Antibacterial cabin with illumination antibacterial structure

By designing an antibacterial cabin with a light-irradiated antibacterial structure, using universal wheels and a mobile mechanism to achieve unmanned operation for hanging towels, and combining ultraviolet lamps and heating wires for multiple sterilization, the problems of bacterial contamination and unstable suspension in traditional antibacterial cabins are solved, and the sterilization effect and sanitary conditions are improved.

CN223429752UActive Publication Date: 2025-10-14SHANDONG SANKANG FIBER TECH CO LTD
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Patent Information

Application Number
CN202422785060.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-14
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Traditional antibacterial cabins are prone to external bacterial contamination during the sterilization and disinfection process, and the towel hanging is unstable, affecting the sterilization effect.

Method used

An antibacterial cabin with a light-irradiating antibacterial structure is designed. It adopts universal wheels, a moving mechanism, a rotating mechanism, a locking mechanism, a heating mechanism and a stabilizing mechanism to realize unmanned operation of hanging towels, and performs multiple sterilizations through the combined use of ultraviolet lamps and heating wires.

Benefits of technology

Effectively avoid external bacterial contamination, improve the sterilization effect, ensure the stability of towel hanging, enhance the sanitary conditions in the antibacterial cabin, and reduce the risk of bacterial growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of antibacterial cabins, and discloses an antibacterial cabin with an illumination antibacterial structure, which comprises an antibacterial cabin body, universal wheels are mounted at four corners of the bottom of the antibacterial cabin body, two cabin doors are hinged to one end of the outer side wall of the antibacterial cabin body, and a support plate is arranged in the antibacterial cabin body. A moving mechanism for moving the supporting plate is arranged on the inner side wall of the antibacterial cabin body, a rotating shaft is rotationally connected to the middle of the top of the supporting plate, a rotating mechanism for rotating the rotating shaft is arranged at the bottom of the supporting plate, and a plurality of second connecting plates are circularly fixed to the side wall of the rotating shaft at equal intervals. When towels are hung, workers do not need to enter the antibacterial cabin body, bacteria and pollutants in the external environment are effectively prevented from entering the antibacterial cabin body, the pollution risk of air and the surface is reduced, and therefore the sanitary condition in the antibacterial cabin body is improved; and the towel is subjected to multiple sterilization treatment, so that the antibacterial effect is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of antibacterial cabin, especially with the antibacterial cabin of illumination antibacterial structure. BACKGROUND

[0002] The antibacterial cabin is a kind of closed space or equipment specially designed for inhibiting the growth of bacteria, viruses and other microorganisms, with the increasing awareness of health, especially under the background of frequent public health events, the sterilization and disinfection problem of towel and other daily necessities is increasingly valued, towel is the article that people contact frequently, and it is easy to breed bacteria, fungi and other microorganisms, and then affect the health of user, therefore a kind of antibacterial cabin with illumination antibacterial structure needs to be developed, can carry out efficient and rapid sterilization and disinfection treatment to towel.

[0003] When the conventional antibacterial cabin is sterilized and disinfected to towel, it is usually necessary for a person to enter the antibacterial cabin to hang the towel, and such operation mode can cause bacteria and pollutants in external environment to be brought into the cabin, and the process of entering the cabin can cause the pollution of air and surface in the cabin, thereby increasing the risk of bacterial breeding and reducing antibacterial effect, and most of the existing antibacterial cabins are usually hung and rotated to towel when carrying out sterilization and disinfection treatment to bath towel, do not fix bath towel, and the phenomenon of towel falling off is likely to occur in the process of rotation. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the shortcomings in the prior art, and provides an antibacterial cabin with illumination antibacterial structure.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] An antibacterial cabin with a light-irradiating antibacterial structure comprises an antibacterial cabin body, universal wheels are installed at the four corners of the bottom of the antibacterial cabin body, two doors are hingedly connected to one end of the outer wall of the antibacterial cabin body, a support plate is provided inside the antibacterial cabin body, a moving mechanism for moving the support plate is provided on the inner wall of the antibacterial cabin body, a rotating shaft is rotatably connected at the middle of the top of the support plate, a rotating mechanism for rotating the rotating shaft is provided at the bottom of the support plate, a plurality of second connecting plates are fixed to the side walls of the rotating shaft in an equidistant manner in a circle, a plurality of second connecting plates are provided at the bottom of each of the plurality of second connecting plates, and a plurality of extrusion plates are provided at both ends of the bottom of each of the plurality of extrusion plates with a locking mechanism for locking the extrusion plates. A plurality of ultraviolet lamps are fixed in a linear shape at equal distances on the top of the antibacterial cabin body, heating mechanisms are provided at both ends of the inner side wall of the antibacterial cabin body, and a stabilizing mechanism for stabilizing the antibacterial cabin body is provided at the bottom of the antibacterial cabin body. During use of the device, workers do not need to enter the antibacterial cabin body when hanging towels, effectively preventing bacteria and pollutants in the external environment from entering the antibacterial cabin body, reducing the risk of air and surface contamination, thereby improving the sanitary conditions inside the antibacterial cabin body, and through the combined use of the heating mechanism and multiple ultraviolet lamps, the towels are subjected to multiple sterilization treatments, thereby enhancing the antibacterial effect and reducing the possibility of bacterial growth.

