Processing device for resisting bacteria and removing peculiar smell of clothes

By using ultraviolet lamps for ultraviolet irradiation and porous sponge activated carbon rods to adsorb odor factors in the fabric processing device, the problems of bacteria and odor in the fabric are solved, improving the quality of clothing and the health of wearing it.

CN121868530APending Publication Date: 2026-04-17SHENZHEN WANGHAICHAO SPORTS GOODS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN WANGHAICHAO SPORTS GOODS CO LTD
Filing Date
2023-09-19
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Before fabric is cut into clothing, microorganisms and chemical residues can cause bacterial growth and odors, affecting the quality of the clothing and the health of the wearer.

Method used

Ultraviolet lamps are used for ultraviolet irradiation sterilization, combined with porous sponges and activated carbon rods to absorb odor factors. By placing porous sponges and activated carbon rods in the fabric to absorb odor factors, and using a bellows to drive airflow, the adsorption effect is enhanced.

Benefits of technology

It effectively removes bacteria and odors from fabrics, improves the quality of finished garments, and ensures healthy wear.

✦ Generated by Eureka AI based on patent content.

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    Figure CN121868530A_ABST
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Abstract

The invention discloses a processing device capable of resisting bacteria and removing peculiar smell of clothes. The processing device comprises a rack, a processing box, a bacteria removing assembly and a peculiar smell removing assembly. A material passing hole is formed in the middle of the processing box, the sterilization assembly comprises a control box and a plurality of ultraviolet lamps electrically connected with the control box, and the ultraviolet lamps are used for conducting ultraviolet irradiation sterilization on cloth passing through the material passing hole; the peculiar smell removing assembly comprises a porous sponge and a plurality of activated carbon rods; the porous sponge is arranged near the material passing hole, and a plurality of through holes are formed in the direction perpendicular to the cloth in the normal direction; the activated carbon rods are arranged on the side, away from the material passing holes, of the porous sponge at intervals. The porous sponge and the activated carbon rod are used for adsorbing peculiar smell factors of the cloth passing through the material passing holes. According to the cloth cutting device, peculiar smell factors of cloth passing through the material passing holes can be effectively adsorbed, peculiar smell caused by microbial fermentation and chemical synthesis residues in the cloth can be removed, finally, the quality of the cloth before cutting processing is improved, and the health of wearers is guaranteed.
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Description

[Technical Field]

[0001] This invention relates to the field of garment processing technology, and in particular to an antibacterial and deodorizing garment processing device. [Background Technology]

[0002] Clothing, as an item worn close to the skin, serves various purposes such as providing warmth and enhancing personal image. Therefore, the quality of clothing itself is a crucial factor affecting the health of the wearer. However, before fabric is cut into various garments, factors such as microorganisms, chemical residues, and storage and transportation environments can lead to the growth of bacteria and the development of various odors. All of these factors can affect the quality of the finished garment and the health of the wearer.

[0003] Therefore, it is necessary to provide an antibacterial and deodorizing garment processing device to overcome the above-mentioned defects. [Summary of the Invention]

[0004] The purpose of this invention is to provide an antibacterial and deodorizing garment processing device, which aims to improve the problem that fabrics have a large number of bacteria and are prone to producing various odors before cutting and processing, thereby improving the quality of finished garments and ensuring the health of wearers.

[0005] To achieve the above objectives, the present invention provides an antibacterial and deodorizing clothing processing device, comprising a frame, a processing box disposed on one side of the frame and having a receiving cavity, and an antibacterial component and an deodorizing component disposed within the receiving cavity;

[0006] The processing box has a material passage hole in the middle that penetrates the inner walls of opposite sides of the receiving cavity, and the material passage hole divides the receiving cavity into a first cavity located at the top and a second cavity located at the bottom;

[0007] The sterilization component is located on the top of the inner wall of the first cavity and includes a control box and a plurality of ultraviolet lamps electrically connected to the control box. The ultraviolet lamps are used to sterilize the fabric passing through the material passage by ultraviolet irradiation.

