Polyester gray cloth processing device capable of uniformly gluing

By combining the design of guide rollers, gluing rollers, edge-shifting components, and winding pressure rollers, the problems of uneven gluing, air bubbles, and wrinkles in polyester fabric processing equipment are solved, achieving uniform gluing and tight winding, thus improving product quality.

CN121492331APending Publication Date: 2026-02-10WUJIANG JIAQI TEXTILE CO LTD
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Patent Information

Application Number
CN202511759249.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-27
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Existing polyester fabric processing equipment suffers from problems such as uneven gluing, air bubbles and wrinkles easily appearing during fabric winding, and inability to achieve misaligned edges.

Method used

A polyester fabric processing device with uniform adhesive application is used. The fabric is guided smoothly into the processing flow by a guide roller. The adhesive roller and the adhesive tank are used to apply adhesive evenly. The fabric winding position is adjusted by the edge-shifting device. The winding pressure roller is used to compact and de-air the fabric, ensuring the stability of the film-fabric composite and the compactness of the fabric.

Benefits of technology

This ensures uniform gluing, avoids air bubbles and wrinkles, guarantees the tightness and neatness of the fabric roll, and improves product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a polyester gray cloth processing device capable of uniformly gluing, and relates to the technical field of polyester gray cloth processing, the polyester gray cloth processing device comprises supporting columns, a polyester gray cloth feeding assembly is arranged at the tops of the two supporting columns, and a gluing roller is assembled in a processing chamber between a first film feeding roller and a second film feeding roller; a glue tank is assembled in the processing chamber at one end, far away from the polyester gray cloth feeding assembly, of the gluing roller; a gluing scraper is assembled in the polyester gray cloth feeding assembly at the bottom of the glue tank; a winding assembly is rotationally connected between the two supporting columns, a winding seat is arranged at the end, close to the first cloth guide roller, of the winding assembly, and a polyester gray cloth feeding seat is arranged at the end, away from the winding assembly, of the winding seat. And the misalignment piece is assembled at the top of the winding assembly. By means of the structure, dislocation of the edges of the cloth can be achieved through the misalignment piece, the cloth can be staggered in the stacking position during rolling through slight misalignment, air between gray cloth can be exhausted through the exhaust grooves in the rolling pressing roller in the rolling process, and the situation that the product quality is affected due to bubbles generated after rolling is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the polyester fabric processing technical field, more particularly, to a polyester fabric processing device with uniform gluing. BACKGROUND

[0002] The polyester fabric film covering is the core process of giving special functions in the polyester fabric finishing, and the process needs to go through strict preliminary pretreatment and accurate composite lamination steps. First, the polyester fabric is fully cleaned to remove surface dust, short fibers and other impurities, and then the wrinkles generated in the weaving process are eliminated through flattening treatment to ensure that the cloth surface is flat and has no uneven tension problems. Then, according to the application requirements of the fabric, PP, PE, PU and other adaptive films are selected, and special adhesives (such as hot melt adhesive, water-based adhesive) are uniformly coated on the surface of the fabric or film, and the coating amount and uniformity are controlled. Then, the fabric and the film are accurately aligned according to the corresponding position, and are sent to the pressure lamination link. Through controllable temperature heating, the adhesive is activated, and uniform pressure is applied to make the two closely laminated. The pressure and lamination speed need to be adjusted in real time to avoid the occurrence of bubbles, warping or poor adhesion. Finally, after cooling and solidification treatment, the film and the cloth surface form a stable combination, and the polyester fabric after film covering not only retains the original stiffness and wear resistance, but also adds waterproof, windproof and leakage prevention functions, and is suitable for various scenes such as outdoor products, protective clothing, packaging materials and the like.

[0003] However, the existing polyester fabric processing device with uniform gluing has the following problems in the working process:

[0004] 1. The gluing effect is poor, and uneven gluing is prone to occur;

[0005] 2. After the polyester fabric is rolled up, bubbles and wrinkles are prone to occur in the fabric;

[0006] 3. The offset effect cannot be achieved during the cloth rolling process.

[0007] In summary, the existing polyester fabric processing device with uniform gluing has the problems of uneven gluing, bubbles and wrinkles prone to occur in the fabric after rolling, and the offset effect cannot be achieved during the rolling process. Therefore, a polyester fabric processing device with uniform gluing is disclosed. SUMMARY

[0008] The purpose of the present application is to overcome the deficiencies in the prior art and provide a polyester fabric processing device with uniform gluing. The technical problems to be solved by the present application are: how to solve the uniform gluing process, how to solve the bubbles and wrinkles prone to occur in the fabric during rolling, and how to solve the offset effect during the rolling process.

[0009] The present application adopts the following technical scheme to achieve the above-mentioned purpose: a polyester fabric blank processing device with uniform gluing, comprising support columns, the support columns are provided with two, the top of the support columns is provided with a polyester fabric blank feeding assembly, the end of the support column away from the winding seat is provided with a processing chamber, the polyester fabric blank feeding assembly and the inside of the processing chamber are provided with cloth guide rollers;

[0010] The end of the processing chamber top away from the polyester fabric blank feeding assembly is provided with a support plate, the top of the support plate is provided with a second driving cylinder, the bottom of the support plate is provided with a glue feeding pipe, and the second driving cylinder is used to drive the glue feeding pipe.

