Gray fabric feeding device for towel production and processing and production process thereof
By designing cleaning, vacuuming, ironing, and feeding devices, the problem of lint in the fabric feeding device during towel production was solved, achieving efficient lint removal and fabric flattening, thus improving product quality and production efficiency.
Patent Information
- Application Number
- CN202511984735.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-26
- Publication Date
- 2026-02-13
AI Technical Summary
Traditional fabric feeding devices often fail to properly handle lint during towel production, affecting the quality of subsequent processing.
A fabric feeding device for towel production and processing was designed, which includes a cleaning device, a dust collection device, an ironing device, and a feeding device. The device removes lint by using a servo motor-driven cam and guide roller, irons the fabric by using a hot plate and pressure roller, and removes lint and debris by combining the dust collection device.
It effectively removes lint from the surface of the fabric, improves product quality and production efficiency, avoids equipment damage, and ensures that the fabric is flat and wrinkle-free.
Smart Images

Figure CN121516614A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of gray cloth processing, and particularly relates to a gray cloth feeding device for towel production and processing and a production process thereof. BACKGROUND
[0002] The gray cloth feeding device in towel production and processing is one of the most important links in the whole production process. Its main function is to smoothly feed the gray cloth from the state of raw materials into the production line for subsequent processing. In the production of towels, the gray cloth is usually fabric that has not been dyed and finished, and it needs to be effectively transported and spread by an advanced feeding device to ensure the quality of subsequent processing and production efficiency.
[0003] The traditional gray cloth feeding device mostly uses manual or simple mechanical methods to feed the cloth, but there are problems of unprocessed lint on the gray cloth, which affects subsequent processing and reduces product quality. Therefore, the technical personnel in the field provide a gray cloth feeding device for towel production and processing and a production process thereof to solve the problems in the background art. SUMMARY
[0004] The purpose of the present application is to provide a gray cloth feeding device for towel production and processing and a production process thereof with simple structure and reasonable design to solve the above problems.
[0005] The application achieves the above-mentioned purposes through the following technical solutions:
[0006] A gray cloth feeding device for towel production and processing, comprising a shell, wherein the front end of the shell is provided with a feeding device, the inner wall of the shell is provided with a chute on both sides, the inner wall of the shell is provided with a cleaning device matched with the chute, the side wall of the shell is provided with a dust collection device matched with the cleaning device, the top end of the shell is provided with a flattening device, and the rear side of the shell is provided with a smoothing mechanism.
[0007] The cleaning device comprises a second servo motor fixedly connected with the side wall of the shell, a rotating shaft fixedly connected with the inner wall of the shell and connected with the output end of the second servo motor, a plurality of cams fixedly connected with the side wall of the rotating shaft, and two guide mechanisms matched with the chute and arranged on the inner wall of the shell.
[0008] As a further optimization scheme of the present application, the guide mechanism comprises a first servo motor fixedly connected with one side of the top end of the shell, a first lead screw fixedly connected with the inner wall of one of the chutes and connected with the output end of the first servo motor, a first sliding rod fixedly connected with the inner wall of the other chute, a first sliding block slidingly arranged on the inner wall of each of the chutes, a first sliding block threadedly sleeved with the side wall of the first lead screw, a first sliding block slidingly sleeved with the side wall of the first sliding rod, and a guide roller rotatably connected between the two first sliding blocks.
[0009] As a further optimization scheme of the application, the smoothing mechanism comprises two second mounting frames fixedly connected to the two sides of the rear end of the shell, the inner walls of the two second mounting frames are respectively fixedly connected with second limiting rods, the side walls of the two second limiting rods are respectively slidably sleeved with second limiting blocks, the bottom ends of the two second limiting blocks are fixedly connected with second springs sleeved with the side walls of the second limiting rods, a second auxiliary roller is rotatably connected between the two second mounting frames, and a first auxiliary roller is rotatably connected between the two second limiting blocks.
[0010] As a further optimization scheme of the application, the smoothing device comprises two fixed frames fixedly connected to the two sides of the top end of the shell, the rear end of one of the fixed frames is fixedly connected with a third servo motor, the output end of the third servo motor is fixedly connected with a second screw rod rotatably connected with the inner wall of the fixed frame, the inner wall of the other fixed frame is rotatably connected with a second sliding rod, and the two sides of the top end of the shell are slidably provided with second sliding blocks, one of the second sliding blocks is threadedly sleeved with the side wall of the second screw rod, the other second sliding block is slidably sleeved with the side wall of the second sliding rod, and the top ends of the two second sliding blocks are provided with ironing mechanisms.