[0007] Material toggling mechanism, its both ends are to be connected with the support frame, and the supporting tractor has the outermost limit stop that is provided with a toothed structure, and the toothed structure that is provided with a toothed structure is that of axle, and axle is fixed with toothed structure.

[0008] As a further solution of the present invention, the rotating mechanism includes a first motor, which is fixed to the bottom of the support plate, and the output shaft and the rotating shaft of the first motor are fixed. The first motor is driven to drive the rotating shaft to rotate, and then drives the towel to rotate, thereby improving the sterilization effect and reducing the problem of local dead angles.

[0009] As a further solution of the present invention, the locking mechanism includes a connecting rod, which is fixed to one end of the bottom of the second connecting plate, and one end of the connecting rod passes through the bottom of the extrusion plate. An anti-drop cap is fixed to one end of the connecting rod, and a spring is provided on the side wall of the connecting rod, and the spring is located between the extrusion plate and the anti-drop cap. When hanging a towel, the extrusion plate is moved downward so that the extrusion plate gradually moves away from the second connecting plate. At this time, both springs are in a compressed state, and the towel is hung on the top of the extrusion plate. After completion, the extrusion plate is released, and under the reaction of the two compressed springs, the extrusion plate approaches the second connecting plate. At this time, the towel is tightly fixed between the second connecting plate and the extrusion plate to prevent it from falling.

[0010] As a further solution of the present invention, the heating mechanism includes a rectangular frame, which is fixed on the inner wall of the antibacterial cabin body and is located above the support plate. An electric heating wire is fixed to the inner wall of the rectangular frame. When the power switch of the electric heating wire and the ultraviolet lamp is turned on, the surface temperature rises rapidly when the electric heating wire is energized, and the air inside the antibacterial cabin body is heated, thereby preliminarily achieving sterilization of the towels, and further sterilizing and disinfecting the towels through multiple ultraviolet lamps.

[0011] As a further solution of the present invention, the stabilizing mechanism includes a first connecting plate, which is arranged in the middle of the bottom of the antibacterial cabin body. Two hydraulic push rods are fixed to the bottom of the antibacterial cabin body, and the output ends of the two hydraulic push rods are fixed to the two ends of the top of the first connecting plate. A rubber plate is fixed to the bottom of the first connecting plate, and a plurality of anti-slip grooves are provided at the bottom of the rubber plate. Driving the two hydraulic push rods simultaneously drives the first connecting plate and the rubber plate to descend until the rubber plate is in close contact with the ground, thereby increasing the movement resistance of the antibacterial cabin body and thereby improving the placement stability of the device.

[0012] The beneficial effects of the utility model are:

[0013] 1. During use, the support plate and the rotating shaft can be moved to the edge of the antibacterial cabin body through the moving mechanism, making it easier for workers to take and place towels. When hanging towels, workers do not need to enter the antibacterial cabin body, effectively preventing bacteria and pollutants in the external environment from entering the cabin, reducing the risk of air and surface contamination, and thus improving the sanitary conditions inside the antibacterial cabin body.

[0014] 2. Through the combined use of heating mechanism and multiple ultraviolet lamps, the towels are subjected to multiple sterilization treatments, which enhances the antibacterial effect and reduces the possibility of bacterial growth. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a structural schematic diagram of an antibacterial cabin with a light-irradiating antibacterial structure proposed by the present invention;

[0016] Figure 2 This is a schematic cross-sectional view of an antibacterial cabin body with an antibacterial light structure proposed in the present invention;

[0017] Figure 3 This is a schematic diagram of the moving mechanism and rotating mechanism of an antibacterial cabin with a light-irradiating antibacterial structure proposed in the present invention;

[0018] Figure 4 This is an exploded diagram of the second connecting plate, extrusion plate and connecting rod of an antibacterial cabin with a light-irradiated antibacterial structure proposed by the present invention;

[0019] Figure 5 This is a schematic diagram of a rectangular frame and electric heating wire of an antibacterial cabin with a light-irradiating antibacterial structure proposed by the present invention;

[0020] Figure 6 This is a schematic diagram of the hydraulic push rod, first connecting plate and rubber plate of an antibacterial cabin with a light-irradiating antibacterial structure proposed by the present invention.