[0011] The inside of the processing chamber is provided with a gluing roller, the gluing roller is used for gluing the film, the end of the gluing roller away from the polyester fabric blank feeding assembly is provided with a glue groove in the inside of the processing chamber, the bottom of the glue groove is provided with a gluing scraper in the inside of the polyester fabric blank feeding assembly, the end of the outer wall of the processing chamber away from the polyester fabric blank feeding assembly is provided with a third driving cylinder, and the third driving cylinder is used to drive the gluing scraper.

[0012] The winding assembly is rotatably connected between the two support columns, the bottom of the winding assembly away from the support column is provided with a winding seat, and the end of the winding seat away from the winding assembly is provided with a polyester fabric blank feeding seat.

[0013] The top of the winding assembly is provided with a misaligned part, the misaligned part is used for misalignment of cloth winding, the bottom of the winding assembly is provided with a first driving block, the first driving block is hingedly connected with a hinge seat, the outer wall of the hinge seat is provided with a first driving cylinder, and the driving shaft of the first driving cylinder is connected with the hinge seat.

[0014] The end of the winding assembly away from the misaligned part is provided with a winding pressure roller, and the winding pressure roller is provided with an exhaust groove.

[0015] Preferably, the cloth guide roller comprises a first cloth guide roller, a second cloth guide roller, a third cloth guide roller, a fourth cloth guide roller and a fifth cloth guide roller, the first cloth guide roller is arranged at one end of the inside of the polyester fabric blank feeding assembly, the second cloth guide roller is arranged at one end of the first cloth guide roller on the polyester fabric blank feeding assembly, the third cloth guide roller is arranged at one end of the second cloth guide roller away from the first cloth guide roller on the polyester fabric blank feeding assembly, the fourth cloth guide roller is arranged at one end of the third cloth guide roller away from the second cloth guide roller on the polyester fabric blank feeding assembly, the fifth cloth guide roller is arranged at one end of the inside of the processing chamber top close to the polyester fabric blank feeding assembly.

[0016] Preferably, the second fabric guide roller is equipped with a yarn separating roller on the end away from the first fabric guide roller on the polyester fabric feeding assembly, the yarn separating roller is equipped with a rubbing roller on the end away from the second fabric guide roller on the polyester fabric feeding assembly, the fourth fabric guide roller is equipped with a first width opening roller on the end away from the third fabric guide roller on the polyester fabric feeding assembly, the bottom of the fifth fabric guide roller is equipped with a second width opening roller on the end away from the polyester fabric feeding assembly inside the processing chamber, the bottom of the fifth fabric guide roller is equipped with a first composite compression roller group on the end close to the polyester fabric feeding assembly inside the processing chamber, the bottom of the first composite compression roller group is equipped with a second composite compression roller group on the end close to the polyester fabric feeding assembly inside the processing chamber, and the bottom of the processing chamber is equipped with a first upper film roller on the end away from the polyester fabric feeding assembly inside the processing chamber.

[0017] Preferably, the glue feeding pipe is provided with at least one branch pipe at the top of the gluing roller, the bottom end of the branch pipe is provided with a glue outlet plate, and the bottom of the glue outlet plate is provided with at least one glue outlet pipe.

[0018] Preferably, a stable sleeve is provided on the connection end of the glue feeding pipe and the branch pipe, the stable sleeve includes an upper pipe pressing block and a lower pipe pressing block, and the upper pipe pressing block and the lower pipe pressing block are fixed on the periphery of the connection end of the glue feeding pipe and the branch pipe by bolt engagement.

[0019] Preferably, a plate body is fixed on the top of the stable sleeve, and the plate body is slidably arranged in the supporting plate, clamping grooves are formed on both sides of the supporting plate, clamping blocks are fixed on both sides of the plate body, the clamping blocks are slidably arranged in the clamping grooves, guide rods are penetratingly arranged in the clamping blocks, and the plate body is connected with the driving shaft of the second driving cylinder.

[0020] Preferably, the gluing scraper is provided with connecting pieces on both sides of the end away from the gluing roller, a penetrating plate is detachably arranged in the connecting pieces, mounting clamping columns are fixed in the connecting pieces, mounting clamping grooves accommodating the mounting clamping columns are formed on the side of the penetrating plate close to the connecting pieces, positioning columns are arranged in the mounting clamping grooves on the end away from the mounting clamping columns, through holes are penetratingly arranged in the penetrating plate, sliding grooves accommodating the penetrating plate are formed on the outer wall of the processing chamber, and second driving blocks are arranged on the side of the penetrating plate away from the mounting clamping grooves, and the second driving blocks are connected with the driving shaft of the third driving cylinder.

[0021] Preferably, the misaligned part includes a bearing seat, a misaligned roller and a limiting part, the top outer wall of the winding assembly is provided with a bearing seat, the bearing seat is slidably provided with a sliding block, the bearing seat is assembled on the top of the sliding block, the misaligned roller is rotatably connected with the bearing seat, the side of the misaligned roller away from the bearing seat is provided with a limiting part, and the limiting part is assembled on the outer wall of the winding assembly.

