Textile fabric desizing device for textile production

By combining the finishing components and the circulating pump, the problems of uneven penetration and wrinkles in the desizing device for textile fabrics were solved, achieving uniform desizing and smooth winding of the fabric, thus improving the quality of textile production.

CN120844310APending Publication Date: 2025-10-28KUNSHAN HUAYANG NEW MATERIAL
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Patent Information

Application Number
CN202511008388.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-22
Publication Date
2025-10-28

AI Technical Summary

Technical Problem

Existing textile desizing devices often fail to fully expand the fiber gaps during use, resulting in uneven penetration of the desizing solution and affecting the desizing effect. Furthermore, mechanical rubbing can easily cause fabric wrinkles, damaging the smoothness and winding regularity.

Method used

The finishing components utilize a storage shell and scraper structure, and through the cooperation of an eccentric rod and an electric push rod, the fabric is rubbed and smoothed up and down. Combined with the slurry circulation of the circulating pump, the slurry is ensured to penetrate evenly.

Benefits of technology

It improves the contact effect between the desizing solution and the fiber, maintains the flatness and winding regularity of the fabric, reduces the difficulty of subsequent processing, and ensures the uniformity of the desizing effect.

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Abstract

The invention relates to the technical field of textile production, in particular to a textile fabric desizing device for textile production, which comprises a machine body, a discharging assembly and a winding assembly arranged at two ends of the machine body, and a plurality of finishing assemblies arranged in the machine body, a lifting assembly arranged above a storage shell, and a transmission assembly arranged in the machine body, the circulating assembly is arranged in the machine body, and the fan is fixedly installed on the upper surface of the machine body. According to the device, the storage shell moves upwards, the protruding blocks move out of the storage shell and abut against the fabric for rubbing, the storage shell moves downwards, the protruding blocks are stored in the storage shell, the scraping plates move out of the storage shell and abut against the fabric to move downwards, meanwhile, the storage shell drives the scraping plates to move towards the two sides, and wrinkles generated by rubbing of the protruding blocks are smoothed through downward and outward force; the wrinkles are prevented from being further evolved into deep folding in the subsequent conveying and rolling process, the smoothness of the fabric form and the regularity of subsequent rolling are kept, and the difficulty brought to the subsequent processing link is reduced.
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Description

Technical Field

[0001] This invention relates to the field of textile production technology, specifically to a desizing device for textile fabrics used in textile production. Background Technology

[0002] Textiles are a general term derived from spinning and weaving, including hand spinning and weaving. Before weaving, the warp yarns are usually sized (the warp yarns are soaked in sizing solution and then dried) to make the fibers in the yarn stick together and form a thin film on the yarn surface, which facilitates weaving. Cotton fabrics are generally sized with starch or modified starch sizing solution or polyvinyl alcohol and polyacrylate sizing solution. After that, the fabric is desized by treating it with acid, alkali, enzymes, etc.

[0003] Existing textile desizing devices typically guide the fabric around multiple guide rollers, immersing it in the desizing solution to achieve a contact reaction. When the fabric passes through the desizing solution under tension, the fiber gaps cannot fully relax, hindering the effective penetration and diffusion of the desizing solution into the fiber interior and between yarns. This results in an uneven desizing reaction and affects the desizing effect. To improve the penetration problem, some devices have introduced a mechanical rubbing mechanism, which applies a rubbing action to the fabric underwater to enhance the contact between the desizing solution and the fibers. However, this method easily causes local wrinkles in the fabric. During subsequent conveying and winding, these wrinkles can easily evolve into deep folds, not only damaging the flatness of the fabric shape but also affecting the regularity of subsequent winding, creating difficulties for subsequent processing stages. Summary of the Invention

[0004] The purpose of this invention is to provide a desizing device for textile fabrics used in textile production, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A textile desizing device for textile production includes a machine body and a feeding assembly and a winding assembly disposed at both ends of the machine body. The machine body contains multiple guide rollers and extrusion rollers, and also includes:

[0007] Multiple sorting components are set inside the body. The sorting components include two storage shells. A first connecting plate is symmetrically and movably arranged inside the storage shell. Multiple protrusions are fixedly installed on one side surface of the first connecting plate. A second connecting plate is symmetrically and movably arranged inside the storage shell. Multiple scrapers are fixedly installed on one side surface of the second connecting plate. A pusher is slidably inserted on the upper surface of the storage shell.

