Anti-static moisture absorption fabric processing equipment

By adopting a negative pressure system and hot air drying mechanism with staggered recovery plates and transmission plates in the hygroscopic fabric processing equipment, the problem of unevenness of hygroscopic fabrics during the transmission and gluing process is solved, the effect of consistent glue layer thickness and high fabric cleanliness is achieved, and a continuous automated process from gluing to winding is realized.

CN120605848APending Publication Date: 2025-09-09TONG XIANG FENGHUANG TEXTILE CO LTD
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Patent Information

Application Number
CN202510952321.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-10
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

Existing hygroscopic fabrics are prone to problems such as uneven base fabric surface, inconsistent glue layer thickness, bubbles and glue layer detachment during the transmission and gluing process, resulting in reduced processing quality, and the glue dropper is clogged, affecting the inconsistent glue output.

Method used

The staggered recovery plates and transmission plates, combined with the negative pressure system and hot air drying mechanism, ensure uniform glue coating and rapid drying. The transmission plate cleans dust to achieve consistent glue layer thickness and high fabric cleanliness.

Benefits of technology

It achieves consistent glue layer thickness and accurate coating position, reduces raw material waste and maintenance costs, ensures fabric processing quality and cleanliness, and realizes a continuous automated process from gluing to winding.

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Abstract

The invention discloses anti-static moisture absorption fabric processing equipment which comprises a conveying frame, a flattening plate is arranged in the conveying frame, the outer wall of one end of the conveying frame is connected with a winding frame composed of a pair of supporting plates, a corresponding hot air drying mechanism can be installed between the flattening plate and the winding frame, and a positioning frame corresponding to the flattening plate is installed on the outer wall of the conveying frame; a conveying base connected with a discharging end block is movably arranged in the positioning frame, a plurality of conveying inserting plates are arranged in the discharging end block, and recycling inserting plates used for assisting in cleaning and recycling are arranged between the conveying inserting plates. Compared with the prior art, the recycling insertion plate and the conveying insertion plate are arranged in a staggered mode, and a negative pressure system is formed through the air pressure pipe, the one-way exhaust pipe and the storage plate; when the transmission frame moves, redundant glue is sucked into the storage plate for temporary storage through the recovery pipe, overflowing glue in the gluing process can be recovered, raw material waste is reduced, follow-up centralized treatment is facilitated, meanwhile, equipment is kept clean, and the maintenance cost is reduced.
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Description

Technical Field

[0001] The invention relates to the technical field of textile processing, in particular to anti-static moisture-absorbing fabric processing equipment. Background Art

[0002] Moisture-wicking fabrics are functional textiles that achieve rapid moisture conduction through fiber structure design and chemical treatment technology. Gluing moisture-wicking fabrics is a common functional processing technology, the purpose of which is usually to give the fabric new properties or form a functional barrier in specific areas.

[0003] Existing moisture-absorbing fabrics are often used to make quick-drying sportswear. The coating can increase the stiffness and thickness of the fabric, and can play a buffering role in areas of sportswear with greater friction, such as the knees or buttocks. However, during the production process, the existing moisture-absorbing fabrics are prone to slight deformation during transmission due to their own good elasticity and tension, resulting in an uneven surface of the base fabric. In the subsequent gluing process, the thickness of the glue layer is uneven, and there are generally bubbles between the glue layer and the surface of the fabric, which makes it easy for the glue layer to separate, affecting the overall processing quality. In the gluing process, the glue head used for a long time is blocked, affecting the inconsistent glue output and also causing the glue layer thickness to be uneven. For this reason, we propose an anti-static moisture-absorbing fabric processing equipment to solve the above problems. Summary of the Invention

[0004] The object of the present invention is to provide an anti-static moisture-absorbing fabric processing device to solve the problems raised in the above background technology.