[0011] As a further optimization scheme of the application, the ironing mechanism comprises two first mounting frames fixedly connected to the top ends of the two second sliding blocks, the inner walls of the two first mounting frames are respectively fixedly connected with first limiting rods, the side walls of the two first limiting rods are respectively slidably sleeved with first limiting blocks, the bottom ends of the two first limiting blocks are respectively fixedly connected with first springs sleeved with the side walls of the first limiting rods, the top ends of the two first mounting frames are fixedly connected with electric heating plates, heat exchange rollers matched with the electric heating plates are rotatably arranged between the two first mounting frames, and pressure rollers are rotatably connected between the two first limiting blocks.
[0012] As a further optimization scheme of the application, the dust collection device comprises a fixed plate fixedly connected to the side wall of the shell, the top end of the fixed plate is fixedly connected with a positioning frame, the side wall of the positioning frame is provided with a blower, the input end of the blower is fixedly connected in communication with a dust collection pipe, the other end of the dust collection pipe is fixedly connected in communication with the shell, the output end of the blower is fixedly connected in communication with a cloth bag, the side wall of the cloth bag is fixedly connected with a flange plate, and the side wall of the flange plate is provided with a plurality of fixed bolts.
[0013] As a further optimization scheme of the application, the feeding device comprises a mounting plate fixedly connected to the front end of the shell, the top end of the mounting plate is fixedly connected with a fixed plate, a bidirectional screw rod is rotatably connected to the inner wall of the adjusting shell, the two sides of the bidirectional screw rod are respectively threadedly sleeved with third sliding blocks, and the top ends of the two third sliding blocks are respectively provided with mounting mechanisms.
[0014] As a further optimization scheme of the present application, the mounting mechanism comprises a weighing sensor fixedly connected with the top end of the third sliding block, one side of the shell is provided with a control module electrically connected with the weighing sensor, and the top end of the weighing sensor is provided with a connecting seat.
[0015] As a further optimization scheme of the present application, a gray cloth feeding device for towel production and processing has the following production process:
[0016] S1. First, the roll of gray cloth is weighed, and the weighing sensor is zeroed. The two third sliding blocks are driven to slide on the bidirectional screw by rotating the bidirectional screw, so that the two connecting seats can install the gray cloth roll, and the weighing sensor can weigh the gray cloth roll in real time. After zeroing, the gray cloth roll is replaced in time;
[0017] S2. First, the gray cloth roll passes through the lower side of the guide roller and the upper side of the cam, then passes through the space between the heat exchange roller and the pressure roller, and finally passes through the space between the first auxiliary roller and the second auxiliary roller. During operation, the two first servo motors are used to drive the two first screws to rotate, so that the first sliding block moves along the first screw, thereby adjusting the position of the guide roller to ensure that the guide roller exerts pressure on the gray cloth and ensures that the gray cloth is attached to the upper side of the cam. The second servo motor drives the rotating shaft to rotate, so that the cam rotates synchronously. At this time, with the rotation of the cam, the surface of the gray cloth can be hit, so that the residual lint on the gray cloth falls off;
[0018] S3. During the operation of the cleaning device, the air blower is turned on, and the motor in the air blower drives the fan blades to rotate, so that the suction pipe generates suction to the shell, thereby adsorbing the lint falling from the gray cloth and discharging it to the cloth bag for storage;
[0019] S4. When the gray cloth passes through the space between the heat exchange roller and the pressure roller, the electric heating plate is turned on, and the heat of the electric heating plate is transferred to the surface of the heat exchange roller, so that the heat exchange roller gradually warms up and transfers heat to the surface of the gray cloth. At the same time, the first spring exerts pressure on the first limiting block, so that the pressure roller can exert pressure on the gray cloth. Under the dual action of pressure and heating, the gray cloth can be ironed flat, providing convenience for subsequent production;
[0020] S5. After the ironing device is turned off, the gray cloth passes through the first auxiliary roller and the second auxiliary roller, and the second spring exerts pressure on the second limiting block, so that the first auxiliary roller and the second auxiliary roller exert pressure on the surface of the gray cloth, which can further smooth the gray cloth and output it.
