A post-treatment device for anti-mildew fabric production
By introducing identification mechanism and linkage cleaning mechanism into the textile fabric cleaning device, efficient cleaning of local stains of the fabric is achieved, solving the problems of waste of water resources and low cleaning efficiency in the prior art, and improving the production efficiency and the effect of cleaning on both sides.
Patent Information
- Application Number
- CN202310230360.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-10
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2043-03-10
AI Technical Summary
The existing textile fabric cleaning device will waste more water resources during the cleaning process, reduce cleaning efficiency and production efficiency, and cannot effectively clean both sides of the whole fabric.
A post-treatment equipment for mildew-resistant fabric production is designed, and the identification mechanism is used to cooperate with several groups of first cleaning mechanisms to identify local stains on the fabric and control the first cleaning mechanism to complete the cleaning of the local area. At the same time, the second cleaning mechanism is driven to lower the second cleaning mechanism to ensure that the gap between the two first cleaning mechanisms can also be cleaned.
It realizes efficient cleaning of local stains in the fabric, reduces the use of water resources, improves cleaning efficiency and production efficiency, and ensures the effect of cleaning on both sides.
Smart Images

Figure CN116200894B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of anti-mildew fabric processing, and particularly to a post-treatment device for producing anti-mildew fabrics. Background Art
[0002] With the continuous improvement of people's living standards and the continuous enhancement of environmental protection awareness, people have higher requirements for the wearing performance of clothing. Especially for close-fitting clothes, they require not only comfort and softness, but also good air permeability, moisture absorption, and antibacterial and odor-proof functions. When textiles are worn, the side in contact with the skin will adsorb metabolites such as sweat, sebum, and dirt. On the other hand, they will come into contact with dust, becoming an excellent breeding ground for microorganisms. Microorganisms catalyze the decomposition of metabolites to produce various low-level fatty acids and ammonia and other odorous volatile compounds. Coupled with the secretions of bacteria themselves and the smell of decaying dead bodies, an offensive odor is released, affecting personal life and environmental hygiene.
[0003] The patent document with the patent number CN109371592B discloses a textile fabric cleaning device, including a box body. A water pipe is installed on the side wall of the box body. A first roller is rotatably connected to the top of the box body, and a feed inlet is opened at the top of the box body. Two motors are fixedly installed in the box body. The motors are connected to rockers, the rockers are hinged to connecting rods, the connecting rods are hinged to vertical rods, the end of the vertical rod far from the connecting rod is fixedly connected to a cross bar, the end of the cross bar far from the vertical rod is fixedly connected to a water spray brush, and a pair of tension springs are connected to the cross bar. A second roller is rotatably connected in the box body, and a cleaning box is fixedly arranged at the bottom of the box body. The water pipe passes through the cleaning box, and the end of the water pipe placed in the cleaning box is connected to a water pump. An outlet is opened on the side wall of the box body, the second roller is flush with the outlet, and a collection cylinder is rotatably connected to the position of the outer wall of the box body close to the outlet. The above technical solution solves the problems of unclean cleaning, low efficiency, and inability to clean both sides of the textile fabric simultaneously in the prior art.
[0004] However, in the actual use process, the inventor found that most of the existing textile fabric cleaning devices clean the dust on the surface of the fabric first, and then soak the whole piece of fabric in water for cleaning. Since only some areas of the fabric will have stains after production, soaking the whole piece of fabric in water for cleaning will waste a lot of water resources, reduce the cleaning efficiency of the fabric, and also seriously reduce the production efficiency of the fabric. Summary of the Invention
[0005] The purpose of the present invention is to address the deficiencies of the prior art. By setting an identification mechanism and several groups of first cleaning mechanisms, after the identification mechanism identifies local stains on the fabric during the fabric conveying process, it controls several groups of first cleaning mechanisms to work, thereby completing the cleaning work of the stains in this local area, and thus solving the technical problems that soaking the whole piece of fabric in water for cleaning will waste a lot of water resources, reduce the cleaning efficiency of the fabric, and also seriously reduce the production efficiency of the fabric.