[0008] A lifting assembly is disposed above the storage shell. The lifting assembly includes a bracket fixedly installed on the upper surface inside the body. A first rotating shaft is rotatably connected inside the bracket. An eccentric rod is fixedly installed at both ends of the first rotating shaft. A connecting rod is rotatably connected to the outside of the eccentric rod. A sliding rod is fixedly installed at one end of the storage shell.

[0009] The transmission components are located inside the machine body;

[0010] The circulation component is located inside the machine body;

[0011] The fan is fixedly installed on the upper surface of the machine body.

[0012] Furthermore, a bearing is fixedly embedded at one end of the connecting rod, the slide rod is movably fitted with the inner ring of the bearing at the corresponding position, a slide rail is slidably connected to the outside of the slide rod, and the slide rail is fixedly connected to the machine body.

[0013] Furthermore, the machine body is provided with two connected desizing tanks, a washing tank is provided on one side of the desizing tank, and a drying tank is provided on the other side of the washing tank. Baffles are symmetrically fixedly installed inside both the desizing tank and the washing tank.

[0014] Preferably, a gas distribution pipe is fixedly installed inside the drying tank, and multiple air holes are opened on the outer surface of the gas distribution pipe. One end of the gas distribution pipe passes through the machine body and is fixedly connected to the fan. A heating wire is installed inside the gas distribution pipe.

[0015] Preferably, the circulation component includes:

[0016] The water distribution pipe is fixedly installed between the two deslurry tanks;

[0017] Multiple nozzles are fixedly connected at equal intervals to the outer surface of the water distribution pipe;

[0018] The circulating pump is installed on one side of the machine body, and its outlet and inlet are fixedly connected to a water distribution pipe and a slurry removal tank, respectively.

[0019] Furthermore, multiple springs are fixedly connected between the two No. 1 connecting plates and the two No. 2 connecting plates, the protrusions and scrapers slide through the storage shell, and a No. 1 trapezoidal block with opposite directions is fixedly installed on one side surface of the No. 1 connecting plate and the No. 2 connecting plate.

[0020] Preferably, multiple trapezoidal blocks of the second type are symmetrically fixedly installed on both sides of the push frame, and the trapezoidal blocks of the second type are movably fitted with the trapezoidal blocks of the first type at the corresponding positions.

[0021] Furthermore, the transmission assembly includes:

[0022] The second rotating shaft is rotatably connected to the upper surface of the machine body;

[0023] Two bevel gears are fixedly installed at one end of shaft No. 2 and on the outer surface of shaft No. 1, respectively, and the two bevel gears are meshed and connected for transmission.

[0024] The motor is fixedly installed on the upper surface of the machine body and can drive the No. 2 rotating shaft to rotate.

[0025] Preferably, a sliding sleeve is symmetrically slidably fitted on the outer side of the first rotating shaft, a hollow plate is fixedly installed on the lower surface of the sliding sleeve, the push frame is slidably inserted into the hollow plate at the corresponding position, an electric push rod is fixedly installed on one side surface of the hollow plate, and one end of the electric push rod is fixedly connected to the push frame.

[0026] Preferably, a slip ring is fixedly installed on the outer surface of the second rotating shaft, a guide groove is provided on the outer surface of the slip ring, a collar is slidably sleeved on the outer side of the slip ring, a push rod is fixedly installed on the inner surface of the collar, the push rod is slidably connected to the guide groove, a connecting seat is fixedly installed on both the outer surface of the collar and the upper surface of the slip ring, and a push plate is rotatably connected between two adjacent connecting seats.