[0008] The odor removal component, located in the second cavity, includes a porous sponge and multiple activated carbon rods. The porous sponge is positioned near the material passage hole and has multiple through holes in a direction perpendicular to the fabric. The activated carbon rods are spaced apart on the side of the porous sponge away from the material passage hole. The porous sponge and the activated carbon rods are used to adsorb odor factors from the fabric passing through the material passage hole.

[0009] In a preferred embodiment, the plurality of ultraviolet lamps are arranged in two rows, and the extension direction of each row is perpendicular to the movement direction of the fabric.

[0010] In a preferred embodiment, the bottom of the processing box on the side away from the frame is provided with an air outlet communicating with the second cavity; the second cavity is also provided with a wind box; the wind box is spaced below the activated carbon rod and is used to drive air to flow from the material passage hole to the air outlet.

[0011] In a preferred embodiment, the inner wall of the air outlet is further provided with a filter.

[0012] In a preferred embodiment, the frame includes a housing with a receiving groove and a first adjustment assembly mounted on the top of the receiving groove near the processing box; the first adjustment assembly includes a first support and a pair of first adjustment rollers and a first guide roller both mounted on the first support; the pair of first guide rollers are pressed together in a vertical direction to press together the fabric guided around the first guide rollers and to allow the fabric to enter the material passage hole in a horizontal direction.

[0013] In a preferred embodiment, the first bracket includes a pair of vertically arranged first mounting plates, a first connecting plate connected to the bottom of the pair of first mounting plates, and a first hook disposed on one side of the pair of first mounting plates that is far apart from each other; the two ends of the first guide roller and the first adjusting roller located below are respectively rotatably inserted into the pair of first mounting plates; the pair of first hooks are respectively hooked on opposite sides of the inner wall of the receiving groove.

[0014] In a preferred embodiment, each of the first mounting plates is further provided with a threaded adjustment member at its top, the bottom of which is connected to the first adjustment roller located above; the threaded adjustment member is used to adjust the pressing force between a pair of first adjustment rollers.

[0015] In a preferred embodiment, a second adjustment assembly is mounted on the top of the receiving groove on the side away from the processing box; the second adjustment assembly includes a second support and a second adjustment roller and a second guide roller both mounted on the second support; the second adjustment roller and the second guide roller are used to guide the fabric conveyed from the outside into the receiving groove.

[0016] In a preferred embodiment, the second bracket includes a pair of vertically arranged second mounting plates, a second connecting plate connected to the bottom of the pair of second mounting plates, and a second hook disposed on one side of the pair of second mounting plates that is far apart from each other; the two ends of the second guide roller and the second adjusting roller are respectively rotatably inserted into the pair of second mounting plates; the pair of second hooks are respectively hooked against the opposite sides of the inner wall of the receiving groove.

[0017] In a preferred embodiment, at least one pressing component is further provided between the first adjusting component and the second adjusting component; each pressing component includes a third support and a fixed roller and a pressing roller both disposed on the third support; the third support includes a pair of vertically arranged third mounting plates, a third connecting plate connected to the bottom of the pair of third mounting plates, and a third hook disposed on the opposite side of the pair of third mounting plates, the pair of third hooks respectively abutting against the opposite sides of the inner wall of the receiving groove; both ends of the fixed roller are rotatably inserted into the pair of third mounting plates; a driving groove is provided on the side of the pair of third mounting plates that are close to each other, and a spring is provided in each driving groove, the two ends of the pressing roller respectively extending into the two driving grooves and connected to the bottom of the spring; the spring is used to drive the pressing roller to press the fixed roller in a vertical direction, so as to flatten the fabric passing between the fixed roller and the pressing roller.

[0018] The antibacterial and deodorizing clothing processing device provided by the present invention can effectively sterilize the fabric passing through the feed hole by irradiating it with ultraviolet light by setting multiple ultraviolet lamps at the top of the first cavity; at the same time, by setting porous sponge and multiple activated carbon rods in the second cavity, the odor factors of the fabric passing through the feed hole can be effectively adsorbed to remove the odor caused by microbial fermentation and chemical synthesis residues in the fabric, thereby improving the quality of the fabric before cutting and processing and ensuring the health of the wearer. [Attached Image Description]

[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 A perspective view of the antibacterial and deodorizing clothing processing device provided by the present invention during fabric processing;

[0021] Figure 2 for Figure 1 A three-dimensional view of the antibacterial and deodorizing clothing processing device shown;

[0022] Figure 3 for Figure 1 The diagram shown is an exploded perspective view of the antibacterial and deodorizing clothing processing device, with the processing box hidden.

