Bacteriostatic deodorization type non-woven fabric spraying mechanism
By introducing spraying, extrusion and filtering mechanisms into the non-woven fabric spraying device, the problems of residual and waste of antibacterial and odorant liquids are solved, and the efficient, environmentally friendly treatment and cost reduction of non-woven fabrics are achieved.
Patent Information
- Application Number
- CN202422389110.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-30
Smart Images

Figure CN223163607U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of non-woven fabric processing, in particular to an antibacterial and deodorant non-woven fabric spraying mechanism. Background Art
[0002] In the process of non-woven fabric production and processing, in order to improve the quality and functionality of products, various post-treatments are often required for non-woven fabrics to endow them with specific properties, such as antibacterial and deodorant properties.
[0003] The patent with the publication number CN219195358U and the name of a non-woven fabric spraying device discloses a non-woven fabric spraying device, including a spraying box. A conveying component for facilitating the conveyance of spraying solution during non-woven fabric spraying is arranged at the rear side of the spraying box. A spraying pipe one and a spraying pipe two are fixedly arranged inside the spraying box through the conveying component. A spraying hole one is penetrated and opened on the surface of the spraying pipe one, and a spraying hole two is penetrated and opened on the surface of the spraying pipe two. A guiding component is arranged inside the spraying box. The spraying solution is conveyed into the spraying pipe one and the spraying pipe two through the conveying component, and is sprayed out through the spraying hole one on the surface of the spraying pipe one and the spraying hole two on the surface of the spraying pipe two. The solution sprayed out through the spraying hole one sprays the bottom of the non-woven fabric, and the solution sprayed out through the spraying hole two sprays the top of the non-woven fabric, achieving the goal of facilitating the rapid spraying of non-woven fabrics. However, this patented technology has deficiencies in actual application. After spraying the antibacterial and deodorant liquid onto the surface of the non-woven fabric, the device cannot remove the excess liquid residue on the fabric surface, which may not only reduce key properties such as the air permeability and water absorption of the non-woven fabric, but also may cause fabric deformation or quality decline due to liquid accumulation. In addition, during the spraying process of this device, some antibacterial and deodorant liquid fails to effectively adhere to the non-woven fabric and is wasted, increasing the production cost. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and to propose an antibacterial and deodorant non-woven fabric spraying mechanism.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] An antibacterial and deodorant non-woven fabric spraying mechanism includes a workbench. Both ends of the workbench are fixedly connected with placing seats. Winding rollers are rotatably connected inside both of the placing seats. Installation plates are fixedly connected to both sides of the upper surface of the workbench. Spraying pipes are fixedly connected to both the upper and lower ends between the two installation plates. Several spraying heads are fixedly connected to the surface of the spraying pipes. Support plates are fixedly connected to both sides of the upper surface of the workbench. An extrusion mechanism is arranged between the two support plates. A filtering mechanism is fixedly connected to one end inside the workbench, and a liquid storage bucket is fixedly connected to the other end inside the workbench.
[0007] As a further improvement of the utility model, the extrusion mechanism includes a first extrusion roller rotatably connected to the upper ends between two support plates. A second extrusion roller is rotatably connected to the lower ends between the two support plates. A first transmission gear is rotatably connected to the upper end on one side of the support plate. One side of the first transmission gear is fixedly connected to the first extrusion roller. A second transmission gear is rotatably connected to the lower end on one side of the support plate. One side of the second transmission gear is fixedly connected to the second extrusion roller. The first transmission gear and the second transmission gear are meshed with each other. A first driving motor is fixedly connected to one side of the other support plate. The power end of the first driving motor is fixedly connected to the first extrusion roller.
[0008] As a further improvement of the utility model, the filtering mechanism includes a filter box fixedly connected to one end inside the workbench. Several filter elements are fixedly connected inside the filter box. A water inlet is formed on the upper surface of the filter box. A recovery groove is formed on the upper surface of the workbench. The lower end of the recovery groove is fixedly connected to the water inlet. A first water pump is fixedly connected to one side of the filter box. A water suction pipe is fixedly connected to the water inlet end of the first water pump. The other end of the water suction pipe is fixedly connected to the filter box. A circulation pipe is fixedly connected to the water outlet end of the first water pump. The other end of the circulation pipe is fixedly connected to the liquid storage barrel.