[0027] Compared with the prior art, the beneficial effects of the present invention are:

[0028] 1. The motor rotates the two eccentric rods, and the connecting rod drives the slide bar to slide up and down along the slide rail, causing the storage shell to move up and down. When the storage shell moves upward, the protrusion moves out of the storage shell, and the scraper moves into the storage shell. When the storage shell moves downward, the scraper moves out, and the protrusion moves into the storage shell. Thus, when the storage shell moves upward, the protrusion moves out and presses against the fabric to rub it. When the storage shell moves downward, the protrusion moves into the storage shell, and the scraper moves out and presses against the fabric to move downward. This allows the scraper to smooth out the wrinkles created by the protrusion's rubbing, preventing these wrinkles from further developing into deep folds during subsequent conveying and winding. This maintains the flatness of the fabric shape and the regularity of subsequent winding, reducing difficulties for subsequent processing.

[0029] 2. When the electric push rod retracts, the eccentric rod continues to rotate upward, causing the housing shell to move the entire protrusion upward. Conversely, when the eccentric rod rotates downward, the electric push rod extends in coordination. After the scraper moves out, it continues to move downward with the housing shell, thereby increasing the up-and-down movement of the protrusion and scraper, improving the kneading and smoothing effects.

[0030] 3. The second rotating shaft drives the slip ring to rotate, and the guide groove pushes the top rod to move inside it, causing the hollow plate and the storage shell to move back and forth along the first rotating shaft. When the storage shell moves up, it gathers towards the center, and when it moves down, it moves to both sides. Thus, the scraper improves the smoothing effect by exerting downward and outward force on the scraper.

[0031] 4. The circulating pump operates, spraying the slurry inside the desizing tank from multiple nozzles onto the fabric passing in front of it. The impact force of the slurry increases the contact between the slurry and the fabric, while the slurry inside the two desizing tanks circulates. At the same time, the up-and-down movement of the receiving shell agitates the slurry, making the slurry concentration inside the two desizing tanks more uniform and maintaining the desizing effect. Attached Figure Description

[0032] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0033] Figure 2 This is a schematic diagram of the internal structure of the machine body in this invention;

[0034] Figure 3 This is a schematic diagram of the structure at the contact point between the fabric and the finishing components in this invention;

[0035] Figure 4 This is a schematic diagram of the structure of the sorting component, lifting component, and transmission component in this invention;

[0036] Figure 5 This is a schematic diagram showing the disassembled structure of the sorting component, lifting component, and transmission component in this invention;

[0037] Figure 6 This is a schematic cross-sectional view of the connection between the collar and the second rotating shaft in this invention;

[0038] Figure 7 This is a schematic diagram of the vertical cross-sectional structure of the storage shell in this invention;

[0039] Figure 8 This is a schematic diagram of the disassembled structure of the protrusion and scraper in this invention;

[0040] Figure 9 This is a schematic cross-sectional view of the connection between the circulation component and the desizing tank in this invention.

[0041] In the diagram: 1. Machine body; 101. Feeding assembly; 102. Rewinding assembly; 103. Desizing tank; 104. Washing tank; 105. Baffle; 106. Drying tank; 107. Guide roller; 108. Extrusion roller; 2. Finishing assembly; 201. Storage shell; 202. Connecting plate No. 1; 203. Connecting plate No. 2; 204. Protrusion; 205. Scraper; 206. Spring; 207. Trapezoidal block No. 1; 208. Push frame; 209. Trapezoidal block No. 2; 3. Lifting assembly; 301. Bracket; 302. Rotating shaft No. 1; 303. Eccentric rod; 304. Connecting rod; 305. Slide rod; 306. Slide rail; 307. Sliding sleeve; 308. Hollow plate; 309. Electric push rod; 4. Transmission assembly; 401. No. 2 rotating shaft; 402. Motor; 403. Bevel gear; 404. Slip ring; 405. Guide groove; 406. Collar; 407. Top rod; 408. Connecting seat; 409. Push plate; 5. Circulation assembly; 501. Water distribution pipe; 502. Nozzle; 503. Circulation pump; 6. Fan; 601. Air distribution pipe; 602. Air hole. Detailed Implementation