[0021] The present application has the following advantages:
[0022] 1. In the application, by setting the feeding device, first, the winding roller containing the raw cloth is weighed, and the weighing sensor is set to zero. By rotating the bidirectional screw rod, the two third sliding blocks are driven to slide on the bidirectional screw rod, so that the two connecting seats can install the raw cloth roll, and the weighing sensor can weigh the weight of the raw cloth roll in real time. After zeroing, the raw cloth roll is replaced in time to avoid the equipment from being damaged due to the lack of timely replenishment after the raw cloth is completely fed.
[0023] 2. In the application, by setting the cleaning device and the dust collection device, first, the raw cloth roll passes through the lower side of the guide roller and the upper side of the cam, then passes through the heat exchange roller and the pressure roller, and finally passes through the first auxiliary roller and the second auxiliary roller. During operation, the two first servo motors are used to drive the two first screw rods to rotate, so that the first sliding block moves along the first screw rod, thereby adjusting the position of the guide roller to ensure that the guide roller exerts pressure on the raw cloth and ensures that the raw cloth is attached to the upper side of the cam. The second servo motor drives the rotating shaft to rotate, so that the cam rotates synchronously. At this time, with the rotation of the cam, the surface of the raw cloth can be hit, so that the residual lint on the raw cloth falls off. During the operation of the cleaning device, the air blower is turned on, and the motor in the air blower drives the fan blade to rotate, so that the suction pipe produces suction in the housing, and the lint falling from the raw cloth can be adsorbed and discharged into the cloth bag for storage. The high-frequency hitting of the cam on the surface of the raw cloth can make the lint and other impurities on the raw cloth fall off, thereby effectively improving the quality of the subsequent products and improving the production efficiency.
[0024] 3. In the application, by setting the ironing device, when the raw cloth passes through the heat exchange roller and the pressure roller, the electric heating plate is turned on, and the heat of the electric heating plate is transferred to the surface of the heat exchange roller, so that the heat exchange roller gradually warms up and transfers heat to the surface of the raw cloth. At the same time, the first spring exerts pressure on the first limiting block, so that the pressure roller can exert pressure on the raw cloth. Under the double action of pressure and heating, the raw cloth can be ironed flat, which provides convenience for subsequent production. Ironing the raw cloth flat can effectively avoid wrinkles, thereby effectively improving the product quality. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 is the overall structure schematic diagram of the application;
[0026] Figure 2 is the overall structure schematic diagram of the application from another perspective;
[0027] Figure 3 is the overall structure schematic diagram of the ironing device of the application;
[0028] Figure 4 is the overall structure schematic diagram of the ironing device of the application;
[0029] Figure 5 This is a schematic diagram of the overall structure of the cleaning device of the present invention;
[0030] Figure 6 This is a schematic diagram of the overall structure of the dust collection device of the present invention;
[0031] Figure 7 This is a schematic diagram of the overall structure of the housing of the present invention from another perspective.
[0032] In the diagram: 1. Cleaning device; 101. Cam; 102. First servo motor; 103. Guide roller; 104. Second servo motor; 105. First lead screw; 106. First slider; 107. Rotating shaft; 108. First slide bar; 2. Ironing device; 201. Heating plate; 202. Heat exchange roller; 203. Pressure roller; 204. Second slider; 205. First limiting rod; 206. First limiting block; 207. First spring; 208. Second lead screw; 209. Fixing frame; 210. Second slide bar; 211. First mounting frame; 212. 3. Third servo motor; 3. Dust collection device; 301. Fixing plate; 302. Dust collection pipe; 303. Positioning frame; 304. Blower; 305. Flange; 306. Cloth bag; 307. Fixing bolt; 4. Feeding device; 401. Adjusting shell; 402. Mounting plate; 403. Third slider; 404. Bidirectional lead screw; 405. Weighing sensor; 406. Connecting seat; 5. Slide groove; 6. Housing; 7. Second mounting frame; 8. First auxiliary roller; 9. Second auxiliary roller; 10. Second limit rod; 11. Second limit block; 12. Second spring. Detailed Implementation
[0033] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content.
