Virus and bacterium inactivation material processing and distributing device

By designing a winding and mounting assembly in the fabric processing device, and utilizing an absorbent membrane to absorb dripping disinfectant, the problem of disinfectant dripping onto the surface of the processing machine is solved, achieving both machine cleaning and protection and efficient replacement of the absorbent membrane.

CN224243449UActive Publication Date: 2026-05-15XIAN CUSTOMS TECH CENT
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIAN CUSTOMS TECH CENT
Filing Date
2025-06-11
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

During fabric processing, disinfectant can easily penetrate the fabric and drip onto the surface of the processing machine, forming stubborn stains that affect the appearance and are difficult to clean.

Method used

A fabric device comprising a winding component and an installation component was designed. The device utilizes an absorbent membrane to absorb dripping disinfectant, and the winding component collects the old absorbent membrane while the installation component releases a new absorbent membrane, thus constructing a protective system to prevent disinfectant from dripping.

Benefits of technology

It effectively prevents the disinfectant solution from dripping into the processing machine, keeps the machine clean, simplifies the replacement process of the absorbent membrane, and improves the protection efficiency of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cloth processing, in particular to a virus and bacterium inactivation material processing and distributing device which comprises a processing machine body, the surface of the processing machine body is fixedly connected with two material guiding assemblies, and the two ends of the processing machine body are fixedly connected with a rolling assembly and an installation assembly respectively. A water absorption film is fixedly wound on the rotating part of the mounting assembly, and the other end of the water absorption film is connected to the surface of the rotating part of the winding assembly; through close cooperation of the winding assembly, the mounting assembly and the water absorption film, a set of efficient and practical protection system is constructed, and by means of the cooperation, the water absorption film can accurately and flatly cover the lower portion of the cloth; when the spraying operation is started and the degerming liquid drips through gaps of the cloth, the water absorption film quickly and thoroughly absorbs the dripping degerming liquid completely by virtue of the excellent water absorption performance of the water absorption film, so that the degerming liquid is firmly prevented from further infiltrating, and the possibility that the degerming liquid drips into a processing machine body is completely eradicated from the source.
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Description

Technical Field

[0001] This utility model relates to the field of fabric processing technology, and in particular to a device for processing fabrics with virus and bacteria inactivation materials. Background Technology

[0002] The virus and bacteria inactivation material processing fabric device is used to combine materials with virus and bacteria inactivation functions (such as antibacterial agents, antiviral agents, etc.) with fabric to produce functional fabrics with antibacterial and antiviral properties.

[0003] During the application of the inactivation material, the fabric is first fed into the device through the inlet and then guided inward by the guide roller. Then, the pressure pump pressurizes the storage tank and introduces the sterilization liquid through the water pipe. The liquid is then sprayed onto the surface of the fabric through the nozzle. After spraying, the fabric is dried using the drying mechanism inside the processing machine.

[0004] During the spraying of fabric with disinfectant, the following phenomenon occurs: the fabric absorbs the sprayed disinfectant, and the disinfectant also wets the fabric. However, this wetting process brings a tricky problem—because the fabric cannot completely retain the disinfectant, the disinfectant can easily penetrate the fabric and drip onto the surface of the processing machine.

[0005] When the processing machine starts its internal drying program to dry the fabric, the disinfectant solution that drips onto the surface of the machine will gradually dry. The dried disinfectant solution forms a stubborn stain on the surface of the processing machine. This stain not only affects the appearance of the processing machine, but also becomes difficult to clean due to its tight adhesion to the surface, causing great inconvenience to subsequent maintenance. Utility Model Content

[0006] This utility model addresses the shortcomings of existing technologies by providing the following technical solution: a fabric processing device for virus and bacteria inactivation materials, comprising a processing body, two material guiding components fixedly connected to the surface of the processing body, a winding component and an installation component fixedly connected to both ends of the processing body, a water-absorbing membrane fixedly wound around the rotating part of the installation component, and the other end of the water-absorbing membrane connected to the surface of the rotating part of the winding component.