[0005] To achieve the above object, the present invention provides the following technical solution: an anti-static moisture-absorbing fabric processing device, comprising:

[0006] A conveying frame is provided with a plurality of conveying rollers installed inside thereof for conveying the moisture-absorbing cloth, a spreading plate is provided inside the conveying frame, the spreading plate is located between the conveying rollers and is used for laying and flattening the moisture-absorbing cloth, an outer wall of one end of the conveying frame is connected to a winding frame composed of a pair of support plates, a corresponding hot air drying mechanism can be installed between the spreading plate and the winding frame, a positioning frame corresponding to the spreading plate is installed on the outer wall of the conveying frame, and a conveying seat connected to a blanking end block is movably provided inside the positioning frame;

[0007] Among them, a plurality of transmission plug-ins are provided inside the unloading end block, and a recovery plug-in for assisting cleaning and recycling is provided between the transmission plug-ins. The recovery plug-in is arranged inside the unloading end block and is staggered with the transmission plug-in. When the moisture-absorbing cloth needs to be transferred to paint, it can be stretched with the help of the reset rods provided at both ends of the spreading plate, and the moisture-absorbing cloth can be flatly laid on the top of the spreading plate, and the conveying seat can be used to drive the unloading end block at the bottom to move, and it can be pressed against the surface of the moisture-absorbing cloth to play a role in gluing. In the subsequent transmission process, the hot air mechanism is used to quickly dry it and it is uniformly recovered to the reel.

[0008] Preferably, the outer wall of the blanking end block is provided with a feed port, and the interior of the blanking end block is provided with multiple sets of rectangular hollow plates that penetrate the feed port. The transfer plug-in piston is inserted into the rectangular hollow plates, and the rectangular hollow plates are provided with glue discharge holes. A pair of transfer holes are provided on the outer wall of the transfer plug-in, which are used to transfer glue through the glue discharge holes after the transfer plug-in moves to a certain position, and a gap is provided between the hollow plates. The recovery plug-in is arranged between the rectangular hollow plates. The transmission frame controls the movement of the transfer plug-in, so that the transfer holes are precisely aligned with the glue discharge holes, and the glue is discharged evenly. This ensures a consistent thickness of the glue layer and accurate coating position, avoiding glue accumulation or omission.

[0009] Preferably, a pair of resettable push shafts are provided on the outer wall of the blanking end block, and a welding plate is installed at the bottom of each push shaft. A transmission wheel is rotatably provided on the outer side of the welding plate, and the transmission wheel is used to move against the surface of the moisture-absorbing cloth to feed and assist in positioning;

[0010] A rectangular transmission frame is provided between the welding plates. The transmission frame is clamped at the bottom of the outer wall of the transmission plug-in plate and is used to drive it to move inside the blanking end block for glue transmission.

[0011] Preferably, both the front and rear ends of the blanking end block are equipped with docking plates, and a detachable clamping shaft is installed at the bottom of the docking plate on one side. The cross section of the clamping shaft is "U"-shaped and a plurality of reset shafts are provided with movable plugs inside. A transmission pressure plate with a "U"-shaped cross section is inserted on the reset shaft, and the bottom of the transmission pressure plate can be against the surface of the moisture-absorbing cloth;

[0012] A rectangular groove is provided at the bottom of the transmission pressure plate, and multiple groups of swing shafts are provided inside the rectangular groove. One end of the multiple groups of swing shafts is installed with a counterweight rod that is vertically staggered with them. The bottom of the swing shaft is provided with an adsorption block that can be clamped to clean and recycle the lint and dust on the surface of the moisture-absorbing cloth, avoiding uneven adhesion or performance degradation due to residual impurities in the glue-coated area, and ensuring high cleanliness of the fabric.

[0013] Preferably, both ends of the recovery plug plate are provided with card slots, and storage plates are provided inside the card slots. The storage plates are hollow, and the bottom of the recovery plug plate is connected to symmetrically arranged recovery pipes. The bottom of the transmission plug plate is provided with multiple rectangular frames, and the rectangular frames are provided with multiple discharge troughs. The recovery pipes correspond to the discharge troughs, and the storage plates can be connected with the recovery pipes, and can recover the glue at the bottom of the transmission plug plate under the action of negative pressure, thereby reducing blockages caused by drying of the glue.