[0022] Preferably, one end of the bearing seat is provided with a linkage plate, the top of the linkage plate is provided with a linkage rod, the end of the bearing seat close to the winding pressure roller is detachably provided with a motor seat on the winding assembly, the top of the motor seat is provided with a driving motor, one end of the driving shaft of the driving motor is provided with a driving disc, the driving disc is provided with a driving connecting rod, the linkage rod and the driving connecting rod are provided with a lap joint part, the lap joint part is used for connecting the linkage rod and the driving connecting rod, and a telescopic sleeve column is arranged between the misaligned roller and the limiting part.

[0023] Preferably, the limiting part includes a mounting seat, a threaded rod and a sleeve ring, the mounting seat is assembled on the outer wall of the winding assembly, the threaded rod is fixed on the top of the mounting seat, the sleeve ring is sleeved on the periphery of the threaded rod, and the top and bottom of the sleeve ring are provided with a first limiting plate and a second limiting plate on the threaded rod.

[0024] Compared with the prior art, the technical scheme of the present application has the beneficial effects that:

[0025] The present application provides a polyester fabric processing device with uniform gluing, first, second, third and fourth fabric guide rollers are arranged in sequence to form a polyester fabric feeding channel, which can guide the fabric to enter the processing flow smoothly; the fifth fabric guide roller receives the polyester fabric conveyed by the polyester fabric feeding assembly, at the same time, the first and second film applying rollers cooperate with each other to perform film applying operation on the polyester fabric, in this process, the gluing roller cooperates with the glue tank to uniformly apply the glue in the glue tank to the surface of the film, the gluing scraper driven by the third driving cylinder can further scrape the glue on the gluing roller to ensure uniform gluing thickness, after the film is glued, it will be guided together with the polyester fabric to the first and second composite compression roller groups by the second film applying roller, and the film and the polyester fabric are compacted by the two groups of compression rollers to ensure the stability of the film and the polyester fabric composite;

[0026] In addition, the second driving cylinder can drive the rubber feeding pipe to move upwards or downwards, thereby ensuring the accuracy of the rubber coating of the rubber coating roller. When the rolling assembly is rolling the cloth, the misalignment member can adjust the rolling position of the cloth, thereby enabling the cloth passing through the misalignment member to realize the misalignment of the cloth edges. Slight misalignment can make the cloth misaligned in the rolling position, avoid long-term pressure on the same position, and reduce the generation of "hard edge wrinkles". At the same time, the first driving cylinder drives the first driving block to drive the rolling assembly to move, and the rolling pressure roller rotates with the rotation of the rolling assembly. Through such rotation, the position of the rolling pressure roller can be effectively adjusted. In the whole rolling process, the rolling pressure roller can press and guide the cloth, thereby ensuring that the rolled cloth has sufficient tightness and keeps in order. At the same time, the rolling seat undertakes the task of rolling the cloth, and the exhaust groove on the rolling pressure roller can exhaust the air between the cloth during the rolling process, preventing bubbles from affecting the product quality after rolling. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0028] Figure 2 It is a schematic diagram of the overall structure of the present application;

[0029] Figure 3 It is a schematic diagram of the Figure 2

[0030] Figure 4 It is a schematic diagram of the stable sleeve and the plate body structure of the present application;

[0031] Figure 5 It is a schematic diagram of the rubber coating scraper structure of the present application;

[0032] Figure 6 It is a schematic diagram of the misalignment member structure of the present application;

[0033] Figure 7 It is a schematic diagram of the misalignment member structure of the present application;

[0034] Figure 8 It is a schematic diagram of the limiting member structure of the present application;

[0035] Figure 9 It is a schematic diagram of the Figure 1

[0036] Figure 10 It is a schematic diagram of the rolling pressure roller structure of the present application;

[0037] Figure 11 It is a schematic diagram of the overall cross-sectional structure of the present application. ​​

[0038] The components are as follows: 10, support column; 20, polyester fabric feeding assembly; 201, first guide roller; 202, second guide roller; 203, filament separating roller; 204, fabric rubbing roller; 205, third guide roller; 206, fourth guide roller; 207, first opening roller; 30, take-up seat; 40, polyester fabric feeding seat; 50, take-up assembly; 501, edge-shifting component; 5011, bearing seat; 5012, slider; 5013, bearing seat; 5014, edge-shifting roller. 5015, Motor base; 5016, Drive disc; 50161, Drive linkage; 5017, Drive motor; 5018, Linkage plate; 50181, Linkage rod; 5019, Overlapping piece; 5020, Telescopic sleeve column; 502, First drive block; 503, Hinge seat; 504, First drive cylinder; 60, Processing chamber; 601, Slide groove; 602, Fifth guide roller; 603, Second opening roller; 604, First composite pressure roller group; 605, The... Two composite pressure roller groups; 606, first upper film roller; 607, second upper film roller; 70, limiting component; 701, mounting base; 702, threaded rod; 7021, first limiting plate; 7022, second limiting plate; 703, collar; 80, winding pressure roller; 801, venting groove; 90, glue inlet pipe; 901, branch pipe; 902, glue outlet plate; 9021, glue outlet pipe; 100, stabilizing kit; 1001, upper pipe pressure block; 1002, lower pipe pressure block; 110. Support plate; 1101. Second drive cylinder; 1102. Plate body; 11021. Locking block; 1103. Locking slot; 11031. Guide rod; 120. Glue groove; 130. Glue roller; 140. Glue scraper; 1401. Connector; 14011. Mounting pin; 141. Through plate; 1411. Through hole; 1412. Second drive block; 1413. Mounting slot; 14131. Positioning pin; 150. Third drive cylinder. Detailed Implementation

[0039] The present invention will be further described below with reference to specific embodiments. The accompanying drawings are for illustrative purposes only, representing schematic diagrams rather than actual physical objects, and should not be construed as limiting the invention. To better illustrate the embodiments of the invention, some components in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.