[0042] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0043] Please see Figure 1-9In this embodiment of the invention, a textile desizing device for textile production includes a machine body 1 and a feeding assembly 101 and a winding assembly 102 disposed at both ends of the machine body 1. Multiple guide rollers 107 and extrusion rollers 108 are disposed inside the machine body 1. The extrusion rollers 108 cooperate with the guide rollers 107 to squeeze out the sizing liquid adsorbed by the fabric passing between them. Two interconnected desizing tanks 103 are disposed inside the machine body 1. A washing tank 104 is disposed on one side of the desizing tanks 103 inside the machine body 1. The device also includes multiple finishing components 2 disposed inside the machine body 1. Each finishing component 2 includes two receiving shells 201. A first connecting plate 202 is symmetrically and movably disposed inside each receiving shell 201. Multiple protrusions 20 are fixedly installed on one side surface of the first connecting plate 202. 4. A second connecting plate 203 is symmetrically and movably arranged inside the storage shell 201. Multiple scrapers 205 are fixedly installed on one side surface of the second connecting plate 203. A pusher 208 is slidably inserted on the upper surface of the storage shell 201. The lifting component 3 is set above the storage shell 201. The lifting component 3 includes a bracket 301 fixedly installed on the upper surface inside the body 1. A first rotating shaft 302 is rotatably connected inside the bracket 301. Eccentric rods 303 are fixedly installed at both ends of the first rotating shaft 302. A connecting rod 304 is rotatably connected to the outside of the eccentric rods 303. A sliding rod 305 is fixedly installed at one end of the storage shell 201. The transmission component 4 is set inside the body 1. The circulation component 5 is set inside the body 1. The fan 6 is fixedly installed on the upper surface of the body 1.

[0044] Specifically, the fabric passes between multiple guide rollers 107 and extrusion rollers 108, is desized in desizing tank 103, washed in washing tank 104, and finally dried in drying tank 106. The fabric is then rubbed by winding assembly 102 and smoothed by finishing assembly 2. Lifting assembly 3 enables finishing assembly 2 to move vertically back and forth. Transmission assembly 4 provides power for the movement of finishing assembly 2 while enabling two storage shells 201 to move horizontally back and forth, making it easier for scraper 205 to smooth the fabric.

[0045] Example 1

[0046] like Figure 2 As shown, in this embodiment, a drying tank 106 is provided inside the machine body 1 on one side of the washing tank 104; a distribution pipe 601 is fixedly installed inside the drying tank 106, and multiple air holes 602 are opened on the outer surface of the distribution pipe 601. One end of the distribution pipe 601 passes through the machine body 1 and is fixedly connected to the fan 6. A heating wire is provided inside the distribution pipe 601, and the heating wire heats the air introduced by the fan 6.

[0047] In this embodiment, the fan 6 and heating wire work to introduce air into the air distribution pipe 601, heat it, and then blow it out of multiple air holes 602 onto the fabric on both sides to dry the fabric.

[0048] like Figure 3-5As shown, in this embodiment, the transmission component 4 includes: a second rotating shaft 401 rotatably connected to the upper surface of the machine body 1; two bevel gears 403 respectively fixedly installed on one end of the second rotating shaft 401 and the outer surface of the first rotating shaft 302, and the two bevel gears 403 meshing and transmitting; and a motor 402 fixedly installed on the upper surface of the machine body 1, which can drive the second rotating shaft 401 to rotate.

[0049] In practice, the motor 402 operates, driving the second rotating shaft 401 to rotate. Through the transmission of two bevel gears 403, the first rotating shaft 302 rotates, providing power for the up-and-down movement of the sorting component 2.