[0021] In the figure: 1. Antibacterial cabin body; 2. Universal wheel; 3. Cabin door; 4. Hydraulic push rod; 5. First connecting plate; 6. Rubber plate; 7. Support plate; 8. Screw rod; 9. Slide seat; 10. Slider; 11. Rectangular frame; 12. Electric heating wire; 13. Ultraviolet lamp tube; 14. Support plate; 15. Rotating shaft; 16. First motor; 17. Second connecting plate; 18. Extrusion plate; 19. Connecting rod; 20. Spring; 21. Anti-drop cap; 22. Second motor. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0023] Reference Figure 1 - Figure 6An antibacterial cabin with a light-irradiating antibacterial structure includes an antibacterial cabin body 1, universal wheels 2 are installed at the four corners of the bottom of the antibacterial cabin body 1, two doors 3 are hinged at one end of the outer wall of the antibacterial cabin body 1, a support plate 14 is provided inside the antibacterial cabin body 1, and a moving mechanism for moving the support plate 14 is provided on the inner wall of the antibacterial cabin body 1. A rotating shaft 15 is rotatably connected to the middle of the top of the support plate 14, and a rotating mechanism for rotating the rotating shaft 15 is provided at the bottom of the support plate 14. A plurality of second connecting plates 17 are fixed to the side walls of the rotating shaft 15 in a circular shape at equal distances, and a plurality of second connecting plates 17 are provided at the bottom of each of the plurality of second connecting plates 17. A plurality of squeezing plates 18 are provided at the bottom, and a plurality of squeezing plates 18 are provided at both ends of the bottom for locking the squeezing plates 18. A locking mechanism is provided, and multiple ultraviolet lamps 13 are fixed in a linear shape at equal distances on the top of the antibacterial cabin body 1. Heating mechanisms are provided at both ends of the inner wall of the antibacterial cabin body 1. A stabilizing mechanism for stabilizing the antibacterial cabin body 1 is provided at the bottom of the antibacterial cabin body 1. During the use of this device, workers do not need to enter the antibacterial cabin body 1 when hanging towels, which effectively prevents bacteria and pollutants in the external environment from entering the antibacterial cabin body 1, reduces the risk of air and surface contamination, and thus improves the sanitary conditions in the antibacterial cabin body 1. Through the combined use of the heating mechanism and multiple ultraviolet lamps 13, the towels are subjected to multiple sterilization treatments, thereby enhancing the antibacterial effect and reducing the possibility of bacterial growth.

[0024] Reference Figure 2 and Figure 3 In a preferred embodiment, the moving mechanism includes a slide 9, one end of the inner wall of the antibacterial cabin body 1 is fixed with a slide 9, and the side wall of the slide 9 is slidably connected to a slider 10, and the other end of the inner wall of the antibacterial cabin body 1 is fixed with two support plates 7, and the inner walls of the two support plates 7 are rotatably connected to the same screw rod 8, and one end of the screw rod 8 passes through the outer wall of one of the support plates 7, and the side wall of the screw rod 8 is sleeved with a rectangular frame 11, and the two ends of the support plate 14 are respectively fixed to the slider 10 and the rectangular frame 11, and the outer wall of one of the support plates 7 of the universal wheel 2 is fixed with a second motor 22, and the second motor 22 is fixed to the outer wall of the second support plate 7 of the universal wheel 2. The output shaft of the second motor 22 is fixed to one end of the screw rod 8, and the second motor 22 is driven to drive the screw rod 8 to rotate, and cooperates with the rectangular frame 11, the slider 10 and the slide seat 9 to drive the support plate 14 to move, and then drives the rotating shaft 15 to move to the edge near the cabin door 3. There is no need for workers to enter the antibacterial cabin body 1 to hang towels, which prevents bacteria and pollutants in the external environment from being brought into the antibacterial cabin body 1, and prevents contamination of the air and surface inside the antibacterial cabin body 1, thereby reducing the risk of bacterial growth, improving the antibacterial effect, and making it convenient for workers to take and put towels.

[0025] Reference Figure 3In a preferred embodiment, the rotating mechanism comprises a first motor 16 fixed to the bottom of the support plate 14, and the output shaft of the first motor 16 is fixed to the rotating shaft 15, driving the rotating shaft 15 to rotate, thereby driving the towel to rotate, improving the sterilization effect and reducing the problem of local dead angle.