[0006] For the above technical problems, the following technical solutions are adopted: A post-treatment device for producing mildew-proof fabrics, including a winding device for winding fabrics and a conveying rack for fabrics, further including:
[0007] An identification mechanism, on one side of the identification mechanism, there are several groups of first cleaning mechanisms arranged perpendicular to the transmission direction of the conveying rack. After adjacent two first cleaning mechanisms descend simultaneously, they drive a second cleaning mechanism arranged behind the first cleaning mechanism to descend synchronously under the drive of a linkage mechanism. After the first cleaning mechanism and the second cleaning mechanism descend to the upper end of the fabric, they work synchronously under the drive of a pushing mechanism and complete the cleaning work of the fabric;
[0008] The first cleaning mechanism includes a lifting component arranged at the lower end of a first support frame, a cleaning component arranged at the lower end of the lifting component, a material receiving component arranged outside the cleaning component and controlled by a driving component, and a liquid supply component arranged at the upper end of the first support frame and cooperating with the cleaning component.
[0009] Preferably, the lifting component includes a telescopic unit arranged at the lower end of the first support frame, a piston rod arranged at the lower end of the telescopic unit, a rack rod fixedly arranged at the lower end of the piston rod, and a fixed frame fixedly arranged at the lower end of the telescopic unit through a plurality of connecting rods;
[0010] The cleaning component includes a first fixing plate fixedly arranged at the lower end of the rack rod, a first sliding block connected to the first fixing plate through a first buffer spring and slidably arranged at the lower end of the first fixing plate, a first cleaning part arranged at the lower end of the first sliding block, and a push rod arranged on the side of the first sliding block away from the first buffer spring.
[0011] Preferably, the driving component includes first gears arranged on both sides of the rack rod and respectively drivingly arranged with the rack rod, and a rotating rod coaxially arranged with the first gears;
[0012] The material receiving component includes two oppositely arranged material receiving boxes respectively arranged on both sides of the first cleaning part, and several connecting rods arranged on the material receiving boxes and respectively connected to the rotating rod and the fixed frame;
[0013] The liquid supply component includes several liquid storage tanks arranged at the upper end of the first support frame and corresponding to the cleaning components one by one, a liquid supply pipe with one end arranged inside the liquid storage tank and the other end connected to the first cleaning part, a control valve arranged inside the liquid supply pipe for controlling the flow of the liquid in the liquid supply pipe, a control gear connected to the control valve, and a control rack arranged on one side of the piston rod and drivingly arranged with the control gear.
[0014] Preferably, a lower end of the material receiving box is connected with an extrusion block through a plurality of reset springs. An adjusting rod for controlling lifting of the extrusion block is arranged at a position of a lower end of the fixing frame corresponding to the extrusion block, and a notch is formed in the extrusion block at a position corresponding to the adjusting rod.
[0015] Preferably, the linkage mechanism includes a linkage assembly arranged on one side of the piston rod and a control assembly for driving the second cleaning mechanism to work under the drive of the linkage assembly;
[0016] The linkage assembly includes a linkage rod arranged on one side of the piston rod;
[0017] The control assembly includes a support plate arranged at a lower end of the second support frame, a fixed block fixedly arranged on one side of the support plate, a telescopic elastic unit arranged at an upper end of the fixed block, and a rotating rod arranged at an upper end of the telescopic elastic unit and rotatably arranged at one end of the lifting rod.
[0018] Preferably, the second cleaning mechanism includes a second fixing plate fixedly arranged at a lower end of the lifting rod, a second sliding block connected with the second fixing plate through a second buffer spring and slidably arranged at a lower end of the second fixing plate, and a second cleaning member arranged at a lower end of the second sliding block.
[0019] Preferably, the pushing mechanism includes a first pushing component for driving the first cleaning mechanism to work, a second pushing component for driving the second cleaning mechanism to work, and a power component for controlling the first pushing component and the second pushing component to work synchronously;
[0020] The first pushing component includes a rotating disc arranged on one side of the conveying frame, a driving rod with one end arranged on the rotating disc and the other end connected with a moving rod, a limiting block arranged on one side of the conveying frame and slidably arranged with the driving rod, and a pushing rod connected with the other end of the driving rod and used for driving a push rod to move.
[0021] Preferably, a collecting mechanism for collecting sewage inside the material receiving box is further arranged at a lower end of the material receiving box. The collecting mechanism includes a collecting box arranged at a lower end of the conveying frame, a pumping unit arranged inside the collecting box, and a water pipe connected with the pumping unit and connecting a plurality of material receiving boxes.
