Non-woven fabric humidifying device for wet tissue production
By using a layered plug-in structure and atomizing spray head driven by a dual-axis motor during the wet wipe production process, the problem of uneven humidification of non-woven fabrics is solved, uniform humidification of non-woven fabrics is achieved, and the quality of wet wipe production is improved.
Patent Information
- Application Number
- CN202422512883.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-17
AI Technical Summary
When the existing humidification device humidifies the nonwoven fabric, it is difficult to ensure uniform humidification of the multi-layer nonwoven fabric, especially the lower fabric is difficult to be fully humidified, which affects the quality of wet wipe production.
A non-woven humidification device for wet wipe production is designed, and a layered insertion plate structure driven by a dual-axis motor is adopted. Different levels of non-woven fabrics are uniformly humidified by spraying components and atomizing spray heads. The layered insertion plates are inserted into different layers of the non-woven fabrics during transportation by conveyor belts, and disinfectant is sprayed through the atomizing spray heads to achieve uniform humidification of multi-layer non-woven fabrics.
A uniform humidification of multi-layer non-woven fabrics is achieved, ensuring that the disinfectant is evenly immersed in each layer of non-woven fabric, and improving the humidification effect and quality of wet wipe production.
Smart Images

Figure CN223176403U_ABST
Abstract
Description
Technical field
[0001] The utility model relates to a non-woven fabric humidifying device for wet wipe production. Background technique
[0002] The main material of wet wipes is non-woven fabric. During the production and processing of wet wipes, it is necessary to humidify the non-woven fabric, that is, to moisten the non-woven fabric with a disinfectant solution.
[0003] When the existing humidifying device humidifies the non-woven fabric, the disinfectant solution is often sprayed on the non-woven fabric from the top. During the transportation process, the non-woven fabric is generally stacked in multiple layers. When humidifying the non-woven fabric from the top, it is often difficult to humidify the non-woven fabric at the lower layer, which is not convenient for uniformly humidifying multiple layers of non-woven fabric, and thus it is difficult to ensure the humidifying effect of the non-woven fabric, which has certain inconvenience.
[0004] Therefore, it is necessary to provide a non-woven fabric humidifying device for wet wipe production to solve the above problems. Content of the utility model
[0005] The technical problem to be solved by the utility model is to provide a non-woven fabric humidifying device for wet wipe production to solve the problems put forward in the above background technique.
[0006] To solve the above problems, the utility model adopts the following technical scheme:
[0007] A non-woven fabric humidifying device for wet wipe production, including a base frame. A conveyor belt is arranged inside the base frame. A first frame and a second frame are arranged on the top of the base frame. A spraying assembly is arranged inside the first frame. A double-shaft motor is arranged on the top inside the second frame. Both output shafts of the double-shaft motor are connected with lead screws. One end of each lead screw penetrates out of the second frame. A moving plate is arranged in front of and behind the second frame. A layered insertion plate is arranged at the opposite end of the two moving plates. The layered insertion plate slidably penetrates through the second frame. A plurality of layered insertion plates are arranged and are equally spaced apart. An atomizing nozzle is arranged on one side of the layered insertion plate. A plurality of uniformly distributed spray holes are arranged on the surface of the atomizing nozzle. A pump body is arranged on the top of the second frame. The output end of the pump body is connected with a three-way pipe. Both ends of the three-way pipe are communicated with a first hose. One end of the first hose is connected with a liquid inlet pipe. One end of the liquid inlet pipe penetrates through the moving plate and is communicated with the atomizing nozzle. The two moving plates are respectively threadedly sleeved on the two lead screws.
[0008] Preferably, a limiting plate is arranged at one end of the lead screw.
[0009] Preferably, two groups of layered insertion plates are arranged on the corresponding moving plates, and the atomizing nozzle is located between the two groups of layered insertion plates.
[0010] Preferably, the spraying assembly includes a feeding pump, a second hose, a through pipe and a spraying hood. The feeding pump is arranged on the top of the first frame, and the output end of the feeding pump is sequentially connected with the second hose, the through pipe and the spraying hood.
[0011] Preferably, the through pipe slidably penetrates through the first frame, a cylinder is arranged on the top of the first frame, and the output shaft of the cylinder penetrates through the first frame and is connected with the spraying hood.