[0040] Example 1

[0041] like Figures 1-11As shown, the present invention provides a polyester fabric processing device for uniformly gluing, including support columns 10, two support columns 10, a polyester fabric feeding assembly 20 at the top of the two support columns 10, a first guide roller 201 is assembled at one end of the polyester fabric feeding assembly 20, a second guide roller 202 is assembled at one end of the first guide roller 201 on the polyester fabric feeding assembly 20, a third guide roller 205 is assembled at the end of the second guide roller 202 away from the first guide roller 201 on the polyester fabric feeding assembly 20, and a fourth guide roller 206 is assembled at the end of the third guide roller 205 away from the second guide roller 202 on the polyester fabric feeding assembly 20.

[0042] A processing chamber 60 is provided at the end of the support column 10 away from the winding seat 30. A fifth guide roller 602 is installed at the top of the processing chamber 60 near the polyester fabric feeding assembly 20. A first composite pressure roller group 604 is installed at the bottom of the fifth guide roller 602 near the polyester fabric feeding assembly 20 inside the processing chamber 60. A second composite pressure roller group 605 is installed at the bottom of the first composite pressure roller group 604 near the polyester fabric feeding assembly 20 inside the processing chamber 60. A first upper film roller 606 is installed at the bottom of the processing chamber 60 away from the polyester fabric feeding assembly 20. A second upper film roller 607 is installed at the bottom of the first composite pressure roller group 604 away from the polyester fabric feeding assembly 20 inside the processing chamber 60.

[0043] A support plate 110 is provided at the top of the processing chamber 60 away from the polyester fabric feeding assembly 20. A second driving cylinder 1101 is provided at the top of the support plate 110, and a glue inlet pipe 90 is provided at the bottom of the support plate 110. The second driving cylinder 1101 is used to drive the glue inlet pipe 90.

[0044] The processing chamber 60 is equipped with a gluing roller 130, which is used for gluing the film. The end of the gluing roller 130 away from the polyester fabric feeding assembly 20 is equipped with a glue tank 120 inside the processing chamber 60. The bottom of the glue tank 120 is equipped with a gluing scraper 140 inside the polyester fabric feeding assembly 20. The outer wall of the processing chamber 60 away from the polyester fabric feeding assembly 20 is provided with a third drive cylinder 150, which is used to drive the gluing scraper 140.

[0045] A winding assembly 50 is rotatably connected between two support columns 10. A winding seat 30 is provided at the bottom of the winding assembly 50 away from the support column 10, and a polyester fabric feeding seat 40 is provided at the end of the winding seat 30 away from the winding assembly 50.

[0046] The top of the winding assembly 50 is equipped with a misaligned edge piece 501, which is used for misaligning the edges of the fabric during winding. The bottom of the winding assembly 50 is equipped with a first drive block 502, and a hinge seat 503 is hinged on the first drive block 502. A first drive cylinder 504 is mounted on the outer wall of the hinge seat 503, and the drive shaft of the first drive cylinder 504 is connected to the hinge seat 503.

[0047] The winding assembly 50 is equipped with a winding pressure roller 80 at one end away from the misaligned part 501, and the winding pressure roller 80 is provided with an exhaust groove 801.

[0048] The first guide roller 201, the second guide roller 202, the third guide roller 205, and the fourth guide roller 206 are arranged in sequence to form a feeding channel for the polyester fabric, which can guide the fabric smoothly into the processing flow. The fifth guide roller 602 receives the polyester fabric conveyed by the polyester fabric feeding assembly 20. At the same time, the first film-applying roller 606 and the second film-applying roller 607 cooperate with each other to perform film-applying operation on the polyester fabric. During this process, the glue-applying roller 130 cooperates with the glue tank 120 to evenly apply the glue in the glue tank 120 onto the film. On the surface, the adhesive scraper 140, driven by the third drive cylinder 150, can further smooth the adhesive on the adhesive roller 130, ensuring uniform adhesive thickness. After the film is coated, it will be guided together with the polyester fabric through the second film roller 607 to the first composite pressure roller group 604 and the second composite pressure roller group 605. The cooperation of the two sets of pressure rollers will compact the film and the polyester fabric, ensuring the stability of the film-polyester fabric composite. In addition, the second drive cylinder 1101 can drive the adhesive inlet pipe 90 upward or downward. The downward movement ensures the accuracy of the adhesive application by the gluing roller 130. When the winding assembly 50 winds up the fabric, the edge-shifting component 501 can adjust the winding position of the fabric, thereby causing the fabric edges to shift after passing through the edge-shifting component 501. Slight edge shifting allows the fabric to be staggered during winding, avoiding long-term pressure on the same position and reducing the generation of "hard edge wrinkles". At the same time, the first drive cylinder 504 drives the first drive block 502, causing the winding assembly 50 to move. The winding pressure roller 80 follows the winding assembly. The rotating part 50 rotates, which allows for effective adjustment of the position of the winding pressure roller 80. During the entire winding process, the winding pressure roller 80 can press and guide the fabric, thereby ensuring that the wound fabric has sufficient tightness and remains neat. At the same time, the winding seat 30 undertakes the task of winding the fabric, and the exhaust groove 801 on the winding pressure roller 80 can discharge the air between the fabric layers during the winding process, preventing air bubbles from appearing after winding and affecting product quality.