[0022] Advantages of the present invention:
[0023] (1) In the present invention, by providing an identification mechanism and several groups of first cleaning mechanisms, after the identification mechanism identifies local stains on the fabric during the fabric conveying process, it controls several groups of first cleaning mechanisms to work, thereby completing the cleaning work of the stains in this local area. The advantages of this setting are as follows. On the one hand, the device can select several of the first cleaning mechanisms to work according to the size of the stain area, without cleaning all fabrics, thus efficiently completing the cleaning work of the stains on the fabric. On the other hand, it can reduce the amount of water resources used, achieving the effect of saving water, and improving the production efficiency of the fabric without cleaning all fabrics.
[0024] (2) In the present invention, a second cleaning mechanism is provided at the rear end of the first cleaning mechanism. After two adjacent first cleaning mechanisms descend simultaneously, they synchronously drive the second cleaning mechanism to descend under the drive of the linkage mechanism. Therefore, after the second cleaning mechanism works, it can clean the gap between the two first cleaning mechanisms, thereby ensuring that the stains can be effectively removed.
[0025] (3) In the present invention, a material receiving component is provided at the lower end of the cleaning component. The material receiving component includes a material receiving box for receiving the sewage generated in the cleaning component and a pressing block for squeezing the first cleaning part to drain the sewage inside it. In this way, after each first cleaning part completes its work and resets, the pressing block can squeeze the first cleaning part and keep the cleaning part dry and clean, so as to ensure that the first cleaning part can also achieve a good cleaning effect when working next time, and at the same time, it can also prevent the sewage on the first cleaning part from dripping continuously on the upper end of the fabric, thereby causing secondary pollution to the fabric.
[0026] (4) In the present invention, the pushing mechanism is provided to include a first pushing component for driving the first cleaning mechanism to work and a second pushing component for driving the second cleaning mechanism to work. The first pushing component and the second pushing component can work synchronously under the drive of the power component to drive the first cleaning part and the second cleaning part to work, thereby ensuring that the first cleaning part and the second cleaning part can work synchronously without interference, and ensuring the stability of the work of the first cleaning mechanism and the second cleaning mechanism.
[0027] In summary, the device has the advantages of saving water resources and high cleaning efficiency, and is particularly suitable for the field of fabric processing technology. Brief Description of the Drawings
[0028] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0029] Figure 1 This is the overall structural schematic diagram of the present invention.
[0030] Figure 2 This is the partial structural schematic diagram of the present invention.
[0031] Figure 3 This is the structural schematic diagram of the first cleaning mechanism.
[0032] Figure 4 This is the structural schematic diagram of the lifting component and the cleaning component.
[0033] Figure 5 This is the structural schematic diagram of the driving component and the material receiving component.
[0034] Figure 6 is Figure 3 the enlarged schematic diagram of the A position in
[0035] Figure 7 This is the internal structural schematic diagram of the material receiving box.
[0036] Figure 8 This is the structural schematic diagram of the linkage mechanism.
[0037] Figure 9 This is the structural schematic diagram of the second cleaning mechanism.
[0038] Figure 10 is Figure 2 the enlarged schematic diagram of the B position in
[0039] Figure 11 This is the sectional structural schematic diagram of the collection mechanism. Specific Embodiments
[0040] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0041] Embodiment 1
[0042] As Figures 1 - 3 shown, a post-treatment device for anti-mildew fabric production includes a winding device for winding the fabric and a conveying rack 1 for the fabric, and further includes:
[0043] An identification mechanism 2, on one side of the identification mechanism 2, there are several groups of first cleaning mechanisms 3 arranged perpendicular to the transmission direction of the conveying rack 1. After adjacent two first cleaning mechanisms 3 descend simultaneously, they are synchronously driven by the linkage mechanism 4 to drive the second cleaning mechanism 5 arranged behind the first cleaning mechanism 3 to descend. After the first cleaning mechanism 3 and the second cleaning mechanism 5 descend to the upper end of the fabric, they work synchronously under the drive of the pushing mechanism 6 and complete the cleaning work of the fabric;
[0044] The first cleaning mechanism 3 includes a lifting component 32 arranged at the lower end of the first support frame 31, a cleaning component 33 arranged at the lower end of the lifting component 32, a material receiving component 35 arranged outside the cleaning component 33 and controlled by a driving component 34, and a liquid supply component 36 arranged at the upper end of the first support frame 31 and arranged in cooperation with the cleaning component 33.
[0045] In this embodiment, by arranging the recognition mechanism 2 to cooperate with the first cleaning mechanism 3 and the second cleaning mechanism 5, efficient and rapid cleaning work on local areas of the fabric can be achieved, without the need to clean all the fabrics, thereby efficiently completing the cleaning work on the stains on the fabric, improving the production efficiency of the fabric, and moreover, the amount of water resources used can be reduced, achieving the effect of saving water.