[0023] Figure 4 for Figure 1 The diagram shows a longitudinal section of an antibacterial and deodorizing garment processing device.

[0024] Labels in the diagram: 100, Antibacterial and deodorizing garment processing device; 200, Fabric; 10, Frame; 101, Receiving tank; 102, Box body; 11, First adjusting component; 111, First support; 1111, First mounting plate; 1112, First connecting plate; 1113, First hook; 1114, Threaded adjusting component; 112, First adjusting roller; 113, First guide roller; 12, Second adjusting component; 121, Second support; 1211, Second mounting plate; 1212, Second connecting plate; 1213, Second hook; 122, Second adjusting roller; 123, Second guide roller ; 13. Pressing assembly; 131. Third bracket; 1311. Third mounting plate; 1312. Third connecting plate; 1313. Third hook; 1314. Drive groove; 1315. Spring; 132. Fixed roller; 133. Pressing roller; 20. Processing box; 201. Receiving cavity; 2011. First cavity; 2012. Second cavity; 202. Material passage hole; 203. Air outlet; 30. Sterilization assembly; 31. Control box; 32. Ultraviolet lamp; 40. Odor removal assembly; 41. Porous sponge; 411. Through hole; 42. Activated carbon rod; 43. Air box; 44. Filter element.

Detailed Implementation Methods

[0025] To make the objectives, technical solutions, and beneficial effects of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described in this specification are merely for explaining the invention and are not intended to limit the invention.

[0026] It should also be understood that the terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the invention. As used in this specification and the appended claims, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise.

[0027] It should also be further understood that the term "and / or" as used in this specification and the appended claims refers to any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.

[0028] In an embodiment of the present invention, an antibacterial and deodorizing garment processing device 100 is provided for sterilizing and deodorizing fabric 200 and finished garments.

[0029] like Figures 1-4 As shown, the antibacterial and deodorizing clothing processing device 100 includes a frame 10, a processing box 20 located on one side of the frame 10 and having a receiving cavity 201, and a sterilization component 30 and a deodorizing component 40 both located in the receiving cavity 201.

[0030] The frame 10 and the processing box 20 can be arranged side by side or as a single unit.

[0031] Specifically, the processing box 20 has a material passage hole 202 in the middle, which penetrates the inner walls of opposite sides of the receiving cavity 201. The material passage hole 202 is opened horizontally to allow clothing or fabric 200 to enter and exit, and divides the receiving cavity 201 into a first cavity 2011 located above and a second cavity 2012 located below. That is, the fabric 200 passes between the first cavity 2011 and the second cavity 2012.

[0032] The sterilization assembly 30 is located on the top of the inner wall of the first cavity 2011, and includes a control box 31 and multiple ultraviolet lamps 32 electrically connected to the control box 31. The control box 31 includes a control chip and a control switch (not shown in the figure), which can be used to adjust the brightness and number of ultraviolet lamps 32. The ultraviolet lamps 32 emit ultraviolet light to sterilize the fabric 200 passing through the feed hole 202. It is understood that the fabric 200 passing through the feed hole 202 is in an unfolded state, and the ultraviolet lamps 32 can sterilize the fabric 200 in the irradiation area below.

[0033] The system comprises multiple ultraviolet lamps 32 arranged in two rows, with each row extending perpendicular to the direction of fabric 200's movement. The lamps 32 within the same row are equally spaced, allowing them to irradiate the fabric 200 perpendicular to its direction of movement. Furthermore, the two rows of ultraviolet lamps 32 are positioned parallel to the direction of fabric 200's movement to increase the irradiation area, and the two rows can interweave to enhance the sterilization effect of the ultraviolet light.