[0007] As an improvement to the above technical solution, the winding assembly includes a winding frame, a rotating shaft, an arc-shaped clamping plate, a pin, a rotating disk, and a winding frame fixedly connected to one end of the processing machine body. The rotating shaft is rotatably connected to the surface of the winding frame, and the arc-shaped clamping plate is elastically hinged to the surface of the rotating shaft. The rotating disk is fixedly connected to the shaft end surface of the rotating shaft, and a plurality of limiting holes are opened on the surface of the rotating disk. A pin is inserted into the surface of the winding frame, and the lower end of the pin is inserted into the limiting hole.

[0008] As an improvement to the above technical solution, the mounting assembly includes a mounting frame, a first snap-fit ​​component, a second snap-fit ​​component, a mounting roller, a second rotating disk, and a second pin. The mounting frame is fixedly connected to one end of the processing machine body. The first snap-fit ​​component and the second snap-fit ​​component are rotatably connected to the surface of the mounting frame. The mounting roller is slidably mounted on the first snap-fit ​​component and the second snap-fit ​​component through a groove on its end face. An absorbent film is fixedly wrapped around the surface of the mounting roller. The second rotating disk is fixedly connected to the shaft end surface of the second snap-fit ​​component. The surface of the second rotating disk has multiple second limiting holes. The second pin is inserted into the surface of the mounting frame. The lower end of the second pin extends into the interior of the second limiting hole. The second snap-fit ​​component is fixedly connected to the mounting roller by bolts.

[0009] As an improvement to the above technical solution, the mounting roller includes a roller body and a slider, with sliders fixedly connected to both ends of the roller body, and a threaded hole opened at one end of the roller body.

[0010] As an improvement to the above technical solution, a crank handle is fixedly connected to the end of the rotating shaft.

[0011] The beneficial effects of this utility model are:

[0012] By working closely together with the winding assembly, the mounting assembly, and the absorbent membrane, a highly efficient and practical protective system is built. With this cooperation, the absorbent membrane can be precisely and smoothly covered under the fabric.

[0013] When the spraying operation is started, as the disinfectant drips through the fabric gaps, the absorbent membrane, with its excellent water absorption properties, quickly and thoroughly absorbs the dripping disinfectant, firmly preventing the disinfectant from seeping further down and eliminating the possibility of the disinfectant dripping into the processing machine from the source.

[0014] The combination of the winding and mounting components makes the entire process of replacing the absorbent membrane more efficient and faster. When a spraying operation is completed, the winding component can collect the used absorbent membrane, while the mounting component automatically releases a brand new absorbent membrane to cover the surface of the processing machine, making thorough protective preparations in advance for the next spraying cycle. Attached Figure Description

[0015] Figure 1 This is a structural diagram of one side of the entire utility model;

[0016] Figure 2 This is a structural diagram of the other side of the entire utility model;

[0017] Figure 3 This is a structural diagram of the absorbent membrane of this utility model;

[0018] Figure 4This is a structural diagram of the installation component of this utility model;

[0019] Figure 5 This is a structural diagram of the mounting roller of this utility model;

[0020] Figure 6 This is a structural diagram of the winding assembly of this utility model.

[0021] Reference numerals in the attached drawings: 1. Processing machine body; 2. Material guiding assembly; 3. Winding assembly; 31. Winding frame body; 32. Rotating shaft; 33. Arc-shaped clamping plate; 34. Pin 1; 35. Rotating disk 1; 36. Handle; 37. Limiting hole 1; 4. Mounting assembly; 41. Mounting frame; 42. Snap-fit ​​part 1; 43. Snap-fit ​​part 2; 44. Slide groove; 45. Mounting roller; 451. Roller body; 452. Slider; 453. Threaded hole; 46. Rotating disk 2; 47. Limiting hole 2; 48. Pin 2; 5. Absorbent membrane. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the following provides a more detailed description of the utility model. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of the utility model.