[0046] Specifically, after the recognition mechanism 2 detects the stained area on the fabric, the recognition mechanism 2 transmits the recognition image to the control device, and the control device drives the corresponding one or several first cleaning mechanisms 3 to work. When the first cleaning mechanism 3 works, the lifting component 32 first works to drive the cleaning component 33 to descend to the upper end of the fabric. During the descending process, the driving component 34 drives the material receiving component 35 to open and move away from the cleaning component 33. At the same time, the liquid supply component 36 provides cleaning liquid for cleaning the fabric to the cleaning component 33. Subsequently, driven by the pushing mechanism 6, the cleaning component 33 reciprocates to complete the cleaning work on the stained area.
[0047] It should be noted that the recognition mechanism 2 includes a camera device installed on the conveying frame 1 and in the previous process of the first cleaning mechanism 3 and the second cleaning mechanism 5. The camera device can take real-time pictures of the fabric and transmit the captured image information to the computer control device, and the computer control device makes an identification and judgment to control the first cleaning mechanism 3 to work.
[0048] Moreover, the camera device can adopt a remotely controlled HDMI high-definition industrial camera. This recognition mechanism is a device purchased from the market, and a commonly used photographing and detecting instrument on industrial automation equipment can be selected, such as a CCD detector, etc. Its specific structure and information control principle will not be described further.
[0049] Furthermore, as Figure 4 shown, the lifting component 32 includes a telescopic unit 321 arranged at the lower end of the first support frame 31, a piston rod 322 arranged at the lower end of the telescopic unit 321, a rack rod 323 fixedly arranged at the lower end of the piston rod 322, and a fixing frame 324 fixedly arranged at the lower end of the telescopic unit 321 through a plurality of connecting rods;
[0050] The cleaning component 33 includes a first fixed plate 331 fixedly arranged at the lower end of the rack bar 323, a first sliding block 333 connected to the first fixed plate 331 through a first buffer spring 332 and slidably arranged at the lower end of the first fixed plate 331, a first cleaning member 334 arranged at the lower end of the first sliding block 333, and a push rod 335 arranged on one side of the first sliding block 333 away from the first buffer spring 332.
[0051] In this embodiment, by setting the lifting component 32 to cooperate with the cleaning component 33, the automatic lifting of the first cleaning member 334 is realized, so that it is convenient for the first cleaning member 334 to approach or move away from the cloth to be cleaned, so as to complete the cleaning of the cloth.
[0052] Specifically, after the telescopic unit 321 works, it will drive the piston rod 322 at its lower end to descend, thereby driving the rack bar 323 and the cleaning component 33 arranged at the lower end of the rack bar 323 to descend to a suitable position. Subsequently, driven by the pushing mechanism 6, the push rod 335 is pushed and drives the first sliding block 333 to slide at the lower end of the first fixed plate 331, thereby driving the first cleaning member 334 to slide. When the push rod 335 is not pushed, the compressed first buffer spring 332 resets and drives the first sliding block 333 to slide reversely at the lower end of the first fixed plate 331, thereby driving the first cleaning member 334 to slide reversely. Repeating the above work several times can drive the first cleaning member 334 to reciprocate on the upper end of the cloth, thus completing the cleaning of the cloth.
[0053] Further, as Figures 4 - 6 shown, the driving component 34 includes a first gear 341 arranged on both sides of the rack bar 323 and respectively drivingly arranged with the rack bar 323, and a rotating rod 342 coaxially arranged with the first gear 341;
[0054] The material receiving component 35 includes two relatively arranged material receiving boxes 351 respectively arranged on both sides of the first cleaning member 334, and a plurality of connecting rods 352 arranged on the material receiving boxes 351 and respectively connected to the rotating rod 342 and the fixed frame 324;
[0055] The liquid supply component 36 includes a plurality of liquid storage tanks 361 arranged on the upper end of the first support frame 31 and corresponding to the cleaning component 33 one by one, a liquid supply pipe 362 with one end arranged inside the liquid storage tank 361 and the other end connected to the first cleaning member 334, a control valve arranged inside the liquid supply pipe 362 for controlling the flow of the liquid in the liquid supply pipe 362, a control gear 363 connected to the control valve, and a control rack 364 arranged on one side of the piston rod 322 and drivingly arranged with the control gear 363.