[0026] Referring to Figure 3 and Figure 4 In a preferred embodiment, the locking mechanism comprises a connecting rod 19 fixed to one end of the bottom of the second connecting plate 17, and one end of the connecting rod 19 penetrates the bottom of the pressing plate 18, and the other end of the connecting rod 19 is fixed with a anti-loose cap 21, and the sidewall of the connecting rod 19 is sleeved with a spring 20, and the spring 20 is located between the pressing plate 18 and the anti-loose cap 21, when hanging the towel, moving the pressing plate 18 downward, so that the pressing plate 18 gradually moves away from the second connecting plate 17, at this time, the two springs 20 are in a compressed state, the towel is hung on the top of the pressing plate 18, after completion, release the pressing plate 18, under the action of the two compressed springs 20, the pressing plate 18 moves towards the second connecting plate 17, at this time, the towel is tightly fixed between the second connecting plate 17 and the pressing plate 18, preventing it from falling off.

[0027] Referring to Figure 2 and Figure 5 In a preferred embodiment, the heating mechanism comprises a rectangular frame 11 fixed to the inner side wall of the antibacterial cabin body 1, and the rectangular frame 11 is located above the support plate 14, and the inner side wall of the rectangular frame 11 is fixed with an electric heating wire 12, and the power switch of the electric heating wire 12 and the ultraviolet lamp 13 is turned on, when the electric heating wire 12 is electrified, the surface temperature rises rapidly, heating the air inside the antibacterial cabin body 1, preliminarily realizing the sterilization treatment of the towel, and further sterilizing and disinfecting the towel through the multiple ultraviolet lamp 13.

[0028] Referring to Figure 2 and Figure 6 In a preferred embodiment, the stabilizing mechanism comprises a first connecting plate 5 arranged at the middle of the bottom of the antibacterial cabin body 1, and two hydraulic push rods 4 are fixed to the bottom of the antibacterial cabin body 1, and the output ends of the two hydraulic push rods 4 are fixed to the top of the first connecting plate 5, and a rubber plate 6 is fixed to the bottom of the first connecting plate 5, and a plurality of anti-skid grooves are formed in the bottom of the rubber plate 6, driving the two hydraulic push rods 4 to drive the first connecting plate 5 and the rubber plate 6 to descend until the rubber plate 6 is in close contact with the ground, thereby increasing the moving resistance of the antibacterial cabin body 1, and improving the stability of the device.

[0029] The working principle of this embodiment is as follows: during use, the device is moved to the specified position by the four universal wheels 2, and the two hydraulic push rods 4 are driven to simultaneously drive the first connecting plate 5 and the rubber plate 6 to descend until the rubber plate 6 is in close contact with the ground, thereby increasing the moving resistance of the antibacterial cabin body 1 and improving the placement stability of the device. When it is necessary to hang a towel, the two doors 3 are opened, the power switch of the second motor 22 is turned on, the second motor 22 is driven to drive the screw rod 8 to rotate, and the rectangular frame 11, the slider 10 and the slide seat 9 drive the support plate 14 to move, thereby driving the rotating shaft 15 to move to the edge of the door 3. There is no need for workers to enter the antibacterial cabin body 1 to hang towels, which prevents bacteria and pollutants in the external environment from being brought into the antibacterial cabin body 1, preventing contamination of the air and surface in the antibacterial cabin body 1, thereby reducing the risk of bacterial growth and improving the antibacterial effect. At the same time, it is convenient for workers to take and put towels. When hanging towels, the squeezing plate 18 is moved downward so that the squeezing plate 18 gradually moves away from the second connecting plate 17. When the towel is hung on the top of the squeezing plate 18, the two springs 20 are in a compressed state. After completion, the squeezing plate 18 is released. Under the reaction of the two compressed springs 20, the squeezing plate 18 moves toward the second connecting plate 17. At this time, the towel is tightly fixed between the second connecting plate 17 and the squeezing plate 18 to prevent it from falling. After the hanging is completed, the second motor 22 is driven to drive the screw rod 8 to rotate in the opposite direction, and the support plate 14 and the rotating shaft 15 are moved to the inside of the antibacterial cabin body 1. At this time, all the towels are inside the antibacterial cabin body 1, the cabin door 3 is closed, and the power switches of the electric heating wire 12 and the ultraviolet lamp 13 are turned on. When the electric heating wire 12 is energized, the surface temperature rises rapidly, and the air inside the antibacterial cabin body 1 is heated, thereby preliminarily achieving the sterilization of the towels. The towels are further sterilized and disinfected by the multiple ultraviolet lamps 13. At the same time, the power switch of the first motor 16 is turned on, driving the first motor 16 to drive the rotating shaft 15 to rotate, thereby driving the towels to rotate, thereby improving the sterilization effect and reducing the problem of local dead angles.