[0014] Preferably, the recycling plug plate is provided with a plurality of hollow slots between the card slots, and an air pressure tube is provided at the top of the hollow slot, and one-way air extraction tubes are provided at both ends of the top of the air pressure tube, and the one-way air extraction tubes pass through the recycling plug plate and are sealed and inserted into the storage plate;

[0015] The bottom of the air pressure tube is connected to a one-way exhaust pipe, and the bottoms of multiple groups of the one-way exhaust pipes are connected to a clamping plate. The clamping plate is clamped inside the transmission frame to recover overflow glue during the gluing process, reduce raw material waste, facilitate subsequent centralized processing, keep the equipment clean, and reduce maintenance costs.

[0016] Preferably, a pair of connecting frames are provided between the spreading plate and the conveying frame, and a clamping frame is installed at the front and rear ends of the spreading plate. The clamping frame is provided with an arc groove with a reset rod for movable clamping, and the reset rod is externally sleeved with a leveling shaft with a spiral rubber protrusion. The leveling shaft can fit on the edge of the moisture-absorbing cloth and is used to transmit and drive it to stretch outward. The leveling shafts at both ends of the spreading plate fit on the edge of the cloth, and the cloth is stretched outward under the action of the reset rod to eliminate wrinkles.

[0017] Preferably, a positioning shaft is installed inside the conveying frame, and a metal guide plate is installed at the bottom of the positioning shaft for connecting to external equipment to discharge static electricity.

[0018] Preferably, a plurality of guide shafts are provided inside the winding frame, and a detachable winding shaft is installed between the winding frames, which can be used to wind up the finished moisture-absorbing cloth that has been processed and dried.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] 1. The present invention staggers the recovery plug-in board with the transmission plug-in board, and forms a negative pressure system through the air pressure pipe, one-way exhaust pipe and storage plate. When the transmission frame moves, excess glue is sucked into the storage plate through the recovery pipe and temporarily stored. This can recover the glue overflowed during the gluing process, reduce raw material waste, facilitate subsequent centralized processing, keep the equipment clean, and reduce maintenance costs.

[0021] 2. The present invention uses the coordinated work of the blanking end block, the transmission wheel, and the spreading plate. The transmission wheel presses the moisture-absorbing cloth against the surface of the spreading plate, reducing small movements during the transmission process. At the same time, the transmission frame controls the movement of the transmission plug plate, so that the transmission hole and the glue discharge hole are precisely aligned, and the glue is evenly discharged, ensuring a consistent thickness of the glue layer and accurate coating position, reducing glue accumulation or omission.

[0022] 3. The present invention uses a hot air drying mechanism located between the spreading plate and the winding frame to quickly dry the moisture-absorbing cloth immediately after gluing, without the need for an additional transfer step. Combined with the guide shaft and detachable winding shaft of the winding frame, a continuous automated process from gluing, drying to winding is achieved;

[0023] 4. In the present invention, the transmission pressure plate of the blanking end block rubs against the surface of the moisture-absorbing cloth during the transmission process, driving the swing shaft and the counterweight rod to swing, so that the adsorption block actively cleans dust and lint; combined with the design of the reset shaft, the cleaning process does not affect normal transmission, effectively avoiding uneven adhesion or performance degradation in the glue coating area due to residual impurities, ensuring high fabric cleanliness. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 This is a schematic diagram of the cloth transmission inside the conveyor frame of the present invention;

[0026] Figure 3 This is a schematic diagram of the flat plate structure of the present invention;

[0027] Figure 4 For the present invention Figure 3 A partial enlarged schematic diagram in the middle;

[0028] Figure 5 This is a schematic diagram of the partial structure of the conveyor frame of the present invention;

[0029] Figure 6 This is a schematic diagram of the bottom structure of the conveying seat of the present invention;

[0030] Figure 7 This is a partial enlarged schematic diagram of point B in the figure of the present invention;

[0031] Figure 8 This is a schematic diagram of the internal explosive splitting structure of the blanking end block of the present invention;

[0032] Figure 9 For the present invention Figure 8 A partial enlarged schematic diagram of point C in the middle;

[0033] Figure 10 This is a partial cross-sectional structural diagram of the recycling plugboard of the present invention;