[0056] In this embodiment, by arranging the material receiving component 35 in cooperation with the driving component 34 and the lifting component 32, during the process of the lifting component 32 driving the cleaning component 33 to move, the material receiving component 35 will also be driven to work synchronously. After each completion and reset of the first cleaning member 334, the extrusion block inside the material receiving component 35 can extrude the first cleaning member 334 to keep the cleaning member dry and clean, so as to ensure that the first cleaning member 334 can also achieve a good cleaning effect during the next operation;
[0057] Moreover, by arranging the liquid supply component 36 in cooperation with the cleaning component 33, the work of automatically adding cleaning liquid into the cleaning component 33 is realized, so that a good cleaning effect can be ensured during the cleaning process of the cleaning component 33.
[0058] Specifically, during the process of the telescopic unit 321 working to drive the piston rod 322 to descend, the rack bar 323 will be in transmission with the first gears 341 arranged on both sides of the rack bar 323 and drive them to rotate. The first gears 341 will drive the rotating rod 342 to rotate, and drive the two material receiving boxes 351 to move away from each other through a plurality of connecting rods 352, so as to facilitate the descent of the cleaning component 33;
[0059] In addition, during the descent of the piston rod 322, the control rack 364 arranged on the outer side thereof will drive the control gear 363 to rotate. After the control gear 363 rotates, it will drive the control valve inside the liquid supply pipe 362 to open. Subsequently, the cleaning liquid inside the liquid storage tank 361 will flow along the liquid supply pipe 362 into the inside of the first cleaning member 334 to facilitate the operation of the first cleaning member 334.
[0060] It should be noted that the first cleaning member 334 includes a housing for containing cleaning liquid in the upper half and a cleaning brush arranged inside the housing and communicating with the cleaning liquid in the lower half for cleaning and brushing the fabric. In the present invention, the cleaning brush can be made of different materials according to different fabric materials, such as sponge, nylon wire, PBT wire, etc.;
[0061] The liquid supply pipe 362 includes a hard pipe connecting the liquid storage tank 361 and a flexible pipe connecting the first cleaning member 334. The control valve is arranged inside the hard pipe. In order to prevent the cleaning liquid inside the liquid storage tank 361 from flowing into the inside of the first cleaning member 334 too much, two control racks 364 are arranged. The two control racks 364 are arranged in a staggered manner and can drive the control gear 363 to rotate in the reverse direction, so that the control valve can be quickly closed after being driven to open.
[0062] Furthermore, as Figure 7As shown, the lower end of the material receiving box 351 is connected with an extrusion block 354 through a plurality of reset springs 353. At a position corresponding to the extrusion block 354 at the lower end of the fixed frame 324, an adjusting rod 325 for controlling the lifting of the extrusion block 354 is provided. The extrusion block 354 is provided with a notch 3541 at a position corresponding to the adjusting rod 325.
[0063] In this embodiment, through the cooperation of the extrusion block 354 arranged inside the material receiving box 351 and the adjusting rod 325, during the movement of the material receiving box 351, the automatic lifting of the extrusion block 354 is realized, thereby realizing the extrusion work on the first cleaning part 334.
[0064] Specifically, before the rack bar 323 descends and is in transmission with the two first gears 341, the rack bar 323 will drive the cleaning assembly 33 to move downward and drive the extrusion block 354 to descend. When the rack bar 323 is in transmission with the two first gears 341 and drives the two material receiving boxes 351 to open, the adjusting rod 325 will slide at the notch 3541 and drive the extrusion block 354 to continue descending. At this time, the material receiving box 351 expands outward to ensure the smooth descent of the first cleaning part 334. Subsequently, when the rack bar 323 ascends, the two material receiving boxes 351 approach each other and are driven by the adjusting rod 325, so that the extrusion block 354 gradually approaches and squeezes the first cleaning part 334 upward, thereby squeezing out the sewage in the first cleaning part 334.
[0065] It should be noted that at the splicing position of the two material receiving boxes 351, a sealing strip with concave and convex settings is provided to ensure the sealing performance after the two material receiving boxes 351 approach; a plurality of through holes 3542 are provided on the extrusion block 354, and the sewage can flow into the interior of the material receiving box 351 along the through holes 3542. A plurality of inclined grooves 3511 are provided at the bottom of the material receiving box 351 at a position corresponding to the extrusion block 354. After the sewage flows to the bottom of the material receiving box 351, it can flow to the water storage area 3512 of the material receiving box 351 along the grooves 3511, and the depth of this area is greater than the depth of the part where the grooves 3511 are provided.