[0050] like Figure 3 and Figure 4 As shown, in this embodiment, a bearing is fixedly embedded at one end of the connecting rod 304, and the slide rod 305 is movably fitted with the inner ring of the bearing at the corresponding position. A slide rail 306 is slidably connected to the outer side of the slide rod 305, and the slide rail 306 is fixedly connected to the body 1. A slide sleeve 307 is symmetrically slidably sleeved on the outer side of the first rotating shaft 302. A hollow plate 308 is fixedly installed on the lower surface of the slide sleeve 307. The push frame 208 is slidably inserted into the hollow plate 308 at the corresponding position. An electric push rod 309 is fixedly installed on one side surface of the hollow plate 308, and one end of the electric push rod 309 is connected to the push frame 208. With a fixed connection, during the up-and-down movement of the storage shell 201, when the eccentric rod 303 rotates upward 90°, the protrusion 204 completely moves out of the storage shell 201. Then, the electric push rod 309 retracts, and the eccentric rod 303 continues to rotate upward, causing the storage shell 201 to move the protrusion 204 upward as a whole. Conversely, when the eccentric rod 303 rotates downward, the electric push rod 309 extends in coordination. After the scraper 205 moves out, as the storage shell 201 continues to move downward, the up-and-down movement stroke of the protrusion 204 and the scraper 205 is increased, improving the kneading and smoothing effects.

[0051] In practice, the first rotating shaft 302 rotates, driving the two eccentric rods 303 to rotate. Through the rotational connection between the connecting rod 304 and the eccentric rods 303, and the movable contact between the slide rod 305 and the inner ring of the bearing, under the sliding limit of the slide rod 305 and the slide rail 306, the connecting rod 304 drives the slide rod 305 to slide up and down along the direction of the slide rail 306, thereby driving the storage shell 201 to move up and down.

[0052] like Figure 3 , Figure 7 and Figure 8As shown, in this embodiment, baffles 105 are symmetrically fixedly installed inside the desizing tank 103 and the washing tank 104; multiple springs 206 are fixedly connected between the two first connecting plates 202 and the two second connecting plates 203; the protrusions 204 and the scraper 205 slide through the housing 201; first trapezoidal blocks 207 with opposite directions are fixedly installed on one side surface of the first connecting plate 202 and the second connecting plate 203; multiple second trapezoidal blocks 209 are symmetrically fixedly installed on both sides surface of the pusher 208, and the second trapezoidal blocks 209 are movably fitted with the first trapezoidal blocks 207 at the corresponding positions.

[0053] In practice, the two baffles 105 fit against the fabric surface, and together with the protrusions 204 and scrapers 205, they limit the fabric to prevent it from shifting outwards during rubbing and smoothing, thus improving stability during rubbing and smoothing. When the storage shell 201 moves upward, the first trapezoidal block 207 on one side of the first connecting plate 202 abuts against the second trapezoidal block 209 at the corresponding position. Under the sliding limit of the protrusions 204 and the storage shell 201, the first connecting plate 202 drives the protrusions 204 to move, moving the protrusions 204 out of the storage shell 201. At this time, the first trapezoidal block 207 on one side of the second connecting plate 203 gradually separates from the inclined surface of the second trapezoidal block 209 at the corresponding position. Under the elastic force of the spring 206, As the fabric moves downward, the scraper 205 retracts into the storage shell 201. Similarly, as the storage shell 201 moves downward, the scraper 205 moves out, and the protrusion 204 retracts into the storage shell 201. Thus, as the storage shell 201 moves upward, the protrusion 204 moves out and presses against the fabric to knead it. As the storage shell 201 moves downward, the protrusion 204 retracts into the storage shell 201, and the scraper 205 moves out of the storage shell 201, pressing against the fabric to move downward. This allows the scraper 205 to smooth out the wrinkles created by the kneading of the protrusion 204, preventing these wrinkles from further developing into deep folds during subsequent conveying and winding processes. This maintains the flatness of the fabric shape and the regularity of subsequent winding, reducing difficulties for subsequent processing stages.