[0009] As a further improvement of the utility model, a second water pump is fixedly connected to the upper surface of the liquid storage barrel. The water inlet end of the second water pump is fixedly connected to the liquid storage barrel.
[0010] As a further improvement of the utility model, a water delivery pipe is fixedly connected to the water outlet end of the second water pump. The other end of the water delivery pipe is fixedly connected to the spray pipe.
[0011] As a further improvement of the utility model, a second driving motor is fixedly connected to one side of the placement seat. The power end of the second driving motor is fixedly connected to the winding roller.
[0012] The beneficial effects of the utility model:
[0013] By arranging the spray pipe, during use, the second driving motor is started to drive the winding roller to rotate, so as to stably convey the non-woven fabric through between the spray pipes. Under the action of pressure, the antibacterial and deodorant liquid in the spray pipe is sprayed out in the form of fine water mist through the dense spray heads, directly acting on the upper and lower surfaces of the non-woven fabric, which can realize the full spraying of the upper and lower ends of the non-woven fabric, ensure that the antibacterial and deodorant liquid evenly covers the surface of the non-woven fabric, and improve the treatment efficiency and quality.
[0014] By setting up an extrusion mechanism, during use, start the first drive motor to drive the synchronous reverse rotation of the first extrusion roller and the second extrusion roller through the first transmission gear and the second transmission gear, which can effectively squeeze out the excess antibacterial and deodorant liquid on the non-woven fabric, avoid excessive residual liquid affecting the subsequent use performance of the non-woven fabric, enable the device to effectively improve the cleanliness and deodorant effect of the non-woven fabric, and thus enhance the overall quality of the product.
[0015] By setting up a filtering mechanism, during use, the extruded antibacterial and deodorant liquid and the antibacterial and deodorant liquid that has not been sprayed onto the surface of the non-woven fabric are recycled and filtered through components such as the recovery tank and the filter box, and then re-transported back into the liquid storage barrel for recycling by the first water pump. The filter element in the filter box can effectively filter out the particulate impurities in the antibacterial and deodorant liquid, maintain the cleanliness of the liquid, extend the service life of the antibacterial and deodorant liquid, and at the same time reduce the maintenance cost caused by impurity blockage of the equipment, enabling the device to recycle the antibacterial and deodorant liquid during use, not only reducing the waste of water resources, but also reducing the consumption of the antibacterial and deodorant liquid, and increasing the practicality of the device.
[0016] In summary, the present utility model realizes the efficient and environmental protection treatment of non-woven fabrics through a spraying, extrusion, recovery and recycling system, not only improving the production efficiency and product quality, but also reducing the production cost and maintenance cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic structural diagram of a spraying mechanism for antibacterial and deodorant non-woven fabrics proposed by the present utility model.
[0018] Figure 2 It is a schematic structural diagram of a filtering mechanism of a spraying mechanism for antibacterial and deodorant non-woven fabrics proposed by the present utility model.
[0019] Figure 3 It is a schematic structural diagram of a spray pipe of a spraying mechanism for antibacterial and deodorant non-woven fabrics proposed by the present utility model.
[0020] Figure 4 It is a schematic rear view structural diagram of a spraying mechanism for antibacterial and deodorant non-woven fabrics proposed by the present utility model.
[0021] In the figure: 1 workbench, 2 placement seat, 3 winding roller, 4 mounting plate, 5 spray pipe, 6 spray head, 7 support plate, 8 liquid storage barrel, 9 first extrusion roller, 10 second extrusion roller, 11 first transmission gear, 12 second transmission gear, 13 first drive motor, 14 filter box, 15 filter element, 16 water inlet, 17 recovery tank, 18 first water pump, 19 suction pipe, 20 circulation pipe, 21 second water pump, 22 water delivery pipe, 23 second drive motor. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments.