[0066] Further, as Figures 8 - 9 shown, the linkage mechanism 4 includes a linkage component 41 arranged on one side of the piston rod 322 and a control component 42 that drives the second cleaning mechanism 5 to work under the drive of the linkage component 41;
[0067] The linkage component 41 includes a linkage rod 411 arranged on one side of the piston rod 322;
[0068] The control assembly 42 includes a support plate 422 disposed at the lower end of the second support frame 421, a fixed block 423 fixedly disposed at one side of the support plate 422, a telescopic elastic unit 424 disposed at the upper end of the fixed block 423, and a rotating rod 426 disposed at the upper end of the telescopic elastic unit 424 and rotatably disposed at one end of a lifting rod 425;
[0069] The second cleaning mechanism 5 includes a second fixed plate 51 fixedly arranged at the lower end of the lifting rod 425, a second sliding block 53 connected to the second fixed plate 51 through a second buffer spring 52 and slidably arranged at the lower end of the second fixed plate 51, and a second cleaning member 54 arranged at the lower end of the second sliding block 53.
[0070] In this embodiment, by providing the linkage mechanism 4 to cooperate with the second cleaning mechanism 5, the gap between the two first cleaning mechanisms 3 is cleaned, thereby ensuring that the stains can be effectively removed.
[0071] In detail, it is found in actual use that it is difficult to ensure that the gap between the first cleaning members 334 at the lower ends of the two first cleaning mechanisms 3 is cleaned. Therefore, a second cleaning mechanism 5 is provided at the rear end of the first cleaning mechanism 3. The second cleaning mechanism 5 will start to work only when and when the two adjacent first cleaning mechanisms 3 work at the same time. When the two first cleaning mechanisms 3 work at the same time, the linkage rods 411 on the two different first cleaning mechanisms 3 are simultaneously driven by the piston rod 322 and simultaneously press against the rotating rod 426 on the second cleaning mechanism 5 between the two. When the two linkage rods 411 are pressed down at the same time, the rotating rod 426 cannot rotate on the lifting rod 425. Therefore, the rotating rod 426 will drive the lifting rod 425 to descend and drive the second cleaning mechanism 5 to descend. When the second cleaning member 54 on the second cleaning mechanism 5 is on the upper end surface of the cloth, the pushing mechanism 6 drives the second sliding block 53 to slide on the second fixing plate 51 and drives the second cleaning member 54 to reciprocate, thereby cleaning the gap between the two first cleaning mechanisms 3.
[0072] It should be noted that the rotating rod 426 can only rotate on a horizontal plane parallel to the cloth. Therefore, when only one first cleaning mechanism 3 is working, one linkage rod 411 will only drive one end of one of the rotating rods 426 to work. The rotating rod 426 rotates on the horizontal plane and avoids the linkage rod 411, and will not continue to fall with the linkage rod 411. The lifting rod 425 is slidably connected to the support plate 422 through a sliding rod.
[0073] Since there is a certain distance between the second cleaning member 54 and the first cleaning member 334 in the horizontal direction, it is necessary to set the travel path of the second cleaning member 54 to be greater than that of the first cleaning member 334 to ensure that when the first cleaning member 334 completes the previous cleaning process, the second cleaning member 54 can also clean the entire stain area.
[0074] Furthermore, as Figure 10 shown, the pushing mechanism 6 includes a first pushing component 61 for driving the first cleaning mechanism 3 to work, a second pushing component 62 for driving the second cleaning mechanism 5 to work, and a power component 63 for controlling the synchronous work of the first pushing component 61 and the second pushing component 62;
[0075] The first pushing component 61 includes a rotating disk 611 arranged on one side of the conveying rack 1, a driving rod 613 with one end arranged on the rotating disk 611 and the other end connected to a moving rod 612, a limiting block 614 arranged on one side of the conveying rack 1 and slidably arranged with the driving rod 613, and a pushing rod 615 connected to the other end of the driving rod 613 and used for driving the push rod 335 to move.
[0076] In this embodiment, by setting the first pushing component 61 and the second pushing component 62 to cooperate with the power component 63, it is realized that the first pushing component 61 and the second pushing component 62 can work synchronously under the drive of the power component 63, thereby driving the first cleaning member 334 and the second cleaning member 54 to work, ensuring that the first cleaning member 334 and the second cleaning member 54 can work synchronously without interference.