[0034] Example: Figure 1 , Figure 2 and Figure 7 As shown, a fabric feeding device for towel production and processing includes a housing 6, a feeding device 4 at the front end of the housing 6, grooves 5 on both sides of the inner wall of the housing 6, a cleaning device 1 that cooperates with the grooves 5 on the inner wall of the housing 6, a dust suction device 3 that cooperates with the cleaning device 1 on the side wall of the housing 6, and an ironing device 2 at the rear of the top of the housing 6.
[0035] like Figure 1 , Figure 2 and Figure 5As shown, the cleaning device 1 comprises a second servo motor 104 fixedly connected with the side wall of the shell 6, the output end of the second servo motor 104 is fixedly connected with a rotating shaft 107 rotatably connected with the inner wall of the shell 6, the side wall of the rotating shaft 107 is fixedly connected with a plurality of cams 101, the cloth roll is sequentially threaded through the lower side of the guide roller 103 and the upper side of the cam 101, and then threaded through between the heat exchange roller 202 and the pressure roller 203, and finally threaded through between the first auxiliary roller 8 and the second auxiliary roller 9. During operation, the two first servo motors 102 are used to drive the two first lead screws 105 to rotate, so that the first sliding block 106 moves along the first lead screw 105, thereby adjusting the position of the guide roller 103, ensuring that the guide roller 103 exerts pressure on the cloth, and ensuring that the cloth is attached to the upper side of the cam 101.
[0036] As shown in Figure 1 , Figure 2 and Figure 5 , the first servo motor 102 is fixedly connected to one side of the top end of the shell 6, the output end of the first servo motor 102 is fixedly connected with a first lead screw 105 rotatably connected with the inner wall of one of the chutes 5, the inner wall of the other chute 5 is fixedly connected with a first sliding rod 108, and the inner walls of the two chutes 5 are respectively slidably provided with first sliding blocks 106. One of the first sliding blocks 106 is threadedly sleeved with the side wall of the first lead screw 105, and the other first sliding block 106 is slidably sleeved with the side wall of the first sliding rod 108. The two first sliding blocks 106 are rotatably connected with the guide roller 103. The second servo motor 104 drives the rotating shaft 107 to rotate, so that the cam 101 rotates synchronously. At this time, with the rotation of the cam 101, the surface of the cloth can be hit, so that the residual lint on the cloth falls off.
[0037] As shown in Figure 1 , Figure 2 and Figure 4 , the two second mounting frames 7 are fixedly connected to the rear end of the shell 6, the inner walls of the two second mounting frames 7 are respectively fixedly connected with second limiting rods 10, the side walls of the two second limiting rods 10 are respectively slidably sleeved with second limiting blocks 11, the bottom ends of the two second limiting blocks 11 are fixedly connected with second springs 12 sleeved with the side walls of the second limiting rods 10, the second auxiliary roller 9 is rotatably connected between the two second mounting frames 7, and the first auxiliary roller 8 is rotatably connected between the two second limiting blocks 11. After the ironing device 2 finishes work, the cloth passes through the first auxiliary roller 8 and the second auxiliary roller 9, the second spring 12 exerts pressure on the second limiting block 11, so that the first auxiliary roller 8 and the second auxiliary roller 9 exert pressure on the surface of the cloth, which can further smooth the cloth and output it.
[0038] As shown in Figure 1 , Figure 2 and Figure 3As shown, the ironing device 2 comprises a fixed frame 209 fixedly connected with the two sides of the top end of the shell 6, one of the fixed frames 209 is fixedly connected with a third servo motor 212 at the rear end, the output end of the third servo motor 212 is fixedly connected with a second lead screw 208 rotatably connected with the inner wall of the fixed frame 209, the inner wall of the other fixed frame 209 is rotatably connected with a second sliding rod 210, the top end of the shell 6 is slidably provided with a second sliding block 204 on the two sides, one of the second sliding blocks 204 is threadedly sleeved with the side wall of the second lead screw 208, and the other second sliding block 204 is slidably sleeved with the side wall of the second sliding rod 210, and the rotation of the second lead screw 208 can effectively adjust the position of the first mounting frame 211, facilitating the adjustment of the device.
