Towel production processing gray cloth feeding device and production process thereof

By combining the multi-angle discharge mechanism and the conveying structure, the problem of fabric bonding in the fabric feeding device is solved, the scouring effect is improved and the dust removal is automated, ensuring the scouring quality and environmental cleanliness.

CN120797352BActive Publication Date: 2025-11-18NANTONG KALE TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202511275038.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2025-11-18
Estimated Expiration
2045-09-08

AI Technical Summary

Technical Problem

The existing fabric feeding device has a single and fixed placement position, which causes adjacent fabrics to stick together in the scouring pot, affecting the scouring effect.

Method used

It adopts a multi-angle discharge mechanism and conveying structure, and uses a hydraulic cylinder to drive the rack and toothed disc to adjust the feeding position of the fabric. Combined with a driven translation dust blowing component and an adsorption cylinder, it realizes automatic arrangement and dust removal of the fabric.

Benefits of technology

It effectively prevents adjacent fabrics from sticking together, ensuring the scouring effect, and solves the problem of cotton lint and fiber residue on the surface of the fabric by back-blowing dust removal, thereby improving production efficiency and environmental cleanliness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a grey cloth feeding device for towel production and processing and a production process thereof, which comprises a rack and a conveying structure. One end of a hydraulic cylinder is connected with one end of a rack gear. A rotating shaft is provided with a discharging seat at the top. The rotating shaft and the hydraulic cylinder are arranged on a base. The discharging seat is provided with rollers at equal intervals. The grey cloth conveyed to the discharging seat by the conveying structure is automatically arranged into the inside of a boiling pan under the guidance of the rollers. The hydraulic cylinder pushes the rack gear to move, and the rack gear and the rotating shaft rotate. The rotating shaft drives the discharging seat to swing to adjust the feeding position. Then, the hydraulic cylinder pulls the rack gear to reset. The rack gear drives the rotating shaft and the discharging seat at the top to reset, so that the feeding position of the current grey cloth on the discharging seat is always deviated from the feeding position of the previous grey cloth. In this way, the boiling effect of the grey cloth is ensured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of towel production, in particular to a gray cloth feeding device for towel production and processing and a production process thereof. BACKGROUND

[0002] Towels are one of the most common household items and can be used for washing face and taking a bath, etc. In the production and processing of towels, a gray cloth feeding device is needed to transport the towels to the boiling pot for coloring treatment. After searching, it is found that the typical gray cloth feeding device in the prior art is disclosed in a gray cloth feeding device for towel production and processing with publication number CN219173762U, which includes a box body, vertical plates riveted to the front and rear sides of the top right side of the box body, a servo motor bolted to the top of the front side of the vertical plate, a rotating shaft of the servo motor penetrating through the vertical plate and fixedly connected with a conveying roller, support rods riveted to the top and rear side of the top left side of the box body, a detection mechanism riveted to the top end of the support rod, a placement rack riveted to the top of the detection mechanism, support rods riveted to the top and rear side of the top left side of the box body, a dust collection mechanism bolted to the top left side of the box body, a first dust collection pipe communicated with the front side of the top of the box body, and a second dust collection pipe communicated with the rear side of the top of the box body. The main feature is that the cooperation of the support rods and the placement rack has the advantage of material shortage alarm function, which can monitor the remaining amount of the gray cloth in real time and alarm the workers in time when the material is insufficient, thereby improving the production efficiency.