[0049] Furthermore, in another embodiment, the second guide roller 202, at the end away from the first guide roller 201, is equipped with a splitting roller 203 on the polyester fabric feeding assembly 20; the splitting roller 203, at the end away from the second guide roller 202, is equipped with a fabric rubbing roller 204 on the polyester fabric feeding assembly 20; and the fourth guide roller 206, at the end away from the third guide roller 205, is equipped with a first opening roller 207 on the polyester fabric feeding assembly 20.

[0050] The splitting roller 203 can comb and separate the polyester fabric fibers to prevent the fibers from tangling or gathering and affecting subsequent processing. The rubbing roller 204 rubs the surface of the fabric through its uneven structure, making the polyester fabric fibers more fluffy and improving the penetration effect of the adhesive during the lamination and gluing process. The first spreading roller 207 can further unfold the fabric after it has been transported by the guide roller, eliminating wrinkles that may occur during the transport of the polyester fabric and ensuring that the polyester fabric enters the lamination and gluing process in a flat state, thereby effectively reducing the problem of uneven lamination and gluing caused by uneven polyester fabric.

[0051] Furthermore, in another embodiment, the bottom end of the fifth guide roller 602, away from the polyester fabric feeding assembly 20, is equipped with a second spreading roller 603 inside the processing chamber 60.

[0052] The second spreading roller 603 and the first spreading roller 207 form two spreading processes. After the polyester fabric is guided into the processing chamber 60 by the fifth guide roller 602, the second spreading roller 603 can perform a second flattening operation on the polyester fabric, further eliminating the fine wrinkles caused by tension changes or friction during the transmission process. This ensures that the polyester fabric maintains a very high degree of flatness before entering the film coating and adhesive coating processes, providing a basic guarantee for the uniformity of subsequent composite adhesive coating.

[0053] Furthermore, in another embodiment, the bottom of the glue inlet tube 90 is provided with at least one branch tube 901 at the top of the glue roller 130, the bottom end of the branch tube 901 is provided with a glue outlet plate 902, and the bottom of the glue outlet plate 902 is provided with at least one glue outlet tube 9021.

[0054] The arrangement direction of the glue dispensing tubes 9021 is parallel to the axial direction of the glue roller 130, and the spacing between adjacent glue dispensing tubes 9021 is consistent. This design allows the glue to flow out simultaneously from multiple evenly distributed glue dispensing tubes 9021 and drip evenly onto the surface of the glue tank 120. When the glue falls onto the glue tank 120, a layer of glue will be evenly attached to the surface of the glue roller 130 during its rotation. Subsequently, when it comes into contact with the polyester fabric, the glue can be more evenly applied to the surface of the fabric, effectively avoiding glue accumulation or local glue shortage caused by single-point glue dispensing, and further improving the uniformity of composite glue application.

[0055] Furthermore, in another embodiment, a stabilizing kit 100 is provided at the connection end between the glue inlet tube 90 and the branch tube 901. The stabilizing kit 100 includes an upper pipe clamping block 1001 and a lower pipe clamping block 1002, which are fixed to the periphery of the connection end between the glue inlet tube 90 and the branch tube 901 by bolt engagement.

[0056] Both the upper pipe pressure block 1001 and the lower pipe pressure block 1002 have arc-shaped grooves on their inner walls that fit the outer wall of the glue inlet pipe 90. Wear-resistant rubber pads can also be installed in the grooves. This not only increases the friction between the pipe and the pressure block, preventing the connection end from loosening or shifting due to pressure fluctuations during glue delivery, but also reduces the impact of pipe vibration on the stability of glue delivery through the elastic buffering effect of the rubber pads. At the same time, the wear-resistant rubber pads can effectively avoid wear caused by direct contact between the metal pressure block and the outer wall of the pipe, extending the service life of the pipe and ensuring that the glue delivery path from the glue inlet pipe 90 to the branch pipe 901 remains sealed and stable, providing a reliable initial guarantee for the uniform dripping of glue later.

[0057] Furthermore, in another embodiment, a plate 1102 is fixed to the top of the stabilizing kit 100, and the plate 1102 is slidably disposed in the support plate 110. The support plate 110 has slots 1103 on both sides, and a locking block 11021 is fixed to both sides of the plate 1102. The locking block 11021 is slidably disposed in the slot 1103. A guide rod 11031 is provided through the inside of the locking block 11021. The plate 1102 is connected to the drive shaft of the second drive cylinder 1101.

[0058] When the second drive cylinder 1101 is started, it can drive the plate 1102 to slide along the guide rod 11031 in the slot 1103, thereby adjusting the height position of the stabilizing kit 100, the glue inlet tube 90 and the branch tube 901, so that the structure can adapt to different glue application needs. Relevant personnel can adjust the height of the glue inlet tube 90 and the branch tube 901 according to the actual glue application needs.