[0054] like Figure 4-6 As shown, in this embodiment, a slip ring 404 is fixedly installed on the outer surface of the second rotating shaft 401. A guide groove 405 is provided on the outer surface of the slip ring 404. A collar 406 is slidably sleeved on the outer side of the slip ring 404. A push rod 407 is fixedly installed on the inner surface of the collar 406. The push rod 407 is slidably connected to the guide groove 405. A connecting seat 408 is fixedly installed on both the outer surface of the collar 406 and the upper surface of the slip sleeve 307. A push plate 409 is rotatably connected between two adjacent connecting seats 408.

[0055] In practice, when the second rotating shaft 401 rotates, it drives the slip ring 404 to rotate. When the second rotating shaft 401 rotates half a turn, the guide groove 405 pushes the push rod 407 to move inside it, from the highest point to the lowest point of the guide groove 405. Through the rotational connection of the push plate 409 and the connecting seat 408, under the sliding limit of the sliding sleeve 307 and the first rotating shaft 302, the push plate 409 pushes the sliding sleeve 307 to move, driving the hollow plate 308 and the storage... As the shell 201 moves outward, the eccentric rod 303 rotates half a turn, and the slide rod 305 slides inside the slide rail 306. The second rotating shaft 401 continues to rotate, and the top rod 407 moves from the lowest point of the guide groove 405 to the highest point, completing one stroke. This matches a complete stroke of the eccentric rod 303, causing the housing shell 201 to converge towards the center when moving upward and move to both sides when moving downward. This improves the smoothing effect of the scraper 205 by applying downward and outward force to the scraper 205.

[0056] Example 2

[0057] Based on Example 1, in order to solve the problem of uneven slurry concentration inside the two deslurry tanks 103 in Example 1.

[0058] like Figure 3 and Figure 9 As shown, in this embodiment, the circulation component 5 includes: a water distribution pipe 501 fixedly installed between two deslurry tanks 103, multiple nozzles 502 fixedly connected at equal intervals to the outer surface of the water distribution pipe 501, and a circulation pump 503 installed on one side of the machine body 1, with the outlet and inlet fixedly connected to the water distribution pipe 501 and a deslurry tank 103 respectively.

[0059] In practice, the circulating pump 503 operates, pumping the slurry inside the rear desizing tank 103 into the water distribution pipe 501. The slurry is then sprayed from multiple nozzles 502 onto the fabric passing in front of it. The impact of the slurry increases the contact between the slurry and the fabric. At the same time, the slurry inside the rear desizing tank 103 is injected from above into the front desizing tank 103, and then flows back into the rear desizing tank 103 from below. Simultaneously, the up-and-down movement of the receiving shell 201 agitates the adhesive, making the slurry concentration in the two desizing tanks 103 more uniform and maintaining the desizing effect.

[0060] In this invention, in order to facilitate the operator's control of the invention, a PLC controller can be set up, and the electric push rod 309, motor 402, circulating pump 503 and fan 6 are all electrically connected to the PLC controller. The PLC controller is existing technology and will not be described in detail here.

[0061] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0062] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A textile desizing device for textile production, comprising a machine body (1) and a feeding assembly (101) and a winding assembly (102) disposed at both ends of the machine body (1), wherein the machine body (1) is provided with a plurality of guide rollers (107) and extrusion rollers (108), characterized in that, Also includes: Multiple sorting components (2) are disposed inside the body (1). Each sorting component (2) includes two storage shells (201). A first connecting plate (202) is symmetrically and movably disposed inside the storage shell (201). Multiple protrusions (204) are fixedly installed on one side surface of the first connecting plate (202). A second connecting plate (203) is symmetrically and movably disposed inside the storage shell (201). Multiple scrapers (205) are fixedly installed on one side surface of the second connecting plate (203). A pusher (208) slides through the upper surface of the storage shell (201). A lifting assembly (3) is disposed above the storage shell (201). The lifting assembly (3) includes a bracket (301) fixedly installed on the upper surface inside the body (1). A first rotating shaft (302) is rotatably connected inside the bracket (301). An eccentric rod (303) is fixedly installed at both ends of the first rotating shaft (302). A connecting rod (304) is rotatably connected to the outside of the eccentric rod (303). A sliding rod (305) is fixedly installed at one end of the storage shell (201). The transmission assembly (4) is located inside the body (1); The circulation component (5) is located inside the body (1); The fan (6) is fixedly installed on the upper surface of the body (1).