[0003] In summary, the existing gray cloth feeding device has a single fixed feeding position, which can easily cause the phenomenon that two pieces of gray cloth adjacent to each other are pasted together when fed into the boiling pot, thereby affecting the boiling effect. In view of the above problems, the existing equipment needs to be improved. SUMMARY

[0004] The present application aims to provide a gray cloth feeding device for towel production and processing and a production process thereof to solve the problem of the existing gray cloth feeding device with a single fixed feeding position, which can easily cause the phenomenon that two pieces of gray cloth adjacent to each other are pasted together when fed into the boiling pot, thereby affecting the boiling effect.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical solution: a gray cloth feeding device for towel production and processing, comprising a rack and a conveying structure,

[0006] The frame is mounted on top of the base, and a multi-angle discharge mechanism is provided on the frame. The multi-angle discharge mechanism includes a hydraulic cylinder, a rack, universal rollers, a bracket, a rotating shaft, a toothed disc, a discharge seat, rollers, and a driven translational dust blowing assembly. One end of the hydraulic cylinder is connected to one end of the rack, and a toothed disc is meshed with one side of the rack. The toothed disc is mounted on the rotating shaft, and a discharge seat is connected to the top of the rotating shaft. The rotating shaft and the hydraulic cylinder are mounted on the base. Rollers are evenly distributed on the discharge seat, and the height of the rollers increases from left to right.

[0007] Preferably, the conveying structure is located on one side of the multi-angle discharge mechanism, and the conveying structure includes a motor, a conveyor, a first roller, a second roller, a belt drive structure, a first gear drive mechanism, an adsorption cylinder, a second gear drive mechanism, and a bracket. The output end of the motor is connected to the conveyor, and the conveyor is located inside the frame. The first roller and the second roller are located above the conveyor, and the drive shafts at both ends of the conveyor are connected to the first roller and the adsorption cylinder respectively through the belt drive structure. At the same time, the first roller is connected to the second roller through the first gear drive mechanism. The adsorption cylinder is located below the conveyor, and the adsorption cylinders are evenly distributed on the bracket. The adsorption cylinders are connected to each other through the second gear drive mechanism.

[0008] Preferably, the conveyor belt of the conveyor is provided with through holes, and the top inner wall of the conveyor belt is in contact with the driven translational dust blowing assembly.

[0009] Preferably, the bottom of the feeding seat is symmetrically provided with universal rollers, and the universal rollers are mounted on the support plate.

[0010] Preferably, the driven translational dust blowing assembly includes a movable plate, a fixed block, a first airbag and a second airbag, and the two sides of the fixed block are respectively connected to one end of the first airbag and one end of the second airbag, while the other end of the first airbag and the second airbag are both connected to the movable plate.

[0011] Preferably, the movable plate is connected to the bracket, and the bracket is slidably connected inside the guide groove, while the guide groove is opened on one side wall of the frame.

[0012] Preferably, the driven translational dust blowing assembly further includes an air storage box, a nozzle, and a ball, with the ball provided on the top of the air storage box and the nozzle provided on the bottom of the air storage box.

[0013] Preferably, the nozzles and spheres are evenly spaced on the gas storage box, and the spheres and nozzles are in contact with the top and bottom inner walls of the conveyor belt on the conveyor, respectively.

[0014] Preferably, the air storage box is connected to the first airbag and the second airbag via a delivery pipe, and a one-way exhaust valve is provided on the delivery pipe, while a one-way air intake valve is provided on the first airbag and the second airbag.

[0015] A towel production process, the application has a kind of grey cloth feeding device for towel production and processing, comprising the following steps:

[0016] S1, raw material pretreatment stage: sequentially carry out cotton cleaning, cotton carding, combing, drawing, roving, spinning, bobbin winding, twisting, warping, sizing, threading, weaving and other processes, to make towel prototype;

[0017] S2, grey cloth processing stage: the grey cloth to be boiled is transported into the boiling pot for processing through the conveying structure and the multi-angle discharging mechanism, and the specific process includes the following: the motor drives the conveyor to rotate to convey the grey cloth, the conveyor is driven by the belt transmission structure and the first gear transmission mechanism to rotate the first roller and the second roller in opposite directions to stretch the grey cloth on the conveyor to the opposite sides, and the stretched grey cloth moves to the discharging seat under the conveying of the conveyor, on the other hand, the hydraulic cylinder drives the rack to move, the rack moves to drive the gear disc and the shaft to rotate, the shaft drives the discharging seat to swing back and forth to adjust the dropping position of the grey cloth above it;

[0018] S3, finished product finishing: the dyed towel is classified and sewn;The sewn towel is inspected;Then the qualified products are packaged, and the unqualified products are stored and marked with reasons for rework or downgrading.