[0034] In the figure: 1. Conveyor frame; 2. Expanding plate; 3. Positioning frame; 4. Winding frame; 5. Recovery plug-in plate; 11. Positioning shaft; 12. Transmission roller; 21. Connecting frame; 22. Clamping frame; 23. Reset rod; 24. Leveling shaft; 31. Conveyor seat; 32. Blanking end block; 33. Docking plate; 34. Clamping shaft; 341. Reset shaft; 35. Transmission pressure plate; 351. Swinging shaft; 352. Counterweight rod; 36. Conveyor plug-in plate; 37. Transmission frame; 38. Pushing shaft; 381. Welding plate; 382. Conveyor wheel; 41. Winding shaft; 51. Storage plate; 511. One-way exhaust pipe; 52. Air pressure pipe; 53. Recovery pipe; 54. Clamping plate; 541. One-way exhaust pipe. DETAILED DESCRIPTION

[0035] 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. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] See also Figures 1-10 The present invention provides a technical solution: an anti-static hygroscopic fabric processing device, comprising:

[0037] The conveyor frame 1 has a plurality of conveying rollers 12 installed inside thereof for conveying the moisture-absorbing cloth. A spreading plate 2 is provided inside the conveyor frame 1. The spreading plate 2 is located between the conveying rollers 12 and is used for laying and flattening the moisture-absorbing cloth. The outer wall of one end of the conveyor frame 1 is connected to a winding rack 4 composed of a pair of support plates. A corresponding hot air drying mechanism can be installed between the spreading plate 2 and the winding rack 4. A positioning frame 3 corresponding to the spreading plate 2 is installed on the outer wall of the conveyor frame 1. A conveying seat 31 connected to a blanking end block 32 is movably provided inside the positioning frame 3.

[0038] Among them, a plurality of transmission plug plates 36 are provided inside the unloading end block 32, and a recovery plug plate 5 for assisting cleaning and recovery is provided between the transmission plug plates 36. The recovery plug plates 5 are arranged inside the unloading end block 32 and are staggered with the transmission plug plates 36. When the moisture-absorbing cloth needs to be transferred to paint, it can be stretched with the help of the reset rods 23 set at both ends of the spreading plate 2, and the moisture-absorbing cloth can be flatly laid on the top of the spreading plate 2, and the conveying seat 31 can be used to drive the unloading end block 32 at the bottom to move, and it can be pressed against the surface of the moisture-absorbing cloth to play a role in gluing, and in the subsequent transmission process, it can be quickly dried with the help of the hot air mechanism, and it is uniformly recovered to the winding shaft 41.

[0039] like Figure 6 and Figure 8As shown, a feed port is provided on the outer wall of the blanking end block 32, and a plurality of rectangular hollow plates communicating with the feed port are provided inside the blanking end block 32. The transmission plug plate 36 piston is inserted inside the rectangular hollow plate and a glue discharge hole is provided inside the rectangular hollow plate. A pair of transmission holes are provided on the outer wall of the transmission plug plate 36, which are used to transmit glue through the glue discharge hole after the transmission plug plate 36 moves to a certain position, and a gap is provided between the hollow plates. The recovery plug plate 5 is provided between the rectangular hollow plates. When the transmission is carried out with the help of external equipment for pressurization, when the transmission hole outside the transmission plug plate 36 is staggered with the glue discharge hole, the generated pressure disappears, reducing the continuous discharge of excess glue inside the pipeline.

[0040] like Figure 8 and Figure 10 As shown, a pair of resettable push shafts 38 are movably provided on the outer wall of the blanking end block 32. A welding plate 381 is installed at the bottom of the push shafts 38. A transmission wheel 382 is rotatably provided on the outer side of the welding plate 381. The transmission wheel 382 is used to move against the surface of the moisture-absorbing cloth for auxiliary positioning. After the transmission wheel 382 can follow the blanking end block 32 to feed downward, it can make the transmission wheel 382 move against the surface of the moisture-absorbing cloth, which can play a driving role and drive the push shaft 38 to move.