2. The textile desizing device for textile production according to claim 1, characterized in that, One end of the connecting rod (304) is fixedly embedded with a bearing, the slide rod (305) is movably fitted with the inner ring of the bearing at the corresponding position, and a slide rail (306) is slidably connected to the outside of the slide rod (305), and the slide rail (306) is fixedly connected to the body (1).

3. The textile desizing device for textile production according to claim 1, characterized in that, The machine body (1) is provided with two connected desizing tanks (103). A washing tank (104) is provided on one side of the desizing tank (103) inside the machine body (1). A drying tank (106) is provided on one side of the washing tank (104) inside the machine body (1). Baffles (105) are symmetrically fixedly installed inside the desizing tank (103) and the washing tank (104).

4. The textile desizing device for textile production according to claim 3, characterized in that, The drying tank (106) is fixedly installed with a gas distribution pipe (601). The outer surface of the gas distribution pipe (601) is provided with multiple air holes (602). One end of the gas distribution pipe (601) passes through the machine body (1) and is fixedly connected to the fan (6). A heating wire is provided inside the gas distribution pipe (601).

5. The textile desizing device for textile production according to claim 3, characterized in that, The loop component (5) includes: The water distribution pipe (501) is fixedly installed between the two deslurry tanks (103); Multiple nozzles (502) are fixedly connected at equal intervals to the outer surface of the water distribution pipe (501); A circulating pump (503) is installed on one side of the machine body (1), and its outlet and inlet are fixedly connected to a water distribution pipe (501) and a slurry removal tank (103), respectively.

6. The textile desizing device for textile production according to claim 1, characterized in that, Multiple springs (206) are fixedly connected between the two No. 1 connecting plates (202) and the two No. 2 connecting plates (203). The protrusions (204) and scrapers (205) slide through the storage shell (201). A trapezoidal block (207) with opposite directions is fixedly installed on one side surface of the No. 1 connecting plate (202) and the No. 2 connecting plate (203).

7. The textile desizing device for textile production according to claim 6, characterized in that, Multiple trapezoidal blocks (209) are symmetrically fixedly installed on both sides of the pusher (208), and the trapezoidal blocks (209) are movably fitted with the trapezoidal blocks (207) at the corresponding positions.

8. The textile desizing device for textile production according to claim 1, characterized in that, The transmission assembly (4) includes: The second rotating shaft (401) is rotatably connected to the upper surface of the machine body (1); Two bevel gears (403) are fixedly installed on one end of the second rotating shaft (401) and the outer surface of the first rotating shaft (302), respectively, and the two bevel gears (403) are meshed and connected for transmission. The motor (402) is fixedly installed on the upper surface of the machine body (1) and can drive the second rotating shaft (401) to rotate.

9. The textile desizing device for textile production according to claim 8, characterized in that, The first rotating shaft (302) is symmetrically fitted with a sliding sleeve (307) on its outer side. A hollow plate (308) is fixedly installed on the lower surface of the sliding sleeve (307). The push frame (208) is slidably inserted into the hollow plate (308) at the corresponding position. An electric push rod (309) is fixedly installed on one side surface of the hollow plate (308). One end of the electric push rod (309) is fixedly connected to the push frame (208).

10. The textile fabric desizing device for textile production according to claim 9, characterized in that, A slip ring (404) is fixedly installed on the outer surface of the second rotating shaft (401). A guide groove (405) is provided on the outer surface of the slip ring (404). A collar (406) is slidably sleeved on the outer side of the slip ring (404). A push rod (407) is fixedly installed on the inner surface of the collar (406). The push rod (407) is slidably connected to the guide groove (405). A connecting seat (408) is fixedly installed on both the outer surface of the collar (406) and the upper surface of the slip sleeve (307). A push plate (409) is rotatably connected between two adjacent connecting seats (408).