[0019] Compared with the prior art, the beneficial effects of the grey cloth feeding device for towel production and processing and the production process thereof are:

[0020] (1) The multi-angle discharging mechanism and the conveying structure can effectively solve the problem that the existing grey cloth feeding device has a single fixed dropping position, which easily causes the phenomenon that two adjacent grey cloths dropped into the boiling pot adhere to each other, thereby affecting the boiling effect, the grey cloth conveyed to the discharging seat by the conveying structure is automatically arranged into the boiling pot under the guidance of the roller, then the hydraulic cylinder drives the rack to move, the rack moves to drive the gear disc and the shaft to rotate, the shaft drives the discharging seat to swing to adjust the dropping position, then in the process of the hydraulic cylinder pulling the rack to reset, the gear disc drives the shaft and the discharging seat on the top thereof to reset, so that the dropping position of the current grey cloth on the discharging seat is always deviated from the dropping position of the previous grey cloth, thereby preventing the two adjacent grey cloths dropped into the boiling pot from adhering to each other, and ensuring the boiling effect of the grey cloth;

[0021] (2) The cooperation of the driven translation dust blowing assembly and the support can effectively solve the problem that the surface of the existing grey cloth feeding device is easy to be covered with cotton and fibers when conveying the grey cloth, and manual cleaning is more troublesome. When the hydraulic cylinder pushes the rack to adjust the position of the grey cloth to the cooking pot position, i.e. the feeding angle, the moving plate on one side of the support is extruded, the first air bag is extruded by the moving plate, the gas in the first air bag is discharged to the inside of the storage box through the conveying pipeline, and the conveying belt on the conveying structure is back blown through the nozzle at the bottom, so that the cotton and fibers falling and electrostatically adsorbed on the conveying belt can be blown down. When the hydraulic cylinder pulls the rack to reset, the moving plate on the other side is extruded, the gas in the second air bag is discharged to the inside of the storage box through the conveying pipeline, and the conveying belt on the conveying structure is back blown through the nozzle at the bottom. At this time, the moving plate connected to the first air bag is stretched by the support, and the external airflow enters the inside of the first air bag through the one-way inlet valve on the corresponding first air bag to supplement the airflow. Conversely, the second air bag is the same, so as to ensure the normal and continuous operation of the back blowing and dust removal work.

[0022] (3) The use of the conveying structure can effectively solve the problem that the falling pollutants cannot be treated during back blowing and dust removal. The conveyor is driven by the belt transmission structure and the first gear transmission mechanism, and the first roller and the second roller are synchronously driven to rotate in the opposite directions to stretch the grey cloth on the conveyor to the opposite sides, so as to ensure the subsequent cooking effect of the grey cloth. When the conveyor rotates, a group of adsorption cylinders are driven to rotate by the belt transmission structure, and a group of adsorption cylinders on the adjacent side are synchronously driven to rotate in the opposite directions by the cooperation of the second gear transmission mechanism, i.e. a plurality of groups of positive and negative rotating adsorption cylinders are used to adsorb the pollutants blown down from the conveying structure by the nozzles, so as to avoid the pollution of the working environment, and the functionality of the device is enriched. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 is the isometric view of the present application;

[0024] Figure 2 is the position relationship overall structure schematic view of the conveying structure and the multi-angle discharging mechanism of the present application;

[0025] Figure 3 is the overall structure schematic view of the multi-angle discharging mechanism of the present application;

[0026] Figure 4 is the isometric view of the present application;

[0027] Figure 5 is the overall structure schematic view of the conveying structure of the present application;

[0028] Figure 6 is the overall structure schematic view of the multi-angle discharging mechanism of the present application;

[0029] Figure 7 For the present application Figure 2 Amplification structure schematic diagram at A in the present application

[0030] Figure 8 For the present application production process flow chart.