[0034] The odor removal component 40 is located within the second cavity 2012 and includes a porous sponge 41 and multiple activated carbon rods 42. The porous sponge 41 is located near the feed hole 202, that is, below the fabric 200. It contains many micropores and can absorb odor factors emitted by the fabric 200, such as those generated by microbial fermentation or chemical synthesis residues. The porous sponge 41 is block-shaped and has multiple through holes 411 in a direction perpendicular to the fabric 200, that is, the through holes 411 are opened in the vertical direction.

[0035] Activated carbon rods 42 are spaced apart on the side of the porous sponge 41 away from the feed holes 202. Specifically, multiple activated carbon rods 42 are arranged on the same horizontal plane. Odor factors in the fabric 200 pass through the through holes 411, causing the activated carbon rods 42 to adsorb the odor factors of the fabric 200 that have passed through the feed holes 202. It should be noted that microorganisms in the fabric 200 will also produce certain odor factors after being irradiated with ultraviolet light, and these odor factors will also be adsorbed by the porous sponge 41 and the activated carbon rods 42.

[0036] Among them, the porous sponge 41 and the activated carbon rod 42 can adsorb different types of odor factors according to their own characteristics, thereby improving the odor removal effect.

[0037] Furthermore, in one embodiment, the bottom of the processing box 20 on the side away from the frame 10 is also provided with an air outlet 203 communicating with the second cavity 2012. Therefore, an air duct is formed in the second cavity 2012 between the material passage 202 and the air outlet 203. The second cavity 2012 is also provided with a bellows 43. Specifically, the bellows 43 are spaced below the activated carbon rod 42 and are used to drive air to flow from the material passage 202 to the air outlet 203, thereby driving the odor factors in the fabric 200 to move into the porous sponge 41 and the activated carbon rod 42, so as to improve the adsorption effect of odor factors and also promote the fabric 200 to release odor factors.

[0038] Furthermore, the inner wall of the air outlet 203 is also equipped with a filter element 44. The filter element 44 can be a filter screen, sponge, or other components, which can prevent external debris and even dust from entering the second cavity 2012 from the air outlet 203.

[0039] Furthermore, in one embodiment, combined with Figure 1 and Figure 2 As shown, the frame 10 includes a housing 102 with a receiving slot 101 and a first adjustment assembly 11 mounted on the top of the receiving slot 101 near the processing box 20.

[0040] The box 102 is a hollow cuboid shape, and the top surface is removed to form a groove structure, namely the receiving groove 101. The fabric 200 will pass through the receiving groove 101 to unfold the fabric 200.

[0041] The first adjustment assembly 11 includes a first support 111 and a pair of first adjustment rollers 112 and a first guide roller 113, both disposed on the first support 111. The pair of first adjustment rollers 112 and the first guide roller 113 are arranged vertically. The pair of first guide rollers 113 are arranged vertically to press the fabric 200, which is guided around the first guide rollers 113, and to allow the fabric 200 to enter the feed hole 202 horizontally. That is, the fabric 200 is guided around the first guide rollers 113 and then passes between the pair of first adjustment rollers 112, so that the wrinkles of the fabric 200 are flattened and unfolded, facilitating subsequent ultraviolet irradiation and avoiding irradiation dead zones.

[0042] Specifically, the first bracket 111 includes a pair of vertically arranged first mounting plates 1111, a first connecting plate 1112 connected to the bottom of the pair of first mounting plates 1111, and a first hook 1113 disposed on one side of the pair of first mounting plates 1111 that is far apart from each other. The pair of first mounting plates 1111 and the first connecting plate 1112 together form a right-angled U-shaped structure. The two ends of the first guide roller 113 and the first adjusting roller 112 located below are rotatably inserted into the pair of first mounting plates 1111. The pair of first hooks 1113 are respectively hooked against the opposite sides of the inner wall of the receiving groove 101, so that the right-angled U-shaped structure is held inside the receiving groove 101.

[0043] Each first mounting plate 1111 is further provided with a threaded adjusting member 1114 at its top, and the bottom of the threaded adjusting member 1114 is connected to the first adjusting roller 112 located above it. That is, the top of the first mounting plate 1111 is provided with a threaded hole, and the screw of the threaded adjusting member 1114 cooperates with the threaded hole, thereby changing the relative position of the screw of the threaded adjusting member 1114 in the threaded hole, so as to adjust the pressing force between the pair of first adjusting rollers 112, thereby adapting to fabrics 200 of different thicknesses and materials.