[0077] Specifically, when the first cleaning member 334 descends to a suitable position, the power component 63 works and drives the rotating disk 611 to rotate. After the rotating disk 611 rotates, it drives the moving rod 612 to move and drives the driving rod 613 to slide inside the limiting block 614. Finally, the driving rod 613 drives the first pushing rod 615 to move reciprocally.
[0078] It should be noted that the structures of the first pushing component 61 and the second pushing component 62 are the same. The difference is that the travel distance of the pushing rod 615 in the second pushing component 62 is greater than that of the pushing rod 615 in the first pushing component 61 to ensure the normal work of the first cleaning member 334 and the second cleaning member 54; among them, the power component 63 is a driving unit for controlling the rotation of the rotating disk 611. Preferably, the rotating disks 611 on the first pushing component 61 and the second pushing component 62 are respectively controlled by a driving unit, and it is necessary to ensure that when the two work simultaneously, the traveling directions of the two pushing rods 615 are the same; in order to ensure the normal movement of the pushing rod 615, a groove 3511 for the movement of the pushing rod 615 is opened on the conveying rack 1.
[0079] Further, as Figure 11 shown, a collecting mechanism 7 for collecting the sewage inside the material receiving box 351 is further provided at the lower end of the material receiving box 351, which includes a collecting box 71 arranged at the lower end of the conveying rack 1, a pumping unit 72 arranged inside the collecting box 71, and a water pipe 73 connected to the pumping unit 72 and connecting a plurality of material receiving boxes 351.
[0080] Embodiment 2
[0081] Among them, the same or corresponding components as those in Embodiment 1 adopt the corresponding reference numerals of Embodiment 1. For the sake of simplicity, only the differences from Embodiment 1 will be described below. The differences between this Embodiment 2 and Embodiment 1 are as follows:
[0082] Further, as Figure 1 shown, a drying mechanism 8 for drying and cleaning the cloth after cleaning is further provided on the conveying rack 1. Since the cloth after partial cleaning does not need to be dehydrated additionally, the cloth can be directly conveyed into the drying mechanism 8 for rapid drying after the cleaning work is completed.
[0083] Working process:
[0084] Recognition: After the recognition mechanism 2 detects the stained area on the cloth, the recognition mechanism 2 transmits the recognition image to the control device, and the control device drives the corresponding one or several first cleaning mechanisms 3 to work;
[0085] The first cleaning member 334 works. The lifting assembly 32 first works to drive the cleaning assembly 33 to descend to the upper end of the cloth. During the descending process, the driving assembly 34 drives the material receiving assembly 35 to open and move away from the cleaning assembly 33. At the same time, the liquid supply assembly 36 supplies the cleaning liquid for cleaning the cloth to the cleaning assembly 33. Subsequently, driven by the pushing mechanism 6, the cleaning assembly 33 is driven to reciprocate and complete the cleaning work on the stained area;
[0086] The second cleaning member 54 works. After two adjacent first cleaning mechanisms 3 descend simultaneously, they are synchronously driven by the linkage mechanism 4 to drive the second cleaning mechanism 5 to descend. Therefore, after the second cleaning mechanism 5 works, it can clean the gap between the two first cleaning mechanisms 3;
[0087] Waste water collection: When the two material receiving boxes 351 approach each other, the extrusion block 354 gradually approaches and squeezes the first cleaning member 334 upward, so as to squeeze out the sewage in the first cleaning member 334 and collect it into the collecting box 71;
[0088] The cloth after completing the above work enters the drying mechanism 8 for rapid drying.
[0089] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by terms such as "front and back", "left and right", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or component referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the invention.
[0090] Of course, in this technical solution, those skilled in the art should understand that the term "one" should be understood as "at least one" or "one or more". That is, in one embodiment, the number of an element can be one, while in other embodiments, the number of this element can be multiple. The term "one" should not be construed as a limitation on the quantity.