[0012] The beneficial effects of the present utility model are as follows: The non-woven fabric is transported by a conveyor belt. When the non-woven fabric is transported into the first frame, the top of the non-woven fabric is sprayed and humidified by the spraying assembly. When the non-woven fabric is transported into the second frame, the double-shaft motor, the lead screw and the moving plate drive the two side layered insertion plates to approach each other. A plurality of layered insertion plates are respectively inserted into different layers of the non-woven fabric, so that a certain gap is left between different layers of the non-woven fabric. The disinfectant liquid is communicated with the pump body, the pump body is started, and the disinfectant liquid is output to the atomizing nozzle through the three-way pipe, the first hose and the liquid inlet pipe. The disinfectant liquid is sprayed towards the non-woven fabric through a plurality of spray holes on the surface of the atomizing nozzle, so as to uniformly humidify different layers of the non-woven fabric. Through the above settings, the multi-layer non-woven fabric can be uniformly humidified, so that the disinfectant liquid uniformly penetrates into different layers of the non-woven fabric to ensure the processing effect of the wet wipes. Description of the Drawings
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the prior art, but it is not a limitation to the protection scope of the present utility model.
[0014] Figure 1 It is the front view of the whole device provided by the present utility model;
[0015] Figure 2 It is the side view of the first frame provided by the present utility model;
[0016] Figure 3 It is the side view of the second frame provided by the present utility model;
[0017] Figure 4 It is provided by the present utility model Figure 3 The side view of the moving plate in
[0018] Wherein, 1, base frame; 2, conveyor belt; 3, first frame; 4, second frame; 5, spraying assembly; 51, feeding pump; 52, second hose; 53, through pipe; 54, spraying hood; 6, double-shaft motor; 7, lead screw; 8, moving plate; 9, layered insertion plate; 10, atomizing nozzle; 11, pump body; 12, three-way pipe; 13, first hose; 14, liquid inlet pipe; 15, limiting plate; 16, cylinder. Detailed Embodiments
[0019] Refer to Figures 1 to 4 A non-woven fabric humidifying device for wet wipe production as shown, including a base frame 1. A conveyor belt 2 is arranged inside the base frame 1. A first frame 3 and a second frame 4 are arranged on the top of the base frame 1. A spraying assembly 5 is arranged inside the first frame 3. A double-shaft motor 6 is arranged at the top inside the second frame 4. Both output shafts of the double-shaft motor 6 are connected with lead screws 7. One end of the lead screw 7 penetrates out of the second frame 4. Moving plates 8 are arranged in front of and behind the second frame 4. Stratified inserting plates 9 are arranged at the opposite ends of the two moving plates 8. The stratified inserting plates 9 slide through the second frame 4. A plurality of stratified inserting plates 9 are arranged and are equally spaced. An atomizing nozzle 10 is arranged on one side of the stratified inserting plate 9. A plurality of evenly distributed spray holes are arranged on the surface of the atomizing nozzle 10. A pump body 11 is arranged on the top of the second frame 4. The output end of the pump body 11 is connected with a three-way pipe 12. Both ends of the three-way pipe 12 are communicated with a first hose 13. One end of the first hose 13 is connected with a liquid inlet pipe 14. One end of the liquid inlet pipe 14 penetrates through the moving plate 8 and is communicated with the atomizing nozzle 10. The two moving plates 8 are respectively threadedly sleeved on the two lead screws 7.
[0020] Further, a limit plate 15 is arranged at one end of the lead screw 7.
[0021] The limit plate 15 is used to prevent the moving plate 8 from disengaging from the lead screw 7 when the lead screw 7 rotates.
[0022] Further, two groups of stratified inserting plates 9 are arranged on the corresponding moving plates 8, and the atomizing nozzle 10 is located between the two groups of stratified inserting plates 9.
[0023] The two groups of stratified inserting plates 9 are inserted into different layers of the non-woven fabric, leaving a certain gap between different layers of the non-woven fabric, so as to atomize and humidify the non-woven fabric through the atomizing nozzle 10.