[0039] As shown in Figure 1 , Figure 2 and Figure 3 , the two second sliding blocks 204 are fixedly connected with a first mounting frame 211 at the top end, the inner walls of the two first mounting frames 211 are fixedly connected with a first limiting rod 205, the side walls of the two first limiting rods 205 are slidably sleeved with a first limiting block 206, the bottom ends of the two first limiting blocks 206 are fixedly connected with a first spring 207 sleeved with the side wall of the first limiting rod 205, the top ends of the two first mounting frames 211 are fixedly connected with an electric heating plate 201, and a temperature sensor is arranged in the electric heating plate 201, which can cooperate with the control module to accurately control the temperature of the electric heating plate 201, thereby effectively preventing the damage of the cloth, and the side wall of the heat exchange roller 202 is made of copper, which is more conducive to heat conduction. The two first mounting frames 211 are rotatably provided with a heat exchange roller 202 matched with the electric heating plate 201, and the two first limiting blocks 206 are rotatably connected with a press roller 203. When the cloth passes between the heat exchange roller 202 and the press roller 203, the electric heating plate 201 is turned on, the heat of the electric heating plate 201 is transferred to the surface of the heat exchange roller 202, the heat exchange roller 202 is gradually heated, and the heat is transferred to the surface of the cloth. At the same time, the first spring 207 exerts pressure on the first limiting block 206, so that the press roller 203 can exert pressure on the cloth. Under the double action of pressure and heating, the cloth can be ironed flat, which provides convenience for subsequent production. Ironing the cloth flat can effectively prevent wrinkles, thereby effectively improving product quality.
[0040] As shown in Figure 1 , Figure 2 and Figure 6As shown, the dust suction device 3 includes a fixed plate 301 fixedly connected with the side wall of the shell 6, a positioning frame 303 fixedly connected at the top end of the fixed plate 301, a blower 304 provided on the side wall of the positioning frame 303, a fan provided in the blower 304, an electric motor provided on the positioning frame 303 and matched with the fan, the fan and the electric motor being separately provided to prevent damage to the electric motor during dust suction, a dust suction pipe 302 fixedly communicated with the input end of the blower 304, the other end of the dust suction pipe 302 being fixedly communicated with the shell 6, a cloth bag 306 fixedly communicated with the output end of the blower 304, a flange plate 305 fixedly connected with the side wall of the cloth bag 306, and a plurality of fixing bolts 307 provided on the side wall of the flange plate 305. During the operation of the cleaning device 1, the blower 304 is turned on, the electric motor in the blower 304 drives the fan to rotate, so that the dust suction pipe 302 generates suction to the shell 6, the lint and other sundries falling from the gray cloth can be adsorbed and discharged into the cloth bag 306 for storage, and the cam 101 can be used to hit the surface of the gray cloth at a high frequency, so that the lint and other sundries on the gray cloth can fall off, thereby effectively improving the quality of subsequent products and improving the production efficiency.
[0041] As shown in Figure 1 , Figure 2 , the feeding device 4 includes a mounting plate 402 fixedly connected with the front end of the shell 6, a fixed plate 301 fixedly connected at the top end of the mounting plate 402, a double-threaded screw rod 404 rotatably connected with the inner wall of the adjusting shell 401, and a third sliding block 403 threadedly sleeved on both sides of the double-threaded screw rod 404. First, the coiling roller containing the gray cloth is weighed, and the weighing sensor 405 is set to zero. The double-threaded screw rod 404 is rotated to drive the two third sliding blocks 403 to slide on the double-threaded screw rod 404, so that the two connecting seats 406 can install the gray cloth roll.
[0042] As shown in Figure 1 , Figure 2 , the top end of the third sliding block 403 is fixedly connected with the weighing sensor 405, one side of the shell 6 is provided with a control module electrically connected with the weighing sensor 405, the control module is provided on the side wall of the shell 6, and a buzzer is provided in the control module. After the gray cloth on the shell 6 is conveyed, an alarm can be sounded. The top end of the weighing sensor 405 is provided with a connecting seat 406. The weighing sensor 405 is used to weigh the weight of the gray cloth roll in real time. After the weight is set to zero, the gray cloth roll is replaced in time to avoid that the equipment is damaged due to the lack of timely replenishment after the gray cloth is completely fed.