[0059] Furthermore, in another embodiment, the glue-applying scraper 140 is provided with connectors 1401 on both sides of the end away from the glue-applying roller 130. The connectors 1401 are detachably provided with through plates 141. The connectors 1401 are fixed with mounting pins 14011. The through plates 141 are provided with mounting slots 1413 on the side near the connectors 1401 to accommodate the mounting pins 14011. The mounting slots 1413 are provided with positioning pins 14131 on the side away from the mounting pins 14011. The through plates 141 are provided with through holes 1411. The outer wall of the processing chamber 60 is provided with a sliding groove 601 to accommodate the through plates 141. The through plates 141 are provided with a second driving block 1412 on the side away from the mounting slots 1413, and the second driving block 1412 is connected to the drive shaft of the third driving cylinder 150.

[0060] When the third drive cylinder 150 is running, it can drive the second drive block 1412 to move, thereby pushing the through plate 141 to slide along the slide groove 601. This, in turn, can drive the gluing scraper 140 to move closer to or further away from the gluing roller 130, thus changing the distance between the gluing scraper 140 and the gluing roller 130. This adapts to gluing operations on polyester fabrics of different thicknesses, avoiding the problem of excessively thick or thin gluing on some fabrics due to a fixed distance, and improving the uniformity of gluing. In addition, the gluing scraper 140 is fixed to the through plate 141 by the connector 1401 and bolts. When more... When replacing the scraper 140, simply loosen the bolts to remove the scraper 140 from the through plate 141. When installing the scraper 140, align the mounting pin 14011 with the mounting slot 1413 and insert it, then tighten the bolts to complete the fixing. During this process, the positioning pin 14131 can limit the mounting pin 14011. The detachable connection method not only facilitates the daily maintenance and replacement of the scraper 140, but also allows for the selection of scrapers 140 of appropriate material or shape according to different glue application needs, further improving the applicability of the device.

[0061] Furthermore, in another embodiment, the misalignment member 501 includes a bearing seat 5013, a misalignment roller 5014, and a limiting member 70. A support seat 5011 is provided on the top outer wall of the winding assembly 50. A slider 5012 is slidably mounted on the support seat 5011. The bearing seat 5013 is assembled on the top of the slider 5012. The misalignment roller 5014 is rotatably connected to the bearing seat 5013. A limiting member 70 is provided on the side of the misalignment roller 5014 away from the bearing seat 5013, and the limiting member 70 is assembled on the outer wall of the winding assembly 50. A linkage plate 5018 is provided at one end of the bearing seat 5013, and the top of the linkage plate 5018 is provided with... The linkage rod 50181 and the bearing seat 5011 are detachably provided with a motor seat 5015 on the winding assembly 50 near the winding pressure roller 80. The top of the motor seat 5015 is provided with a drive motor 5017. One end of the drive shaft of the drive motor 5017 is provided with a drive disc 5016. The drive disc 5016 is provided with a drive connecting rod 50161. The linkage rod 50181 and the drive connecting rod 50161 are provided with an overlap member 5019. The overlap member 5019 is used to connect the linkage rod 50181 and the drive connecting rod 50161. A telescopic sleeve 5020 is provided between the offset roller 5014 and the limiting member 70.

[0062] When the drive motor 5017 is running, it drives the drive disc 5016 to rotate. The drive disc 5016 pulls the linkage rod 50181 through the drive connecting rod 50161 and the overlapping piece 5019, causing the linkage plate 5018 to drive the slider 5012 to slide back and forth on the support seat 5011. This causes the misaligned roller 5014 to reciprocate along the axis of the winding assembly 50. During this process, the misaligned roller 5014 will deviate. When the polyester fabric passes through the misaligned roller 5014, it achieves uniform misalignment of the polyester fabric during the winding process. The telescopic sleeve 5020 can extend and retract with the misaligned roller 5014 during its movement, playing an auxiliary support and guiding role, ensuring the smooth movement of the misaligned roller 5014, and further improving the stability and reliability of the misalignment effect.

[0063] Furthermore, in another embodiment, the limiting member 70 includes a mounting base 701, a threaded rod 702, and a collar 703. The mounting base 701 is assembled on the outer wall of the winding assembly 50, the threaded rod 702 is fixed to the top of the mounting base 701, and the collar 703 is sleeved around the threaded rod 702. The top and bottom of the collar 703 are provided with a first limiting plate 7021 and a second limiting plate 7022 on the threaded rod 702.

[0064] Both the first limiting plate 7021 and the second limiting plate 7022 are threadedly connected to the threaded rod 702. By rotating the first limiting plate 7021 and the second limiting plate 7022, the position of the collar 703 on the threaded rod 702 can be adjusted, thereby limiting the maximum movement distance of the misalignment roller 5014 and preventing the misalignment roller 5014 from causing excessive fabric misalignment or separation from the winding path due to excessive movement. At the same time, the position of the collar 703 can be flexibly adjusted according to the different widths of polyester fabric to ensure that the misalignment operation is always within a reasonable range, further ensuring the neatness of the fabric after winding.

[0065] Working principle: In actual operation, when the polyester fabric enters the feeding channel through the polyester fabric feeding seat 40, the first guide roller 201, the second guide roller 202, the third guide roller 205 and the fourth guide roller 206 work together to ensure that the fabric enters the processing chamber 60 in a stable posture. During this period, the splitting roller 203 can comb and separate the polyester fabric fibers to avoid the fibers from tangling or gathering and affecting subsequent processing. The rubbing roller 204 rubs the fabric surface through the concave and convex structure of the surface to make the polyester fabric fibers more fluffy and improve the penetration effect of the adhesive when applying the adhesive. The setting of the first spreading roller 207 can further spread the fabric that has been transmitted by the guide rollers.