[0023] Referring to Figures 1-4 , an antibacterial and deodorant non-woven fabric spraying mechanism includes a workbench 1. Both ends of the workbench 1 are fixedly connected with placing seats 2. Winding rollers 3 are rotatably connected inside both placing seats 2. Installation plates 4 are fixedly connected to both sides of the upper surface of the workbench 1. Spraying pipes 5 are fixedly connected to the upper and lower ends between the two installation plates 4. Several spray heads 6 are fixedly connected to the surface of the spraying pipe 5. Support plates 7 are fixedly connected to both sides of the upper surface of the workbench 1. An extrusion mechanism is arranged between the two support plates 7. A filtering mechanism is fixedly connected to one end inside the workbench 1. A liquid storage bucket 8 is fixedly connected to the other end inside the workbench 1.
[0024] In the present invention, the extrusion mechanism includes a first extrusion roller 9 rotatably connected to the upper end between the two support plates 7. A second extrusion roller 10 is rotatably connected to the lower end between the two support plates 7. A first transmission gear 11 is rotatably connected to the upper end of one side of the support plate 7. One side of the first transmission gear 11 is fixedly connected to the first extrusion roller 9. A second transmission gear 12 is rotatably connected to the lower end of one side of the support plate 7. One side of the second transmission gear 12 is fixedly connected to the second extrusion roller 10. The first transmission gear 11 and the second transmission gear 12 are meshed with each other. A first driving motor 13 is fixedly connected to one side of the other support plate 7. The power end of the first driving motor 13 is fixedly connected to the first extrusion roller 9. Excess liquid on the non-woven fabric is squeezed out by the reverse synchronous rotation of the first extrusion roller 9 and the second extrusion roller 10.
[0025] The filtering mechanism includes a filtering box 14 fixedly connected to one end inside the workbench 1. Several filter elements 15 are fixedly connected inside the filtering box 14. A water inlet 16 is opened on the upper surface of the filtering box 14. A recovery groove 17 is opened on the upper surface of the workbench 1. The lower end of the recovery groove 17 is fixedly connected to the water inlet 16. A first water pump 18 is fixedly connected to one side of the filtering box 14. A water suction pipe 19 is fixedly connected to the water inlet end of the first water pump 18. The other end of the water suction pipe 19 is fixedly connected to the filtering box 14. A circulation pipe 20 is fixedly connected to the water outlet end of the first water pump 18. The other end of the circulation pipe 20 is fixedly connected to the liquid storage bucket 8. The used antibacterial and deodorant liquid is filtered through the spraying pipe 5 and the filter element 15. The filtered antibacterial and deodorant liquid inside the liquid storage bucket 8 is transported into the liquid storage bucket 8 through the setting of the first water pump 18.
[0026] The upper surface of the liquid storage bucket 8 is fixedly connected with a second water pump 21. The water inlet end of the second water pump 21 is fixedly connected to the liquid storage bucket 8, and the water outlet end of the second water pump 21 is fixedly connected with a water delivery pipe 22. The other end of the water delivery pipe 22 is fixedly connected to the spray pipe 5. One side of the placing seat 2 is fixedly connected with a second driving motor 23, and the power end of the second driving motor 23 is fixedly connected to the winding roller 3. Through the setting of the second water pump 21, the antibacterial and deodorant liquid is input into the spray pipe 5, and through the setting of the second driving motor 23, the winding roller 3 is driven to rotate to transport the non-woven fabric.
[0027] When the utility model is in use, first start the second driving motor 23 driven winding roller 3 on the placing seat 2 near one end of the spray pipe 5 to rotate. At the same time, start the first driving motor 13 to drive the first pressing roller 9 to rotate. The first pressing roller 9 drives the second pressing roller 10 to rotate synchronously and reversely through the first transmission gear 11 and the second transmission gear 12. One end of the non-woven fabric wound on the winding roller 3 first passes between the two spray pipes 5, then passes between the first pressing roller 9 and the second pressing roller 10, and finally is fixed to another winding roller 3. Then start the two second driving motors 23 at the same time to drive the two winding rollers 3 to rotate slowly to transport the non-woven fabric. Start the second water pump 21 to transport the antibacterial and deodorant liquid inside the liquid storage bucket 8 to the spray pipe 5 through the water delivery pipe 22 and finally spray it out from the spray head 6 to spray the upper and lower ends of the non-woven fabric. After the non-woven fabric is sprayed with the antibacterial and deodorant liquid, it will pass between the first pressing roller 9 and the second pressing roller 10 to squeeze out the excess antibacterial and deodorant liquid. Finally, the squeezed antibacterial and deodorant liquid and the antibacterial and deodorant liquid that has not been sprayed on the surface of the non-woven fabric enter the filter box 14 through the recovery tank 17 and the water inlet 16. The filter element 15 inside the filter box 14 can filter out the particulate impurities in the antibacterial and deodorant liquid. Start the first water pump 18 to input the antibacterial and deodorant liquid filtered in the filter box 14 into the liquid storage bucket 8 through the water suction pipe 19 and the circulation pipe 20 for recycling.