[0043] A production process of a gray cloth feeding device for towel production and processing includes the following steps:
[0044] S1. First, the roll of cloth is weighed, and the weighing sensor 405 is set to zero. The two third sliders 403 are driven to slide on the two-way screw rod 404 by rotating the two-way screw rod 404, so that the two connecting seats 406 can install the cloth roll, and the weight of the cloth roll is weighed in real time by the weighing sensor 405. After the zero setting, the cloth roll is replaced in time;
[0045] S2. First, the cloth roll passes under the guide roller 103 and above the cam 101, then passes between the heat exchange roller 202 and the pressure roller 203, and finally passes between the first auxiliary roller 8 and the second auxiliary roller 9. During operation, the two first servo motors 102 drive the two first screw rods 105 to rotate, so that the first sliding block 106 moves along the first screw rod 105, thereby adjusting the position of the guide roller 103 to ensure that the guide roller 103 exerts pressure on the cloth and ensures that the cloth is attached to the top of the cam 101. The second servo motor 104 drives the shaft 107 to rotate, so that the cam 101 rotates synchronously. At this time, with the rotation of the cam 101, the surface of the cloth can be hit, so that the residual lint on the cloth falls off;
[0046] S3. During the operation of the cleaning device 1, the air blower 304 is turned on, and the motor in the air blower 304 drives the fan blades to rotate, so that the suction pipe 302 produces suction into the housing 6, which can adsorb the lint falling from the cloth and discharge it into the cloth bag 306 for storage;
[0047] S4. When the cloth passes between the heat exchange roller 202 and the pressure roller 203, the electric heating plate 201 is turned on, and the heat of the electric heating plate 201 is transferred to the surface of the heat exchange roller 202, so that the heat exchange roller 202 gradually warms up and transfers heat to the surface of the cloth. At the same time, the first spring 207 exerts pressure on the first limiting block 206, so that the pressure roller 203 can exert pressure on the cloth. Under the dual action of pressure and heating, the cloth can be ironed flat, providing convenience for subsequent production;
[0048] S5. After the ironing device 2 is turned off, the cloth passes through the first auxiliary roller 8 and the second auxiliary roller 9. The second spring 12 exerts pressure on the second limiting block 11, so that the first auxiliary roller 8 and the second auxiliary roller 9 exert pressure on the surface of the cloth, which can further smooth the cloth and output.
[0049] It should be explained that the gray cloth feeding device for towel production and processing and the production process thereof, when in use, firstly, the weighing sensor 405 is set to zero after the weighing of the roll-up roller for storing the gray cloth, the two third sliding blocks 403 are driven to slide on the bidirectional screw rod 404 by rotating the bidirectional screw rod 404, so that the two connecting seats 406 can install the gray cloth roll, and the weight of the gray cloth roll is weighed in real time by the weighing sensor 405, the gray cloth roll is replaced in time after the weighing is reset to zero, and the working process is as follows: firstly, the gray cloth roll passes through the lower side of the guide roller 103 and the upper side of the cam 101 in sequence, secondly, the gray cloth roll passes through the space between the heat exchange roller 202 and the pressure roller 203, and finally, the gray cloth roll passes through the space between the first auxiliary roller 8 and the second auxiliary roller 9, in the working process, the first servo motor 102 is used to drive the first screw rod 105 to rotate, so that the first sliding block 106 moves along the first screw rod 105, thereby adjusting the position of the guide roller 103, ensuring that the guide roller 103 exerts pressure on the gray cloth, and ensuring that the gray cloth is attached to the upper side of the cam 101, the second servo motor 104 is used to drive the rotating shaft 107 to rotate, so that the cam 101 rotates synchronously, at this time, the surface of the gray cloth can be hit by the rotation of the cam 101, so that the residual lint on the gray cloth falls off, in the working process of the cleaning device 1, the air blower 304 is opened, the motor in the air blower 304 drives the fan blade to rotate, so that the suction pipe 302 generates suction in the housing 6, the lint falling off the gray cloth can be adsorbed and discharged into the cloth bag 306 for storage, when the gray cloth passes through the space between the heat exchange roller 202 and the pressure roller 203, the electric heating plate 201 is opened, the heat of the electric heating plate 201 is transferred to the surface of the heat exchange roller 202, so that the heat exchange roller 202 gradually warms up and transfers heat to the surface of the gray cloth, at the same time, the first spring 207 exerts pressure on the first limiting block 206, so that the pressure roller 203 can exert pressure on the gray cloth, under the double action of pressure and heating, the gray cloth can be ironed flat, providing convenience for subsequent production, after the working of the ironing device 2 is completed, the gray cloth passes through the first auxiliary roller 8 and the second auxiliary roller 9, the second spring 12 exerts pressure on the second limiting block 11, so that the first auxiliary roller 8 and the second auxiliary roller 9 exert pressure on the surface of the gray cloth, the gray cloth can be further smoothed and output.