[0066] After entering the processing chamber 60, the fifth guide roller 602 can receive the polyester fabric and smoothly transition it to the processing area. At this time, the first film-applying roller 606 and the second film-applying roller 607 start to operate and perform film-applying operation on the polyester fabric. At the same time, the glue-applying roller 130 continuously cooperates with the glue tank 120 to evenly attach the glue in the glue tank 120 to the surface of the film. The glue-applying scraper 140 driven by the third drive cylinder 150 will finely scrape the glue on the surface of the glue roller to strictly control the glue thickness and ensure that the glue is evenly distributed on the film surface. The glued film and the polyester fabric are guided together to the first composite pressure roller group 604 and the second composite pressure roller group 605. Through the sequential compaction of the two groups of pressure rollers, the composite stability between the film and the fabric is significantly enhanced. During this process, the second drive cylinder 1101 can drive the glue inlet pipe 90 to adjust its position up and down according to actual needs to further ensure the accuracy of glue application.

[0067] After the polyester fabric completes the composite processing and enters the winding stage, the edge-shifting component 501 on the winding assembly 50 will adjust the winding position of the fabric in real time. By slightly shifting the edge of the fabric, it avoids the formation of "hard edge wrinkles" due to long-term stacking in the same position during the winding process. At the same time, the first drive cylinder 504 will drive the first drive block 502, causing the winding assembly 50 to move as a whole. The winding pressure roller 80 will rotate and adjust its position accordingly, applying stable pressure to the fabric throughout the winding process to ensure that the wound fabric is tight and neat. In addition, the exhaust groove 801 on the winding pressure roller 80 can timely discharge the air between the layers of the fabric, effectively preventing air bubbles from appearing after winding, thereby ensuring the quality of the final product.

[0068] Unless otherwise specified, in this invention, terms such as "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe orientation or positional relationships in this invention are for illustrative purposes only and should not be construed as limiting this invention. For those skilled in the art, the specific meaning of the above terms can be understood in conjunction with the accompanying drawings and according to the specific circumstances.

[0069] Unless otherwise explicitly specified and limited, the terms "set up," "connected," and "linked" in this invention should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0070] Finally, it should be noted that the above specific embodiments are only used to illustrate the technical solutions of the present invention and not to limit it. Although the present invention has been described in detail with reference to examples, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A processing device for uniformly glued polyester fabric, comprising a support column (10), characterized in that: The support column (10) is provided with two columns, and the top of the two support columns (10) is provided with a polyester fabric feeding assembly (20). The end of the support column (10) away from the winding seat (30) is provided with a processing chamber (60). The polyester fabric feeding assembly (20) and the processing chamber (60) are both provided with guide rollers. The processing chamber (60) has a support plate (110) at the top of the end away from the polyester fabric feeding assembly (20). The support plate (110) has a second driving cylinder (1101) at the top and a glue inlet pipe (90) at the bottom. The second driving cylinder (1101) is used to drive the glue inlet pipe (90). The processing chamber (60) is equipped with a gluing roller (130), which is used for gluing the film. The end of the gluing roller (130) away from the polyester fabric feeding assembly (20) is equipped with a glue tank (120) inside the processing chamber (60). The bottom of the glue tank (120) is equipped with a gluing scraper (140) inside the polyester fabric feeding assembly (20). The outer wall of the processing chamber (60) away from the polyester fabric feeding assembly (20) is provided with a third driving cylinder (150), which is used to drive the gluing scraper (140). A winding assembly (50) is rotatably connected between the two support columns (10). A winding seat (30) is provided at the bottom of the winding assembly (50) away from the support column (10), and a polyester fabric feeding seat (40) is provided at the end of the winding seat (30) away from the winding assembly (50). The top of the winding assembly (50) is equipped with a misaligned edge piece (501), which is used for misaligning the edges of the fabric during winding. The bottom of the winding assembly (50) is equipped with a first drive block (502), and a hinge seat (503) is hinged on the first drive block (502). A first drive cylinder (504) is mounted on the outer wall of the hinge seat (503), and the drive shaft of the first drive cylinder (504) is connected to the hinge seat (503). The winding assembly (50) is equipped with a winding pressure roller (80) at the end away from the misaligned part (501), and the winding pressure roller (80) is provided with an exhaust groove (801).

2. The polyester fabric processing device for uniformly adhesive bonding according to claim 1, characterized in that: The guide rollers include a first guide roller (201), a second guide roller (202), a third guide roller (205), a fourth guide roller (206), and a fifth guide roller (602). The first guide roller (201) is mounted at one end inside the polyester fabric feeding assembly (20), and the second guide roller (202) is mounted at the other end of the first guide roller (201) on the polyester fabric feeding assembly (20). The second guide roller (202) is located away from the first guide roller (201). A third guide roller (205) is mounted on the polyester fabric feeding assembly (20). A fourth guide roller (206) is mounted on the polyester fabric feeding assembly (20) at the end of the third guide roller (205) away from the second guide roller (202). A processing chamber (60) is provided at the end of the support column (10) away from the winding seat (30). A fifth guide roller (602) is mounted on the top of the processing chamber (60) near the end of the polyester fabric feeding assembly (20).