[0024] Further, the spraying assembly 5 includes a feeding pump 51, a second hose 52, a through pipe 53 and a spraying hood 54. The feeding pump 51 is arranged on the top of the first frame 3. The output end of the feeding pump 51 is sequentially connected with the second hose 52, the through pipe 53 and the spraying hood 54.
[0025] Connect the disinfectant with the feeding pump 51, start the feeding pump 51, and spray towards the non-woven fabric through the feeding pump 51, the through pipe 53 and the spraying hood 54 for top humidifying work of the non-woven fabric.
[0026] Further, the through pipe 53 slidably penetrates through the first frame 3. A cylinder 16 is arranged on the top of the first frame 3. The output shaft of the cylinder 16 penetrates through the first frame 3 and is connected with the spraying hood 54.
[0027] Start the cylinder 16 to extend and retract its output shaft, so as to adjust the height of the spray hood 54, making the spray hood 54 just in contact with the top of the non-woven fabric, so that all the disinfectant sprayed out by the spray hood 54 falls on the non-woven fabric, ensuring the full utilization of the disinfectant.
[0028] When the present utility model is in use, the non-woven fabric is transported by the conveyor belt 2. When the non-woven fabric is transported into the first frame 3, the top of the non-woven fabric is sprayed and humidified by the spraying assembly 5. When the non-woven fabric is transported into the second frame 4, start the double-shaft motor 6 to drive the lead screws 7 on both sides to rotate. According to the principle of screw drive, the moving plates 8 on both sides move closer to each other, and then drive the layered insertion plates 9 on both sides to move closer to each other. Several layered insertion plates 9 are respectively inserted into different layers of the non-woven fabric, leaving a certain gap between different layers of the non-woven fabric. Connect the disinfectant to the pump body 11, start the pump body 11, and output it to the atomizing nozzle 9 through the three-way pipe 12, the first hose 13 and the liquid inlet pipe 14. Spray out towards the non-woven fabric through multiple spray holes on the surface of the atomizing nozzle 9, so as to uniformly humidify different layers of the non-woven fabric.
[0029] The above is only the specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any change or replacement that is thought of without creative work should be covered within the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the protection scope defined by the claims.
Claims
1. A non-woven fabric humidifying device for wet wipe production, characterized in that: It includes a base frame, inside which a conveyor belt is arranged. At the top of the base frame, a first frame and a second frame are provided. Inside the first frame, a spraying assembly is arranged. At the top inside the second frame, a double-shaft motor is provided. Both output shafts at both ends of the double-shaft motor are connected with lead screws. One end of each lead screw penetrates out of the second frame. A moving plate is provided in front of and behind the second frame. At the opposite ends of the two moving plates, a layered insertion plate is provided. The layered insertion plate slidably penetrates through the second frame. A plurality of layered insertion plates are provided and are evenly distributed at equal intervals. One side of the layered insertion plate is provided with an atomizing nozzle. The surface of the atomizing nozzle is provided with a plurality of evenly distributed spray holes. A pump body is provided at the top of the second frame. The output end of the pump body is connected with a three-way pipe. Both ends of the three-way pipe are communicated with a first hose. One end of the first hose is connected with a liquid inlet pipe. One end of the liquid inlet pipe penetrates through the moving plate and is communicated with the atomizing nozzle. The two moving plates are respectively threadedly sleeved on the two lead screws.
2. The non-woven fabric humidifying device for wet wipe production according to claim 1, characterized in that: A limiting plate is provided at one end of the lead screw.
3. The non-woven fabric humidifying device for wet wipe production according to claim 1, characterized in that: Two groups of the layered insertion plates are provided on the corresponding moving plates. The atomizing nozzle is located between the two groups of the layered insertion plates.
4. The non-woven fabric humidifying device for wet wipe production according to claim 1, wherein: The spraying assembly includes a feeding pump, a second hose, a through pipe and a spraying cover. The feeding pump is arranged at the top of the first frame. The output end of the feeding pump is sequentially connected with the second hose, the through pipe and the spraying cover.
5. The non-woven fabric humidifying device for wet wipe production according to claim 4, wherein: The through pipe slidably penetrates through the first frame. A cylinder is provided at the top of the first frame. The output shaft of the cylinder penetrates through the first frame and is connected with the spraying cover.