[0041] A rectangular transmission frame 37 is provided between the welding plates 381. The transmission frame 37 is clamped at the bottom of the outer wall of the transmission plug plate 36 to drive it to move inside the blanking end block 32 and to move the glue transmission push shaft 38. The transmission frame 37 can move as a whole, and the transmission hole and the glue discharge hole on the outside of the transmission plug plate 36 can be connected, which can play a role in glue discharge and evenly spread the glue on the surface of the moisture-absorbing cloth. At this time, the transmission wheel 382 can press the moisture-absorbing cloth against the surface of the spreading plate 2, reducing the impact of small movements during the transmission process on the glue coating position and the thickness of the glue layer.

[0042] like Figure 6 and Figure 7 As shown, in order to reduce the adhesion of dust and lint to the surface of the moisture-absorbing cloth during transmission, docking plates 33 are installed at both the front and rear ends of the blanking end block 32. A detachable clamping shaft 34 is installed at the bottom of one side of the docking plate 33. The clamping shaft 34 has a "U"-shaped cross-section and a plurality of reset shafts 341 are provided for movable insertion inside. A transmission pressure plate 35 with a "U"-shaped cross-section is inserted on the reset shaft 341. The bottom of the transmission pressure plate 35 can be pressed against the surface of the moisture-absorbing cloth. The transmission pressure plate 35 can move with the blanking end block 32 and can press the transmission pressure plate 35 against the moisture-absorbing cloth to generate a certain friction force. Without affecting the normal transmission of the moisture-absorbing cloth, its surface is cleaned and the adhesion of dust and debris is reduced.

[0043] A rectangular groove is provided at the bottom of the transmission pressure plate 35, and multiple groups of swing shafts 351 are provided inside the rectangular groove. A counterweight rod 352 is installed at one end of the multiple swing shafts 351 and is perpendicular to the same. An adsorption block that can be clamped at the bottom of the swing shaft 351 is used to clean and recover lint and dust on the surface of the moisture-absorbing cloth. Driven by friction, the transmission pressure plate 35 can cooperate with the reset shaft 341 at the top to reciprocate, thereby driving the internal swing shaft 351 to swing continuously with the cooperation of the counterweight rod 352, so that the adsorption block can adsorb and clean the surface of the moisture-absorbing cloth, reducing the situation where there is lint and other residues on the surface of the fabric that needs to be coated with glue.

[0044] like Figure 8 As shown, slots are provided at both ends of the recovery plug plate 5, and storage plates 51 are provided inside the slots. The storage plates 51 are hollow, and symmetrically arranged recovery pipes 53 are connected to the bottom of the recovery plug plate 5. A plurality of rectangular frames are provided at the bottom of the transmission plug plate 36, and a plurality of discharge grooves are provided on the rectangular frames. The recovery pipes 53 correspond to the discharge grooves, and the storage plates 51 can be connected to the recovery pipes 53. The air pressure inside the storage plate 51 changes, forming a negative pressure inside it, thereby guiding the excess glue at the bottom of the transmission plug plate 36 from the rectangular frame along the recovery pipe 53, which is convenient for subsequent unified processing and maintenance.

[0045] like Figure 8 As shown, the recovery plug plate 5 has a plurality of hollow slots between the card slots, and an air pressure tube 52 is provided at the top of the hollow slot. One-way air extraction tubes 511 are provided at both ends of the top of the air pressure tube 52. The one-way air extraction tubes 511 pass through the recovery plug plate 5 and are sealed and inserted into the storage plate 51.

[0046] A one-way exhaust pipe 541 is connected to the bottom of the air pressure tube 52, and a plurality of one-way exhaust pipes 541 are connected to the bottom of a clamping plate 54. The clamping plate 54 is clamped inside the transmission frame 37. During the movement of the transmission frame 37, the clamping plate 54 is pulled to move. When the equipment is in the process of gluing, the air flow inside the air pressure tube 52 can be discharged along the one-way exhaust pipe 541. After one place of gluing is completed, the blanking end block 32 can be lifted to reset the transmission frame 37. At this time, when the air pressure tube 52 is reset, the air pressure inside the storage plate 51 can be extracted to form a negative pressure inside it.