[0023] Please see Figure 1-6 This utility model provides a technical solution: a device for processing fabrics into virus and bacteria inactivation materials, including a processing body 1, two material guiding components 2 are fixedly connected to the surface of the processing body 1, a winding component 3 and an installation component 4 are fixedly connected to both ends of the processing body 1 respectively, an absorbent membrane 5 is fixedly wrapped around the rotating part of the installation component 4, and the other end of the absorbent membrane 5 is connected to the surface of the rotating part of the winding component 3.

[0024] In this embodiment, the material guiding component 2 operates to smoothly and steadily guide the fabric to be processed into the internal space of the processing machine body 1. When the processing machine body 1 starts the spraying program to spray the fabric with disinfectant, the absorbent membrane 5 set under the fabric begins to play a key role. With its excellent water absorption performance, it quickly and effectively absorbs the disinfectant dripping through the gaps in the fabric, preventing the disinfectant from seeping further down, thereby preventing the disinfectant from dripping into the interior of the processing machine body 1 and effectively protecting the cleanliness of the processing machine body 1.

[0025] After a complete spraying process is completed, the user only needs to rotate the winding assembly 3. The winding assembly 3 will collect the used absorbent membrane 5 in an orderly manner. At the same time, the rotating part of the mounting assembly 4 will release a brand new absorbent membrane 5 under the traction of the absorbent membrane 5. The newly released absorbent membrane 5 will quickly and flatly cover the surface of the processing machine body 1, preparing for the next spraying process.

[0026] like Figure 3 and Figure 6 As shown, the winding assembly 3 includes a winding frame 31, a rotating shaft 32, an arc-shaped clamping plate 33, a pin 34, and a rotating disk 35. The winding frame 31 is fixedly connected to one end of the processing machine body 1. The rotating shaft 32 is rotatably connected to the surface of the winding frame 31. The arc-shaped clamping plate 33 is elastically hinged to the surface of the rotating shaft 32. The rotating disk 35 is fixedly connected to the shaft end surface of the rotating shaft 32. Multiple limiting holes 37 are opened on the surface of the rotating disk 35. The pin 34 is inserted into the surface of the winding frame 31. The lower end of the pin 34 is inserted into the interior of the limiting hole 37.

[0027] In this embodiment, the user can use the arc-shaped clamping plate 33 to fix one end of the absorbent film 5 wrapped around the mounting component 4 to the surface of the rotating shaft 32. By rotating the rotating shaft 32, the user can make the rotating shaft 32 rotate on the surface of the winding frame 31, thereby collecting the used absorbent film 5. After collection, the user can use the pin 34 to insert into the limiting hole 37 to fix the rotating shaft 32 and prevent it from rotating.

[0028] like Figure 4 and Figure 5 As shown, the mounting assembly 4 includes a mounting frame 41, a first snap-fit ​​component 42, a second snap-fit ​​component 43, a mounting roller 45, a second rotating disk 46, and a second pin 48. The mounting frame 41 is fixedly connected to one end of the processing machine body 1. The first snap-fit ​​component 42 and the second snap-fit ​​component 43 are rotatably connected to the surface of the mounting frame 41. The first snap-fit ​​component 42 and the second snap-fit ​​component 43 are slidably mounted on the mounting roller 45 through the sliding grooves 44 opened on their end faces. The surface of the mounting roller 45 is fixedly wrapped with an absorbent membrane 5. The second snap-fit ​​component 43 is fixedly connected to the shaft end surface of the second snap-fit ​​component 46. The surface of the second rotating disk 46 is provided with multiple second limiting holes 47. The second pin 48 is inserted into the surface of the mounting frame 41. The lower end of the second pin 48 extends into the interior of the second limiting hole 47. The second snap-fit ​​component 43 is fixedly connected to the mounting roller 45 by bolts.

[0029] In this embodiment, when installing the installation roller 45, the user slides the installation roller 45 into the end faces of the first snap fastener 42 and the second snap fastener 43. The first snap fastener 42 and the second snap fastener 43 use the sliding groove 44 opened on their end faces to movably snap the installation roller 45. Then, the user tightens the bolts to fix the installation roller 45 and the water-absorbing film 5 wrapped around its surface onto the mounting frame 41. Then, the user fixes one end of the water-absorbing film 5 to the surface of the rotating shaft 32. Finally, the user inserts the second pin 48, so that the second pin 48 is inserted into the inside of the second limiting hole 47, thereby limiting the rotation of the installation roller 45.