[0031] In the figure: 1, rack; 2, conveying structure; 201, motor; 202, conveyor; 203, first roller; 204, second roller; 205, belt drive structure; 206, first gear transmission mechanism; 207, suction cylinder; 208, second gear transmission mechanism; 209, bracket; 3, base; 4, multi-angle discharging mechanism; 401, hydraulic cylinder; 402, rack; 403, universal roller; 404, support; 405, rotating shaft; 406, toothed disc; 407, blanking seat; 408, roller; 4091, moving plate; 4092, fixed block; 4093, first air bag; 4094, second air bag; 4095, gas storage box; 4096, spout; 4097, ball; 5, bearing plate; 6, guide groove. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.

[0033] Please refer to Figures 1-8 , the present application provides a kind of technical scheme: a towel production processing with grey cloth feeding device and its production process, Embodiments

[0034] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 And Figure 7As shown, a towel production processing gray cloth feeding device, rack 1 is arranged on the top of base 3, and rack 1 is provided with multi-angle discharging mechanism 4, and multi-angle discharging mechanism 4 comprises hydraulic cylinder 401, rack 402, universal roller 403, support 404, rotating shaft 405, toothed disc 406, blanking seat 407, roller 408 and driven translation dust blowing assembly, one end of hydraulic cylinder 401 is connected with one end of rack 402, and one side of rack 402 is engagedly connected with toothed disc 406, and toothed disc 406 is arranged on rotating shaft 405, and the top of rotating shaft 405 is connected with blanking seat 407, and rotating shaft 405 and hydraulic cylinder 401 are arranged on base 3, and blanking seat 407 is provided with rollers 408 at equal intervals, and the height of roller 408 increases from left to right.

[0035] In a further embodiment, the conveying structure 2 is arranged on one side of the multi-angle discharging mechanism 4, and the conveying structure 2 comprises a motor 201, a conveyor 202, a first roller 203, a second roller 204, a belt drive structure 205, a first gear transmission mechanism 206, a suction cylinder 207, a second gear transmission mechanism 208, and a bracket 209. The output end of the motor 201 is connected with the conveyor 202, and the conveyor 202 is arranged on the inner side of the rack 1. The first roller 203 and the second roller 204 are arranged above the conveyor 202. The drive shafts at both ends of the conveyor 202 are connected with the first roller 203 and the suction cylinder 207 respectively through the belt drive structure 205. The first roller 203 is connected with the second roller 204 through the first gear transmission mechanism 206. The suction cylinder 207 is arranged below the conveyor 202 and is arranged on the bracket 209 at equal intervals. The suction cylinders 207 are connected through the second gear transmission mechanism 208.

[0036] In a further embodiment, the conveying belt of the conveyor 202 is provided with through holes, and the top inner wall of the conveying belt is in contact with the driven translation dust blowing assembly.

[0037] In a further embodiment, the bottom of the blanking seat 407 is symmetrically provided with universal rollers 403, and the universal rollers 403 are arranged on the bearing plate 5.

[0038] In a further embodiment, the driven translation dust blowing assembly comprises a moving plate 4091, a fixed block 4092, a first air bag 4093 and a second air bag 4094. The two sides of the fixed block 4092 are respectively connected with one end of the first air bag 4093 and the second air bag 4094. The other end of the first air bag 4093 and the second air bag 4094 is connected with the moving plate 4091.

[0039] In a further embodiment, the moving plate 4091 is connected with the support 404, and the support 404 is slidingly connected in the guide groove 6, and the guide groove 6 is arranged on one side wall of the rack 1.