[0047] like Figure 3 and Figure 4 As shown, a pair of connecting frames 21 are provided between the spreading plate 2 and the conveying frame 1, and a clamping frame 22 is installed at the front and rear ends of the spreading plate 2. The clamping frame 22 is provided with an arc groove with a reset rod 23 for movable clamping. The reset rod 23 is provided with a leveling shaft 24 with a spiral rubber protrusion on the outside. The leveling shaft 24 can fit on the edge of the moisture-absorbing cloth and is used to transmit and drive it to stretch outward, so as to level the moisture-absorbing cloth. The spreading plate 2 can support the moisture-absorbing cloth, which is convenient for gluing the surface of the moisture-absorbing cloth. Compared with the suspended setting, the gluing process can be made more stable.

[0048] like Figure 1 As shown, a positioning shaft 11 is installed inside the conveyor frame 1, and a metal guide plate is installed at the bottom of the positioning shaft 11 to conduct static electricity, which can reduce the absorption of dust and debris on the surface of the moisture-absorbing cloth under the action of static electricity.

[0049] like Figure 1 As shown, a plurality of guide shafts are provided inside the winding frame 4, and a detachable winding shaft 41 is installed between the winding frame 4, which can be used to wind up the processed moisture-absorbing cloth.

[0050] The working principle is as follows: first, when the moisture-absorbing cloth needs to be transferred to the coating, it can be stretched with the help of the reset rods 23 provided at both ends of the spreading plate 2, and the moisture-absorbing cloth can be laid flat on the top of the spreading plate 2, and the conveying seat 31 drives the bottom unloading end block 32 to move, which can be pressed against the surface of the moisture-absorbing cloth to play the role of gluing, and in the subsequent transmission process, the hot air mechanism plays the role of rapid drying, and is uniformly recovered to the reel 41. As the moisture-absorbing cloth is transferred, the conveying roller 12 cooperates with the moisture-absorbing cloth to make it press against the metal guide plate at the bottom of the positioning shaft 11 to discharge static electricity, and in the subsequent transmission process, the moisture-absorbing cloth can be clamped on the clamping frames 22 at both ends, and the reset rod 23 can give the moisture-absorbing cloth a downward stretching force, so that it can be laid flat on the top of the spreading plate 2, which is convenient for subsequent gluing. In the process of transferring the moisture-absorbing cloth, the elastic protrusions on the surface of the leveling shaft 24 can drive the moisture-absorbing cloth to stretch to both sides, which can reduce the longitudinal wrinkles caused by stretching during the transmission process.

[0051] The glue is then applied to the surface of the fabric by the conveying wheel 382, ​​which is pressed against the surface of the fabric and the glue is applied to the surface of the fabric.

[0052] Finally, during the movement of the transmission frame 37, the clamping plate 54 is pulled to move. When the equipment is in the process of gluing, the air flow inside the air pressure tube 52 can be discharged along the one-way exhaust pipe 541. After one section of gluing is completed, the blanking end block 32 can be lifted to reset the transmission frame 37. At this time, the air pressure tube 52 can be reset to extract the air pressure inside the storage plate 51, so that a negative pressure is formed inside the storage plate 51, thereby guiding the excess glue at the bottom of the transmission plug plate 36 from the rectangular frame along the recovery pipe 53, so as to facilitate subsequent unified processing and maintenance.

[0053] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An anti-static hygroscopic fabric processing equipment, characterized by: include, A conveying frame (1) is provided with a plurality of transmission rollers (12) installed therein for transmitting moisture-absorbing cloth, a spreading plate (2) is provided inside the conveying frame (1), the spreading plate (2) is located between the transmission rollers (12) and is used for laying and flattening the moisture-absorbing cloth, an outer wall of one end of the conveying frame (1) is connected to a winding frame (4) composed of a pair of support plates, a corresponding hot air drying mechanism can be installed between the spreading plate (2) and the winding frame (4), a positioning frame (3) corresponding to the spreading plate (2) is installed on the outer wall of the conveying frame (1), and a conveying seat (31) connected to a blanking end block (32) is movably provided inside the positioning frame (3); A plurality of transmission plug-ins (36) are provided inside the blanking end block (32), and recovery plug-ins (5) for assisting cleaning and recovery are provided between the transmission plug-ins (36). The recovery plug-ins (5) are arranged inside the blanking end block (32) and are staggered with the transmission plug-ins (36).

2. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: The outer wall of the blanking end block (32) is provided with a feed port, and the inside of the blanking end block (32) is provided with a plurality of rectangular hollow plates that are connected to the feed port. The piston of the transmission plug plate (36) is inserted into the inside of the rectangular hollow plate and a glue discharge hole is provided inside the rectangular hollow plate. A pair of transmission holes are provided on the outer wall of the transmission plug plate (36), which are used to transmit glue through the glue discharge hole after the transmission plug plate (36) moves to a certain position, and a gap is provided between the hollow plates. The recovery plug plate (5) is set between the rectangular hollow plates.

3. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: A pair of repositionable push shafts (38) are provided on the outer wall of the blanking end block (32), and a welding plate (381) is installed at the bottom of each push shaft (38). A transmission wheel (382) is provided on the outer side of the welding plate (381) for rotation. The transmission wheel (382) is used to move against the surface of the moisture-absorbing cloth for feeding and assisting positioning. A rectangular transmission frame (37) is provided between the welding plates (381), and the transmission frame (37) is clamped at the bottom of the outer wall of the transmission plug plate (36) to drive it to move inside the blanking end block (32) for glue transmission.

4. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: Both the front and rear ends of the blanking end block (32) are equipped with docking plates (33), and a detachable clamping shaft (34) is installed at the bottom of the docking plate (33) on one side. The clamping shaft (34) has a "U"-shaped cross section and a plurality of reset shafts (341) are provided for movable insertion inside. A transmission pressure plate (35) with a "U"-shaped cross section is inserted on the reset shaft (341), and the bottom of the transmission pressure plate (35) can be pressed against the surface of the moisture-absorbing cloth. A rectangular groove is provided at the bottom of the transmission pressure plate (35), and a plurality of groups of swing shafts (351) are provided inside the rectangular groove. A counterweight rod (352) perpendicularly staggered with the swing shafts (351) is installed at one end of the plurality of groups of swing shafts (351). An adsorption block capable of being clamped to the bottom of the swing shaft (351) is provided for cleaning and recovering lint and dust on the surface of the moisture-absorbing cloth.

5. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: The recycling plug plate (5) is provided with a card slot at both ends, and a storage plate (51) is provided inside the card slot. The storage plate (51) is hollow. The bottom of the recycling plug plate (5) is connected to a symmetrically arranged recycling pipe (53). The bottom of the transmission plug plate (36) is provided with a plurality of rectangular frames, and a plurality of discharge grooves are provided on the rectangular frames. The recycling pipe (53) corresponds to the discharge groove, and the storage plate (51) can be connected to the recycling pipe (53).

6. The antistatic moisture-absorbing fabric processing equipment according to claim 5, characterized in that: The recycling plug plate (5) is provided with a plurality of hollow slots between the card slots, and a pressure tube (52) is provided at the top of the hollow slot. One-way air extraction tubes (511) are provided at both ends of the top of the pressure tube (52). The one-way air extraction tubes (511) pass through the recycling plug plate (5) and are sealed and inserted into the interior of the storage plate (51). The bottom of the air pressure tube (52) is connected to a one-way exhaust pipe (541), and the bottoms of multiple groups of the one-way exhaust pipes (541) are connected to a clamping plate (54), and the clamping plate (54) is clamped inside the transmission frame (37).

7. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: A pair of connecting frames (21) are provided between the spreading plate (2) and the conveying frame (1), and a clamping frame (22) is installed at both the front and rear ends of the spreading plate (2). The clamping frame (22) is provided with an arc groove with a movable clamping member provided with a reset rod (23). The reset rod (23) is externally sleeved with a leveling shaft (24) with a spiral rubber protrusion. The leveling shaft (24) can be fitted on the edge of the moisture-absorbing cloth to drive it to stretch outward.

8. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: A positioning shaft (11) is installed inside the conveying frame (1), and a metal guide plate is installed at the bottom of the positioning shaft (11).

9. The antistatic moisture-absorbing fabric processing equipment according to claim 1, characterized in that: A plurality of guide shafts are provided inside the winding frame (4), and a detachable winding shaft (41) is installed between the winding frame (4).