[0030] like Figure 5As shown, the mounting roller 45 includes a roller body 451 and a slider 452. Both ends of the roller body 451 are fixedly connected to the slider 452, and one end of the roller body 451 is provided with a threaded hole 453.

[0031] In this embodiment, the mounting roller 45 can slide into the groove 44 through the slider 452, so that the mounting roller 45 is initially installed on the end face of the first snap fastener 42 and the second snap fastener 43. Then, the threaded hole 453 opened at one end can be used to cooperate with the bolt to fix the mounting roller 45 and the water-absorbing film 5 wrapped around its surface.

[0032] like Figure 6 As shown, a rocker arm 36 is fixedly connected to the end of the rotating shaft 32.

[0033] In this embodiment, the user can rotate the crank 36 to drive the rotating shaft 32 to rotate, which makes it easier for the user to collect the items.

[0034] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.

Claims

1. A device for processing fabrics with virus and bacteria inactivation materials, comprising a processing body (1), characterized in that: Two material guiding components (2) are fixedly connected to the surface of the processing machine body (1). A winding component (3) and an installation component (4) are fixedly connected to both ends of the processing machine body (1). A water-absorbing membrane (5) is fixedly wrapped around the rotating part of the installation component (4). The other end of the water-absorbing membrane (5) is connected to the surface of the rotating part of the winding component (3).

2. The device for processing fabrics with virus and bacteria inactivation materials according to claim 1, characterized in that: The winding assembly (3) includes a winding frame (31), a rotating shaft (32), an arc-shaped clamping plate (33), a pin (34), and a rotating disk (35). The winding frame (31) is fixedly connected to one end of the processing machine body (1). The rotating shaft (32) is rotatably connected to the surface of the winding frame (31). The arc-shaped clamping plate (33) is elastically hinged to the surface of the rotating shaft (32). The rotating disk (35) is fixedly connected to the shaft end surface of the rotating shaft (32). Multiple limiting holes (37) are opened on the surface of the rotating disk (35). The pin (34) is inserted into the surface of the winding frame (31). The lower end of the pin (34) is inserted into the limiting hole (37).

3. The device for processing fabrics with virus and bacteria inactivation materials according to claim 2, characterized in that: The mounting assembly (4) includes a mounting frame (41), a first snap-fit ​​component (42), a second snap-fit ​​component (43), a mounting roller (45), a second rotating disk (46), and a second pin (48). The mounting frame (41) is fixedly connected to one end of the processing machine body (1). The first snap-fit ​​component (42) and the second snap-fit ​​component (43) are rotatably connected to the surface of the mounting frame (41). The first snap-fit ​​component (42) and the second snap-fit ​​component (43) are slidably mounted on the mounting roller through the sliding groove (44) opened on their end faces. Roller (45), the surface of the mounting roller (45) is fixedly wrapped with a water-absorbing film (5), the shaft end surface of the snap-fit ​​part (43) is fixedly connected with a rotating disk (46), the surface of the rotating disk (46) is provided with multiple limiting holes (47), the surface of the mounting bracket (41) is provided with a pin (48), the lower end of the pin (48) extends into the interior of the limiting hole (47), and the snap-fit ​​part (43) is fixedly connected to the mounting roller (45) by bolts.

4. The device for processing fabrics with virus and bacteria inactivation materials according to claim 3, characterized in that: The mounting roller (45) includes a roller body (451) and a slider (452). Both ends of the roller body (451) are fixedly connected to sliders (452), and one end of the roller body (451) is provided with a threaded hole (453).

5. The device for processing fabrics with virus and bacteria inactivation materials according to claim 2, characterized in that: A rocker arm (36) is fixedly connected to the end of the rotating shaft (32).