[0040] Further, in the embodiment, the driven translation dust blowing assembly further comprises a gas storage box 4095, a nozzle 4096 and a ball 4097, and the top of the gas storage box 4095 is provided with the ball 4097, and the bottom of the gas storage box 4095 is provided with the nozzle 4096.

[0041] Further, in the embodiment, the nozzles 4096 and the balls 4097 are equidistantly distributed on the gas storage box 4095, and the balls 4097 and the nozzles 4096 are respectively in contact with the top and the inner wall of the bottom of the conveying belt on the conveyor 202.

[0042] Further, in the embodiment, the gas storage box 4095 is connected with the first air bag 4093 and the second air bag 4094 through a conveying pipeline, and the conveying pipeline is provided with a one-way exhaust valve, and the first air bag 4093 and the second air bag 4094 are provided with one-way air inlet valves. Embodiment

[0043] The embodiment is a further description of the above-mentioned embodiment, and it should be understood that the embodiment includes all the technical features mentioned above and is further described in detail.

[0044] As shown in Figure 8 A towel production process applies a gray cloth feeding device for towel production and processing, including the following steps:

[0045] S1, raw material pretreatment stage: sequentially perform cotton cleaning, cotton carding, combing, drawing, roving, spinning, winding, twisting, warping, sizing, threading, weaving and other processes to make a towel prototype;

[0046] Cotton cleaning mainly loosens the tightly compressed raw fibers into smaller fiber blocks or bundles to facilitate the smooth progress of mixing and impurity removal; removes most of the impurities, defects and short fibers that are not suitable for spinning in the raw fibers; and fully and uniformly mixes different batches of fibers to stabilize the quality of cotton yarn; and then makes cotton fiber rolls with certain weight, length, uniform thickness and good appearance;

[0047] Cotton carding mainly decomposes fibers into single fiber state to improve fiber straightness and parallelism; further mixes fibers uniformly; and makes cotton slivers meeting the requirements;

[0048] Drawing mainly combines 6-8 fiber slivers to improve the unevenness of long sliver segments; lengthens and thins the fiber slivers to the specified weight, and further improves the straightness and parallelism of the fibers; uses combining and stretching to further mix the fibers; mixes different labels and different process treated fiber slivers on the drawing frame; and makes mature slivers with good circle sliver forming and regularly placed in the sliver barrel for use in subsequent processes;

[0049] Roving is mainly done by evenly stretching and thinning the sliver, and further straightening and parallelizing the fibers. 2. Twisting: The stretched sliver is twisted appropriately to give the yarn a certain strength, which is beneficial for roving winding and unwinding on the spinning machine;

[0050] The main process of spinning is to draw the roving to the required fineness, making the fibers straight and parallel; twisting: twisting the sliver back to form a fine yarn with a certain twist and strength; winding: winding the twisted fine yarn onto a bobbin. 4. Forming: making the yarn into bobbins of a certain size and shape for easy handling and subsequent processing;