[0050] The above-described embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as limiting the scope of the patent of the present application. It should be pointed out that, for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application.
Claims
1. A grey cloth feeding device for towel production and processing, comprising a housing (6), characterized in that: The shell (6) is provided with a feeding device (4) at the front end, and the inner wall of the shell (6) is provided with a sliding groove (5) on both sides, and the inner wall of the shell (6) is provided with a cleaning device (1) matched with the sliding groove (5), and the side wall of the shell (6) is provided with a dust collection device (3) matched with the cleaning device (1), and the top end of the shell (6) is provided with an ironing device (2), and the rear side of the shell (6) is provided with a smoothing mechanism. The cleaning device (1) comprises a second servo motor (104) fixedly connected with the side wall of the shell (6), and the output end of the second servo motor (104) is fixedly connected with a rotating shaft (107) rotatably connected with the inner wall of the shell (6), and the side wall of the rotating shaft (107) is fixedly connected with a plurality of cams (101), and the inner wall of the shell (6) is provided with two guide mechanisms matched with the sliding groove (5).
2. A grey cloth feeding device for towel production and processing according to claim 1 characterized in that: The guide mechanism comprises a first servo motor (102) fixedly connected with one side of the top end of the shell (6), and the output end of the first servo motor (102) is fixedly connected with a first screw rod (105) rotatably connected with the inner wall of one of the sliding grooves (5), and the inner wall of the other sliding groove (5) is fixedly connected with a first sliding rod (108), and the inner wall of the two sliding grooves (5) is slidably provided with a first sliding block (106), wherein one of the first sliding blocks (106) is threadedly sleeved with the side wall of the first screw rod (105), and the other first sliding block (106) is slidably sleeved with the side wall of the first sliding rod (108), and the two first sliding blocks (106) are rotatably connected with a guide roller (103).
3. A grey cloth feeding device for towel production and processing as claimed in claim 1, characterized in that: The smoothing mechanism comprises a second mounting frame (7) fixedly connected with the rear end of the shell (6), and the inner wall of the two second mounting frames (7) is respectively fixedly connected with a second limiting rod (10), and the side wall of the two second limiting rods (10) is respectively slidably sleeved with a second limiting block (11), and the bottom end of the two second limiting blocks (11) is fixedly connected with a second spring (12) sleeved with the side wall of the second limiting rod (10), and the two second mounting frames (7) are rotatably connected with a second auxiliary roller (9), and the two second limiting blocks (11) are rotatably connected with a first auxiliary roller (8).
4. A grey cloth feeding device for towel production and processing according to claim 1 characterized in that: The ironing device (2) comprises a fixed frame (209) fixedly connected with the top end of the shell (6) on both sides, one of the fixed frames (209) is fixedly connected with a third servo motor (212) at the rear end, the output end of the third servo motor (212) is fixedly connected with a second screw rod (208) rotatably connected with the inner wall of the fixed frame (209), the inner wall of the other fixed frame (209) is rotatably connected with a second sliding rod (210), the top end of the shell (6) is slidably provided with a second sliding block (204) on both sides, one of the second sliding blocks (204) is threadedly sleeved with the side wall of the second screw rod (208), the other second sliding block (204) is slidably sleeved with the side wall of the second sliding rod (210), and the top end of the two second sliding blocks (204) is provided with an ironing mechanism.