[0044] Furthermore, a second adjusting assembly 12 is mounted on the top of the receiving tank 101 on the side away from the processing box 20. The second adjusting assembly 12 includes a second support 121 and a second adjusting roller 122 and a second guide roller 123, both mounted on the second support 121. The second adjusting roller 122 and the second guide roller 123 are used to guide the fabric 200 conveyed from the outside into the receiving tank 101.

[0045] Specifically, the second bracket 121 includes a pair of vertically arranged second mounting plates 1211, a second connecting plate 1212 connected to the bottom of the pair of second mounting plates 1211, and second hooks 1213 disposed on opposite sides of the pair of second mounting plates 1211. The pair of second mounting plates 1211 and the second connecting plate 1212 together form a right-angled U-shaped structure. The two ends of the second guide roller 123 and the second adjusting roller 122 are rotatably inserted into the pair of second mounting plates 1211; the pair of second hooks 1213 are respectively hooked against opposite sides of the inner wall of the receiving groove 101, thereby causing the right-angled U-shaped structure to be held inside the receiving groove 101.

[0046] Furthermore, at least one pressing component 13 is provided between the first adjusting component 11 and the second adjusting component 12. Each pressing component 13 includes a third support 131 and a fixed roller 132 and a pressing roller 133 both disposed on the third support 131.

[0047] Specifically, the third support 131 includes a pair of vertically arranged third mounting plates 1311, a third connecting plate 1312 connected to the bottom of the pair of third mounting plates 1311, and third hooks 1313 located on opposite sides of the pair of third mounting plates 1311. The pair of third hooks 1313 are respectively hooked onto opposite sides of the inner wall of the receiving groove 101. The two ends of the fixed roller 132 are rotatably inserted into the pair of third mounting plates 1311. A drive groove 1314 is provided on the side of the pair of third mounting plates 1311 that is close to each other. A spring 1315 is provided in each drive groove 1314. The two ends of the pressing roller 133 extend into the two drive grooves 1314 respectively and are connected to the bottom of the spring 1315. The spring 1315 is used to drive the pressing roller 133 to press the fixed roller 132 in the vertical direction, so as to flatten the fabric 200 passing between the fixed roller 132 and the pressing roller 133. In this embodiment, there are two sets of pressing components 13, which work together to flatten the fabric 200 and ensure the stretching and flattening effect of the fabric 200.

[0048] In summary, the antibacterial and deodorizing clothing processing device 100 provided by the present invention effectively sterilizes the fabric 200 passing through the material passage 202 by irradiating it with ultraviolet light by setting multiple ultraviolet lamps 32 at the top of the first cavity 2011; at the same time, by setting porous sponge 41 and multiple activated carbon rods 42 in the second cavity 2012, it can effectively adsorb odor factors of the fabric 200 passing through the material passage 202, thereby removing odors caused by microbial fermentation and chemical synthesis residues in the fabric 200, ultimately improving the quality of the fabric 200 before cutting and processing, and ensuring the health of the wearer.

[0049] The present invention is not limited to the description in the specification and embodiments, and other advantages and modifications can be readily realized by those skilled in the art. Therefore, without departing from the spirit and scope of the general concept as defined by the claims and their equivalents, the present invention is not limited to the specific details, representative devices and illustrated examples shown and described herein.

Claims

1. An antibacterial and deodorizing garment processing device, characterized in that, It includes a frame, a processing box located on one side of the frame and having a receiving cavity, and a sterilization component and an odor removal component both located in the receiving cavity; The processing box has a material passage hole in the middle that penetrates the inner walls of opposite sides of the receiving cavity, and the material passage hole divides the receiving cavity into a first cavity located at the top and a second cavity located at the bottom; The sterilization component is located on the top of the inner wall of the first cavity, and includes a control box and a plurality of ultraviolet lamps electrically connected to the control box. The ultraviolet lamps are used to sterilize the fabric passing through the material passage with ultraviolet light. The odor removal component, located in the second cavity, includes a porous sponge and multiple activated carbon rods. The porous sponge is positioned near the material passage hole and has multiple through holes in a direction perpendicular to the fabric. The activated carbon rods are spaced apart on the side of the porous sponge away from the material passage hole. The porous sponge and the activated carbon rods are used to adsorb odor factors from the fabric passing through the material passage hole.