[0051] S2. Fabric Processing Stage: The fabric to be boiled is conveyed and placed into the boiling pot for processing via the conveyor structure 2 and the multi-angle discharge mechanism 4. The specific process is as follows: First, the power supply is connected to start the device. The motor 201 drives the conveyor 202 to rotate and convey the fabric. With the cooperation of the belt drive structure 205 and the first gear drive mechanism 206, the conveyor 202 synchronously drives the first roller 203 and the second roller 204 to rotate, stretching the fabric on the conveyor 202 to opposite sides. The stretched fabric is moved to the unloading seat 407 by the conveyor 202, and then placed into the boiling pot with the assistance of the roller 408. At the same time, the hydraulic cylinder 401 pushes the rack 402 to move. During the movement, the toothed disc 406 drives the rotating shaft 405 and the top feeding seat 407 to rotate for position adjustment, i.e., adjusting the current fabric feeding position to create a deviation from the previous fabric feeding position. Then, the hydraulic cylinder 401 pulls the rack 402 to reset and readjust the lower feeding position of the fabric. This cycle repeats to prevent two adjacent fabrics fed into the boiling pot from sticking together. On the other hand, when the hydraulic cylinder 401 pushes the rack 402 to adjust the fabric feeding position to the boiling pot, i.e., the feeding angle, it will squeeze the moving plate 4091 on one side through the bracket 404. The moving plate 4091 squeezes the first air bag 4093, causing the gas inside to be discharged through the conveying pipe into the air storage box 4095 and through its bottom. The nozzle 4096 back-blown the conveyor belt on the conveyor structure 2, thereby blowing off the cotton lint and fibers that have fallen or been electrostatically attracted onto the conveyor belt. Simultaneously, the conveyor 202, in cooperation with the belt drive structure 205 and the first gear drive mechanism 206, synchronously drives the first roller 203 and the second roller 204 to rotate, extending the fabric on the conveyor 202 to opposite sides, thus ensuring the subsequent sizing effect of the fabric. At the same time, as the conveyor 202 rotates, it drives a set of adsorption cylinders 207 to rotate under the transmission of the belt drive structure 205. When the adsorption cylinders 207 rotate, they synchronously drive a set of adsorption cylinders 207 on their adjacent side to rotate in the opposite direction through the cooperation of the second gear drive mechanism 208. That is, multiple sets of forward and reverse rotations are utilized. The reverse rotating adsorption cylinder 207 adsorbs and wraps the pollutants blown down from the conveying structure 2 by the nozzle 4096. Then, when the hydraulic cylinder 401 pulls the rack 402 to reset, the moving plate 4091 on the other side moves and squeezes the second airbag 4094. Similarly, the gas inside it is discharged into the air storage box 4095 through the conveying pipe, and back-blowing the conveyor belt on the conveying structure 2 through the nozzle 4096 at its bottom. At this time, the moving plate 4091 connected to the first airbag 4093 is stretched by the bracket 404, and the external airflow will enter the interior of the first airbag 4093 through the one-way air inlet valve to supplement the airflow. The same applies to the second airbag 4094, so as to ensure the normal and continuous operation of the back-blowing dust removal work.

[0052] S3. Finished Product Sorting: Sort and sew the dyed towels; inspect the sewn towels; then package the qualified products and classify and store the unqualified products with the reasons noted, so that they can be reworked or downgraded.

[0053] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A fabric feeding device for towel production and processing, comprising a frame (1) and a conveying structure (2), characterized in that: The frame (1) is set on the top of the base (3), and a multi-angle discharge mechanism (4) is provided on the frame (1). The multi-angle discharge mechanism (4) includes a hydraulic cylinder (401), a rack (402), a universal roller (403), a bracket (404), a rotating shaft (405), a gear plate (406), a feeding seat (407), a roller (408), and a driven translational dust blowing assembly. One end of the hydraulic cylinder (401) is connected to one end of the rack (402), and one side of the rack (402) is engaged. A toothed disc (406) is connected to the rotating shaft (405), and the rotating shaft (405) is connected to a feed seat (407) at its top. The rotating shaft (405) and the hydraulic cylinder (401) are mounted on the base (3). Rollers (408) are evenly distributed on the feed seat (407), and the height of the rollers (408) increases from left to right. The driven translational dust blowing assembly includes a moving plate (4091), a fixed block (4092), a first airbag (4093), and a second airbag (4094). Two airbags (4094) are connected to one end of the first airbag (4093) and the second airbag (4094) on both sides of the fixing block (4092). At the same time, the other ends of the first airbag (4093) and the second airbag (4094) are connected to a moving plate (4091). The moving plate (4091) is connected to the bracket (404), and the bracket (404) is slidably connected inside the guide groove (6). The guide groove (6) is opened on one side wall of the frame (1). The driven translational dust blowing assembly It also includes an air storage box (4095), a nozzle (4096) and a ball (4097), with the ball (4097) provided on the top of the air storage box (4095) and the nozzle (4096) provided on the bottom of the air storage box (4095). The air storage box (4095) is connected to the first airbag (4093) and the second airbag (4094) through a delivery pipe, and a one-way exhaust valve is provided on the delivery pipe. At the same time, a one-way air intake valve is provided on the first airbag (4093) and the second airbag (4094).

