007, the third connecting rod 1008 and the fourth connecting rod 1009 to rotate and move upward without affecting the movement of the small vacuum cleaner 902. The above operation is repeated to repeatedly hammer the non-woven fabric on the support 6. At the same time, technicians need to observe to prevent the non-woven fabric from wrinkling under the hammering. Once wrinkles are formed, technicians need to help to smooth them out so as not to affect the winding of the non-woven fabric.

[0045] The above-described specific embodiments are merely preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Various modifications, substitutions, and improvements made by those skilled in the art to the technical solutions of the present invention based on the provided description and drawings, without departing from the design concept and spirit of the present invention, should all fall within the scope of protection of the present invention. The scope of protection of the present invention is determined by the claims.

Claims

1. A nonwoven fabric defibrillation device, comprising: The machine includes a frame (1), on which an unwinding roller (2) is rotatably connected to the left side, and an unwinding wheel (3) is detachably fixedly connected to the unwinding roller (2) outside the unwinding roller (2). On the right side of the frame (1), a take-up roller (4) is rotatably connected to the take-up roller (4), and a take-up wheel (5) is rotatably connected to the take-up roller (4) outside the take-up roller (4). First motors for driving the unwinding roller (2) and the take-up roller (4) to rotate are fixed on the left and right sides of the frame (1), respectively. A machine located between the unwinding roller (2) and the take-up roller (4) is fixed in the middle of the frame (1). The support seat (6) between the rollers (4) has one end of the nonwoven fabric fixed to the outer wall of the unwinding wheel (3) and the other end wrapped around the unwinding wheel (3) and extending out of the unwinding wheel (3). The nonwoven fabric extending out of the unwinding wheel (3) passes through the support seat (6) and wraps around the winding wheel (5) and is fixed to the end of the winding wheel (5). A mounting seat (7) fixed to the frame (1) is provided above the support seat (6). The mounting seat (7) is provided with a beating component (8) for beating the nonwoven fabric and a suction component (9) for absorbing the short and broken fibers that are beated.

2. The apparatus of claim 1, wherein The tapping assembly (8) includes a mounting box (801) positioned directly above the support base (6). The mounting box (801) has a hollow interior. A movable opening (802) communicating with the interior of the mounting box (801) is provided on the front side of the mounting box (801). A strip-shaped slot (803) located above the movable opening (802) is provided on the front side of the mounting box (801). Several evenly arranged locking blocks (804) are engaged and connected within the strip-shaped slot (803). Each locking block (804) extends out a strip-shaped groove. The groove is integrated with an upper connecting piece (805). The bottom end of the upper connecting piece (805) is integrated with an arc plate (806) with a cross-section of three-quarters annular. The end of the arc plate (806) away from the upper connecting piece (805) is integrated with a lower connecting piece (807). The end of the lower connecting piece (807) away from the arc plate (806) is integrated with a striking rod (808). The bottom end of the striking rod (808) is integrated with a cylindrical striking hammer (809). The inner cavity of the mounting box (801) is provided with a control component for controlling the swing of the striking rod (808).

3. A nonwoven lint removing device according to claim 2, wherein The control component includes a drive shaft (810) disposed in the inner cavity of the mounting box (801) and rotatably connected to the mounting box (801). The outer circumferential wall of the drive shaft (810) is nested with a rotating wheel (811) fixed coaxially with the drive shaft (810). The outer circumferential wall of the rotating wheel (811) is uniformly fixed with a plurality of spring blocks (812) corresponding one-to-one with the striking rod (808). The end of the spring block (812) facing the striking rod (808) is an inclined surface, and the end of the striking rod (808) near the spring block (812) is an arc surface. The outer circumferential wall of the drive shaft (810) is also nested with a follower gear (813) located next to the rotating wheel (811) and fixed coaxially with the drive shaft (810). The mounting box (801) is rotatably connected with a drive gear (814) that meshes with the follower gear (813). The mounting box (801) is also fixed with a second motor that drives the drive gear (814) to rotate.

4. A nonwoven lint removing device according to claim 3, wherein The suction assembly (9) includes a suction nozzle (901) located next to the mounting box (801). The air inlet of the suction nozzle (901) is close to the surface of the non-woven fabric, and the air outlet is connected to the air inlet of a small vacuum cleaner (902).

5. A nonwoven lint removing device according to claim 4, wherein The mounting base (7) has a hollow inner cavity. The bottom end of the mounting base (7) has a lower movable groove (701) that communicates with the inner cavity of the mounting base (7), and the top end has an upper movable groove (702) that communicates with the inner cavity of the mounting base (7). The mounting base (7) is provided with a drive assembly (10) that controls the alternating movement of the suction nozzle (901) and the mounting box (801).

6. A nonwoven lint removing device according to claim 5, wherein The drive assembly (10) includes a first swing arm (1001) rotatably connected to the inner cavity wall of the mounting base (7), a second swing arm (1002) is hinged to the end of the first swing arm (1001) away from the mounting base (7), the end of the second swing arm (1002) away from the first swing arm (1001) is hinged to a small vacuum cleaner (902), the small vacuum cleaner (902) is slidably connected to the inner cavity of the mounting base (7), the nozzle (901) is slidably connected to the lower movable groove (701) and extends to the inner cavity of the mounting base (7) through the lower movable groove (701), and a third motor that drives the first swing arm (1001) to rotate is fixed on the mounting base (7).

7. A nonwoven lint removing device according to claim 6, wherein The mounting base (7) has two oppositely arranged ear plates (1003) fixed on its top. An upper horizontal shaft (1004) and a lower horizontal shaft (1005) are fixed between the two ear plates (1003). A first connecting rod (1006) is hinged to the outer wall of the mini vacuum cleaner (902). A second connecting rod (1007) is hinged to the end of the first connecting rod (1006) away from the mini vacuum cleaner (902). The second connecting rod (1007) is nested in the middle of the lower horizontal shaft (1005) and is connected to the lower horizontal shaft. (1005) Rotary connection, the second link (1007) is hinged to the third link (1008) at the end away from the first link (1006), the bottom end of the third link (1008) enters the inner cavity of the mounting base (7) through the upper movable groove (702), the bottom end of the third link (1008) entering the inner cavity of the mounting base (7) enters the lower part of the mounting base (7) through the lower movable groove (701), and the end of the third link (1008) entering the lower part of the mounting base (7) is fixed to the mounting box (801); The upper horizontal shaft (1004) is nested with a fourth link (1009) that is rotatably connected to the upper horizontal shaft (1004). The end of the fourth link (1009) away from the upper horizontal shaft (1004) is rotatably connected to the top end of the third link (1008).