[0028] The above is only the preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present utility model.
Claims
1. An antibacterial and odor-proof non-woven fabric spraying mechanism, comprising a workbench (1), characterized in that, Both ends of the workbench (1) are fixedly connected with placing seats (2). A winding roller (3) is rotatably connected inside each of the two placing seats (2). On both sides of the upper surface of the workbench (1), mounting plates (4) are fixedly connected. At the upper and lower ends between the two mounting plates (4), spray pipes (5) are fixedly connected. A plurality of spray nozzles (6) are fixedly connected to the surface of the spray pipe (5). On both sides of the upper surface of the workbench (1), support plates (7) are fixedly connected. An extrusion mechanism is arranged between the two support plates (7). A filtering mechanism is fixedly connected to one end inside the workbench (1). A liquid storage bucket (8) is fixedly connected to the other end inside the workbench (1).
2. The antibacterial and odor-proof non-woven fabric spraying mechanism according to claim 1, characterized in that, The extrusion mechanism includes a first extrusion roller (9) rotatably connected to the upper end between the two support plates (7). A second extrusion roller (10) is rotatably connected to the lower end between the two support plates (7). A first transmission gear (11) is rotatably connected to the upper end of one side of the support plate (7). One side of the first transmission gear (11) is fixedly connected to the first extrusion roller (9). A second transmission gear (12) is rotatably connected to the lower end of one side of the support plate (7). One side of the second transmission gear (12) is fixedly connected to the second extrusion roller (10). The first transmission gear (11) and the second transmission gear (12) are meshed with each other. A first driving motor (13) is fixedly connected to one side of the other support plate (7). The power end of the first driving motor (13) is fixedly connected to the first extrusion roller (9).
3. The antibacterial and odor-proof non-woven fabric spraying mechanism according to claim 1, characterized in that, The filtering mechanism includes a filtering box (14) fixedly connected to one end inside the workbench (1). A plurality of filter elements (15) are fixedly connected inside the filtering box (14). A water inlet (16) is opened on the upper surface of the filtering box (14). A recovery groove (17) is opened on the upper surface of the workbench (1). The lower end of the recovery groove (17) is fixedly connected to the water inlet (16). A first water pump (18) is fixedly connected to one side of the filtering box (14). A water suction pipe (19) is fixedly connected to the water inlet end of the first water pump (18). The other end of the water suction pipe (19) is fixedly connected to the filtering box (14). A circulation pipe (20) is fixedly connected to the water outlet end of the first water pump (18). The other end of the circulation pipe (20) is fixedly connected to the liquid storage bucket (8).
4. A bacteriostatic and odor-proof non-woven fabric spraying mechanism according to claim 1, characterized in that, A second water pump (21) is fixedly connected to the upper surface of the liquid storage bucket (8). The water inlet end of the second water pump (21) is fixedly connected to the liquid storage bucket (8).
5. The antibacterial and odor-proof non-woven fabric spraying mechanism according to claim 4, characterized in that, The water outlet end of the second water pump (21) is fixedly connected to a water delivery pipe (22). The other end of the water delivery pipe (22) is fixedly connected to the spray pipe (5).
6. The antibacterial and odor-proof non-woven fabric spraying mechanism according to claim 1, characterized in that, A second driving motor (23) is fixedly connected to one side of the placing seat (2). The power end of the second driving motor (23) is fixedly connected to the winding roller (3).
Citation Information
Patent Citations
Non-woven fabric spraying device
CN219195358U