2. The fabric feeding device for towel production and processing according to claim 1, characterized in that: The conveying structure (2) is located on one side of the multi-angle discharge mechanism (4), and the conveying structure (2) includes a motor (201), a conveyor (202), a first roller (203), a second roller (204), a belt drive structure (205), a first gear drive mechanism (206), an adsorption cylinder (207), a second gear drive mechanism (208), and a bracket (209). The output end of the motor (201) is connected to the conveyor (202), and the conveyor (202) is located inside the frame (1). Above the conveyor (202) is a... There is a first roller (203) and a second roller (204), and the drive shafts at both ends of the conveyor (202) are connected to the first roller (203) and the adsorption cylinder (207) respectively through the belt drive structure (205). At the same time, the first roller (203) is connected to the second roller (204) through the first gear drive mechanism (206). The adsorption cylinder (207) is set below the conveyor (202), and the adsorption cylinders (207) are evenly distributed on the bracket (209). The adsorption cylinders (207) are connected to each other through the second gear drive mechanism (208).

3. The fabric feeding device for towel production and processing according to claim 2, characterized in that: The conveyor belt of the conveyor (202) is provided with through holes, and the top inner wall of the conveyor belt is in contact with the driven translational dust blowing assembly.

4. The fabric feeding device for towel production and processing according to claim 3, characterized in that: The bottom of the feeding seat (407) is symmetrically provided with universal rollers (403), and the universal rollers (403) are mounted on the bearing plate (5).

5. The fabric feeding device for towel production and processing according to claim 4, characterized in that: The nozzle (4096) and the ball (4097) are evenly distributed on the gas storage box (4095), and the ball (4097) and the nozzle (4096) are in contact with the top and bottom inner walls of the conveyor belt on the conveyor (202), respectively.

6. A towel manufacturing process, employing the fabric feeding device for towel production and processing as described in claim 5, characterized in that, Includes the following steps: S1. Raw material pretreatment stage: The process of cleaning cotton, carding cotton, combing, drawing, roving, spinning, winding, twisting, warping, sizing, threading, and weaving is carried out in sequence to make the towel prototype. S2, Fabric processing stage: The fabric to be boiled is conveyed and placed into the boiling pot for processing through the conveying structure (2) and the multi-angle discharge mechanism (4). The specific process includes the following: The motor (201) drives the conveyor (202) to rotate and convey the fabric. Under the cooperation of the belt drive structure (205) and the first gear drive mechanism (206), the conveyor (202) synchronously drives the first roller (203) and the second roller (204) to rotate in the opposite direction, so that the fabric on the conveyor (202) is stretched out to the opposite sides. The stretched fabric is moved to the unloading seat (407) under the conveyor (202). On the other hand, the hydraulic cylinder (401) pushes the rack (402) to move. During the movement of the rack (402), it pushes the toothed disc (406) and the rotating shaft (405) to rotate. The rotating shaft (405) drives the unloading seat (407) to swing back and forth to adjust the placement position of the fabric above it. S3. Finished Product Sorting: Sort and sew the dyed towels; inspect the sewn towels; then package the qualified products and classify and store the unqualified products with the reasons noted, so that they can be reworked or downgraded.

Citation Information

Patent Citations

  • Gray fabric feeding device for towel production and processing

    CN219173762U

  • Environment-friendly chemical fiber fabric efficient printing and dyeing equipment

    CN106988049A

  • Automatic feeding and discharging surface grinding machine and using method thereof

    CN118143777A