3. The polyester fabric processing device for uniformly gluing according to claim 2, characterized in that: The second guide roller (202) has a splitting roller (203) mounted on the polyester fabric feeding assembly (20) at the end furthest from the first guide roller (201). The splitting roller (203) has a tufting roller (204) mounted on the polyester fabric feeding assembly (20) at the end furthest from the second guide roller (202). The fourth guide roller (206) has a first spreading roller (207) mounted on the polyester fabric feeding assembly (20) at the end furthest from the third guide roller (205). The fifth guide roller (602) has a second spreading roller (603) mounted inside the processing chamber (60) at the bottom end furthest from the polyester fabric feeding assembly (20). The bottom of the fifth guide roller (602) near the end of the polyester fabric feeding assembly (20) is equipped with a first composite pressure roller group (604) inside the processing chamber (60). The bottom of the first composite pressure roller group (604) near the end of the polyester fabric feeding assembly (20) is equipped with a second composite pressure roller group (605) inside the processing chamber (60). The bottom of the processing chamber (60) away from the end of the polyester fabric feeding assembly (20) is equipped with a first upper film roller (606). The bottom of the first composite pressure roller group (604) away from the polyester fabric feeding assembly (20) is equipped with a second upper film roller (607) inside the processing chamber (60).

4. The polyester fabric processing device for uniformly glued fabric according to claim 1, characterized in that: The bottom of the glue inlet pipe (90) is provided with at least one branch pipe (901) at the top of the glue roller (130), the bottom end of the branch pipe (901) is provided with a glue outlet plate (902), and the bottom of the glue outlet plate (902) is provided with at least one glue outlet pipe (9021).

5. The polyester fabric processing device for uniformly gluing according to claim 4, characterized in that: A stabilizing kit (100) is fitted at the connection end between the glue inlet pipe (90) and the branch pipe (901). The stabilizing kit (100) includes an upper pipe clamping block (1001) and a lower pipe clamping block (1002). The upper pipe clamping block (1001) and the lower pipe clamping block (1002) are fixed to the periphery of the connection end between the glue inlet pipe (90) and the branch pipe (901) by bolt engagement.

6. The polyester fabric processing device for uniform adhesive application according to claim 5, characterized in that: The top of the stabilizing kit (100) is fixed with a plate (1102), and the plate (1102) slides in the support plate (110). The support plate (110) has slots (1103) on both sides. The plate (1102) has blocks (11021) fixed on both sides, and the blocks (11021) slide in the slots (1103). The blocks (11021) have guide rods (11031) running through them. The plate (1102) is connected to the drive shaft of the second drive cylinder (1101).

7. The polyester fabric processing device for uniformly glued fabric according to claim 1, characterized in that: The adhesive scraper (140) has connectors (1401) on both sides of the end away from the adhesive roller (130). A through plate (141) is detachably provided inside the connector (1401). A mounting post (14011) is fixed inside the connector (1401). A mounting slot (1413) is provided on the side of the through plate (141) near the connector (1401) to accommodate the mounting post (14011). The mounting slot (1413) is located inside... A positioning post (14131) is provided at one end away from the mounting post (14011). A through hole (1411) is provided inside the through plate (141). A sliding groove (601) for accommodating the through plate (141) is provided on the outer wall of the processing chamber (60). A second driving block (1412) is provided on the side of the through plate (141) away from the mounting groove (1413), and the second driving block (1412) is connected to the drive shaft of the third driving cylinder (150).

8. The polyester fabric processing device for uniform adhesive application according to claim 1, characterized in that: The offset component (501) includes a bearing seat (5013), an offset roller (5014), and a limiting component (70). The top outer wall of the winding assembly (50) is provided with a support seat (5011). A slider (5012) is slidably mounted on the support seat (5011). The bearing seat (5013) is mounted on the top of the slider (5012). The offset roller (5014) is rotatably connected to the bearing seat (5013). A limiting component (70) is provided on the side of the offset roller (5014) away from the bearing seat (5013), and the limiting component (70) is mounted on the outer wall of the winding assembly (50).

9. The polyester fabric processing device for uniformly glued fabric according to claim 8, characterized in that: One end of the bearing seat (5013) is provided with a linkage plate (5018), and the top of the linkage plate (5018) is provided with a linkage rod (50181). The bearing seat (5011) near the winding pressure roller (80) is provided with a motor seat (5015) detachably on the winding assembly (50). The top of the motor seat (5015) is provided with a drive motor (5017). One end of the drive shaft of the drive motor (5017) is provided with a drive disc (5016). The drive disc (5016) is provided with a drive connecting rod (50161). The linkage rod (50181) and the drive connecting rod (50161) are provided with an overlap member (5019). The overlap member (5019) is used to connect the linkage rod (50181) and the drive connecting rod (50161). A telescopic sleeve (5020) is provided between the staggered edge roller (5014) and the limiting member (70).

10. The polyester fabric processing device for uniform adhesive application according to claim 8, characterized in that: The limiting component (70) includes a mounting base (701), a threaded rod (702), and a collar (703). The mounting base (701) is assembled on the outer wall of the winding assembly (50). The threaded rod (702) is fixed to the top of the mounting base (701). The collar (703) is sleeved around the threaded rod (702). The top and bottom of the collar (703) are provided with a first limiting plate (7021) and a second limiting plate (7022) on the threaded rod (702).