2. The antibacterial and deodorizing clothing processing device as described in claim 1, characterized in that, The multiple ultraviolet lamps are arranged in two rows, and the extension direction of each row is perpendicular to the movement direction of the fabric.

3. The antibacterial and deodorizing clothing processing device as described in claim 1, characterized in that, The bottom of the processing box on the side away from the frame is also provided with an air outlet communicating with the second cavity; the second cavity is also provided with a wind box; the wind box is spaced below the activated carbon rod and is used to drive air to flow from the material passage hole to the air outlet.

4. The antibacterial and deodorizing clothing processing device as described in claim 3, characterized in that, The inner wall of the air outlet is also equipped with a filter.

5. The antibacterial and deodorizing garment processing device as described in claim 1, characterized in that, The frame includes a housing with a receiving groove and a first adjustment assembly mounted on the top of the receiving groove near the processing box. The first adjustment assembly includes a first support and a pair of first adjustment rollers and a first guide rollers, both mounted on the first support. The pair of first guide rollers are pressed together in a vertical direction to press together the fabric guided around the first guide rollers and to allow the fabric to enter the material passage in a horizontal direction.

6. The antibacterial and deodorizing clothing processing device as described in claim 5, characterized in that, The first bracket includes a pair of vertically arranged first mounting plates, a first connecting plate connected to the bottom of the pair of first mounting plates, and a first hook disposed on one side of the pair of first mounting plates that are far apart from each other; the two ends of the first guide roller and the first adjusting roller located below are respectively rotatably inserted into the pair of first mounting plates; the pair of first hooks are respectively hooked on opposite sides of the inner wall of the receiving groove.

7. The antibacterial and deodorizing clothing processing device as described in claim 6, characterized in that, Each of the first mounting plates is also provided with a threaded adjustment member at its top, the bottom of which is connected to the first adjustment roller located above; the threaded adjustment member is used to adjust the pressing force between a pair of first adjustment rollers.

8. The antibacterial and deodorizing garment processing device as described in claim 5, characterized in that, A second adjustment assembly is mounted on the top of the receiving trough on the side away from the processing box; the second adjustment assembly includes a second bracket and a second adjustment roller and a second guide roller, both mounted on the second bracket; the second adjustment roller and the second guide roller are used to guide the fabric conveyed from the outside into the receiving trough.

9. The antibacterial and deodorizing clothing processing device as described in claim 8, characterized in that, The second bracket includes a pair of vertically arranged second mounting plates, a second connecting plate connected to the bottom of the pair of second mounting plates, and a second hook disposed on one side of the pair of second mounting plates that is far apart from each other; the two ends of the second guide roller and the second adjusting roller are respectively rotatably inserted into the pair of second mounting plates; the pair of second hooks are respectively hooked against the opposite sides of the inner wall of the receiving groove.

10. The antibacterial and deodorizing garment processing device as described in claim 8, characterized in that, At least one pressing component is provided between the first adjusting component and the second adjusting component; each pressing component includes a third bracket and a fixed roller and a pressing roller both disposed on the third bracket; the third bracket includes a pair of vertically arranged third mounting plates, a third connecting plate connected to the bottom of the pair of third mounting plates, and a third hook disposed on the opposite side of the pair of third mounting plates, the pair of third hooks respectively abutting against the opposite sides of the inner wall of the receiving groove; both ends of the fixed roller are rotatably inserted into the pair of third mounting plates; a driving groove is provided on the side of the pair of third mounting plates that are close to each other, and a spring is provided in each driving groove, the two ends of the pressing roller respectively extending into the two driving grooves and connected to the bottom of the spring; the spring is used to drive the pressing roller to press the fixed roller in the vertical direction, so as to flatten the fabric passing between the fixed roller and the pressing roller.