[0091] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be easily thought of by those skilled in the art under the technical inspiration of the present invention should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A post-treatment device for producing mildew-proof fabrics, comprising a winding device for winding fabrics and a conveying rack for fabrics. Characterized in that, It further comprises: An identification mechanism, on one side of which there are several groups of first cleaning mechanisms arranged perpendicular to the driving direction of the conveying rack. After adjacent two of the first cleaning mechanisms descend simultaneously, they synchronously drive the second cleaning mechanism arranged behind the first cleaning mechanism to descend under the drive of a linkage mechanism. After the first cleaning mechanism and the second cleaning mechanism descend to the upper end of the fabric, they work synchronously under the drive of a pushing mechanism and complete the cleaning work of the fabric; The first cleaning mechanism comprises a lifting component arranged at the lower end of a first support frame, a cleaning component arranged at the lower end of the lifting component, a material receiving component arranged outside the cleaning component and controlled by a driving component, and a liquid supply component arranged at the upper end of the first support frame and arranged in cooperation with the cleaning component; The lifting component comprises a telescopic unit arranged at the lower end of the first support frame, a piston rod arranged at the lower end of the telescopic unit, a rack bar fixedly arranged at the lower end of the piston rod, and a fixed frame fixedly arranged at the lower end of the telescopic unit through a plurality of connecting rods; The cleaning component comprises a first fixing plate fixedly arranged at the lower end of the rack bar, a first sliding block connected to the first fixing plate through a first buffer spring and slidably arranged at the lower end of the first fixing plate, a first cleaning piece arranged at the lower end of the first sliding block, and a push rod arranged on the side of the first sliding block away from the first buffer spring; The driving component comprises first gears arranged on both sides of the rack bar and respectively in transmission with the rack bar, and a rotating rod coaxially arranged with the first gears; The material receiving component comprises two oppositely arranged material receiving boxes respectively arranged on both sides of the first cleaning piece, and a plurality of connecting rods arranged on the material receiving boxes and respectively connected to the rotating rod and the fixed frame; The lower end of the material receiving box is connected with a pressing block through a plurality of return springs. An adjusting rod for controlling the lifting of the pressing block is arranged at the lower end of the fixed frame at a position corresponding to the pressing block. The pressing block is provided with a notch at a position corresponding to the adjusting rod.
2. The post-treatment device for producing mildew-proof fabrics according to claim 1, Characterized in that, The liquid supply component comprises a plurality of liquid storage tanks arranged at the upper end of the first support frame and corresponding to the cleaning components one by one, a liquid supply pipe with one end arranged inside the liquid storage tank and the other end connected to the first cleaning piece, a control valve arranged inside the liquid supply pipe for controlling the flow of the liquid in the liquid supply pipe, a control gear connected to the control valve, and a control rack arranged on one side of the piston rod and in transmission with the control gear.
3. The post-treatment device for producing mildew-proof fabrics according to claim 1, Characterized in that, The linkage mechanism comprises a linkage component arranged on one side of the piston rod, and a control component for driving the second cleaning mechanism to work under the drive of the linkage component; The linkage component comprises a linkage rod arranged on one side of the piston rod; The control component includes a support plate arranged at the lower end of the second support frame, a fixed block fixedly arranged on one side of the support plate, a telescopic elastic unit arranged at the upper end of the fixed block, and a rotating rod arranged at the upper end of the telescopic elastic unit and rotatably arranged at one end of the lifting rod.
4. The post-treatment equipment for producing anti-mildew fabric according to claim 3, wherein, the second cleaning mechanism includes a second fixing plate fixedly arranged at the lower end of the lifting rod, a second sliding block connected to the second fixing plate through a second buffer spring and slidably arranged at the lower end of the second fixing plate, and a second cleaning member arranged at the lower end of the second sliding block.
5. The post-treatment equipment for producing anti-mildew fabric according to claim 1, wherein, the pushing mechanism includes a first pushing component for driving the first cleaning mechanism to work, a second pushing component for driving the second cleaning mechanism to work, and a power component for controlling the first pushing component and the second pushing component to work synchronously; the first pushing component includes a rotating disk arranged on one side of the conveying frame, a driving rod with one end arranged on the rotating disk and the other end connected to the moving rod, a limiting block arranged on one side of the conveying frame and slidably arranged with the driving rod, and a pushing rod connected to the other end of the driving rod and used for driving the push rod to move.
6. The post-treatment equipment for producing anti-mildew fabric according to claim 2, wherein, a collecting mechanism for collecting the sewage inside the receiving box is further arranged at the lower end of the receiving box, and it includes a collecting box arranged at the lower end of the conveying frame, a water pumping unit arranged inside the collecting box, and a water pipe connected to the water pumping unit and connecting multiple receiving boxes.
Citation Information
Patent Citations
A textile cleaning device
CN109371592B
Fabric cleaning device with correcting and conveying functions for textile fabric production
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Textile cloth wetting device for spinning
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