5. A grey cloth feeding device for towel production and processing as claimed in claim 4, characterized in that: The ironing mechanism includes first mounting frames (211) fixedly connected with the top ends of two second sliders (204), first limiting rods (205) fixedly connected with the inner walls of the two first mounting frames (211), first limiting blocks (206) slidably sleeved with the side walls of the two first limiting rods (205), first springs (207) fixedly connected with the bottom ends of the two first limiting blocks (206) and sleeved with the side walls of the first limiting rods (205), an electric heating plate (201) fixedly connected with the top ends of the two first mounting frames (211), a heat exchange roller (202) rotatably arranged between the two first mounting frames (211) and matched with the electric heating plate (201), and a compression roller (203) rotatably connected between the two first limiting blocks (206).
6. A grey cloth feeding device for towel production and processing as claimed in claim 1, characterized in that: The dust suction device (3) includes a fixed plate (301) fixedly connected with the side wall of the shell (6), a positioning frame (303) fixedly connected with the top end of the fixed plate (301), a blower (304) arranged on the side wall of the positioning frame (303), a dust suction pipe (302) fixedly communicated with the input end of the blower (304), the other end of the dust suction pipe (302) fixedly communicated with the shell (6), a cloth bag (306) fixedly communicated with the output end of the blower (304), a flange plate (305) fixedly connected with the side wall of the cloth bag (306), and a plurality of fixed bolts (307) arranged on the side wall of the flange plate (305).
7. A grey cloth feeding device for towel production and processing as claimed in claim 1, characterized in that: The feeding device (4) includes a mounting plate (402) fixedly connected with the front end of the shell (6), a fixed plate (301) fixedly connected with the top end of the mounting plate (402), a two-way screw rod (404) rotatably connected with the inner wall of the adjusting shell (401), third sliders (403) threadedly sleeved with the two sides of the two-way screw rod (404), and mounting mechanisms arranged on the top ends of the two third sliders (403).
8. A grey cloth feeding device for towel production and processing according to claim 7 characterized in that: The mounting mechanism includes a weighing sensor (405) fixedly connected with the top end of the third slider (403), a control module electrically connected with the weighing sensor (405) arranged on one side of the shell (6), and a connecting seat (406) arranged on the top end of the weighing sensor (405).
9. A process for producing a grey cloth feeding device for towel production and processing, based on the grey cloth feeding device for towel production and processing according to any one of claims 1-8, characterized in that: The method comprises the following steps: S1. First, the weighing sensor (405) is set to zero, and the weight of the roll of cloth is weighed in real time by the weighing sensor (405), and the roll of cloth is replaced in time after the weight is set to zero. S2. First, the cloth roll is sequentially threaded through the lower guide roller (103) and the upper cam (101), then through the heat exchange roller (202) and the pressure roller (203), and finally through the first auxiliary roller (8) and the second auxiliary roller (9). During operation, the two first servo motors (102) drive the two first lead screws (105) to rotate, causing the first sliding block (106) to move along the first lead screw (105), thereby adjusting the position of the guide roller (103) to ensure that the guide roller (103) exerts pressure on the cloth and ensures that the cloth is attached to the top of the first servo motor (102). The second servo motor (104) drives the shaft (107) to rotate, causing the cam (101) to rotate synchronously. At this time, with the rotation of the cam (101), the surface of the cloth can be hit, causing the residual lint on the cloth to fall off; S3. During the operation of the cleaning device (1), turn on the air blower (304), the motor in the air blower (304) drives the fan blades to rotate, causing the suction pipe (302) to produce suction in the housing (6), which can adsorb the lint falling from the cloth and discharge it into the cloth bag (306) for storage; S4. When the cloth passes through the heat exchange roller (202) and the pressure roller (203), turn on the electric heating plate (201), transfer the heat of the electric heating plate (201) to the surface of the heat exchange roller (202), so that the heat exchange roller (202) gradually warms up and transfers heat to the surface of the cloth. At the same time, the first spring (207) exerts pressure on the first limiting block (206), so that the pressure roller (203) can exert pressure on the cloth. Under the dual action of pressure and heating, the cloth can be ironed flat, providing convenience for subsequent production; S5. After the ironing device (2) is turned off, the cloth passes through the first auxiliary roller (8) and the second auxiliary roller (9), and the second spring (12) exerts pressure on the second limiting block (11), so that the first auxiliary roller (8) and the second auxiliary roller (9) exert pressure on the surface of the cloth. It can further smooth the cloth and output.