[0030] For purposes of the description hereinafter, the terms "upper", "lower", "right", "left", "rear", "front", "vertical" and "horizontal" as can be perceived herein relative to the accompanying drawings refer to the orientation of the components being described. However, it is to be understood that the exemplary embodiments described herein can assume different alternative orientations, except where expressly specified to the contrary. It is also to be understood that the specific devices illustrated in the attached drawings, and described in the following specification are exemplary embodiments only and should not be typically construed as limiting the scope of the present application.

[0031] It is also important to note that the term "or" as used herein is intended to mean any possible combination of the enumerated items. For example, a list of items joined by "or" means any of the items can be present alone, or any combination of the items can be present. As used herein, the term "include" means include without limitation.

[0032] It is also important to note that the term "or" as used herein is intended to mean any possible combination of the enumerated items. For example, a list of items joined by "or" means any of the items can be present alone, or any combination of the items can be present. As used herein, the term "include" means include without limitation.

[0033] The preferred embodiments of the present application have been disclosed herein and are intended to be used as examples. There can be many variations made to the preferred embodiments while still remaining within the spirit and scope of the present application. Therefore, the above disclosure should not be interpreted as limiting the scope of the present application but merely as exemplifying the best mode thereof.

Claims

1. An antibacterial cabin with a light-irradiated antibacterial structure, comprising an antibacterial cabin body (1), characterized in that: Universal wheels (2) are installed at the four corners of the bottom of the antibacterial cabin body (1), two doors (3) are hinged at one end of the outer wall of the antibacterial cabin body (1), a support plate (14) is provided inside the antibacterial cabin body (1), a moving mechanism for moving the support plate (14) is provided on the inner wall of the antibacterial cabin body (1), a rotating shaft (15) is rotatably connected to the middle of the top of the support plate (14), a rotating mechanism for rotating the rotating shaft (15) is provided at the bottom of the support plate (14), and the side wall of the rotating shaft (15) is provided. A plurality of second connecting plates (17) are fixed in a circular shape at equal distances, and an extrusion plate (18) is provided at the bottom of each of the plurality of second connecting plates (17). Both ends of the bottom of each of the plurality of extrusion plates (18) are provided with a locking mechanism for locking the extrusion plate (18). A plurality of ultraviolet lamp tubes (13) are fixed in a linear shape at equal distances on the top of the antibacterial cabin body (1), and both ends of the inner side wall of the antibacterial cabin body (1) are provided with a heating mechanism. A stabilizing mechanism for stabilizing the antibacterial cabin body (1) is provided at the bottom of the antibacterial cabin body (1).

2. The antibacterial cabin with a light-irradiated antibacterial structure according to claim 1, characterized in that: The moving mechanism includes a slide seat (9), one end of the inner wall of the antibacterial cabin body (1) is fixed with the slide seat (9), the side wall of the slide seat (9) is slidably connected with a slider (10), the other end of the inner wall of the antibacterial cabin body (1) is fixed with two support plates (7), the inner walls of the two support plates (7) are rotatably connected with the same screw rod (8), and one end of the screw rod (8) passes through the outer wall of one of the support plates (7), the side wall of the screw rod (8) is sleeved with a rectangular frame (11), the two ends of the support plate (14) are respectively fixed to the slider (10) and the rectangular frame (11), and the outer wall of one of the support plates (7) of the universal wheel (2) is fixed with a second motor (22), and the output shaft of the second motor (22) is fixed to one end of the screw rod (8).

3. The antibacterial cabin with a light-irradiated antibacterial structure according to claim 1, characterized in that: The rotating mechanism comprises a first motor (16), the first motor (16) is fixed to the bottom of the support plate (14), and the output shaft of the first motor (16) and the rotating shaft (15) are fixed.

4. The antibacterial cabin with a light-irradiated antibacterial structure according to claim 1, characterized in that: The locking mechanism comprises a connecting rod (19), wherein the connecting rod (19) is fixed to one end of the bottom of the second connecting plate (17), and one end of the connecting rod (19) passes through the bottom of the extrusion plate (18), and an anti-drop cap (21) is fixed to one end of the connecting rod (19), and a spring (20) is sleeved on the side wall of the connecting rod (19), and the spring (20) is located between the extrusion plate (18) and the anti-drop cap (21).

5. The antibacterial cabin with a light-irradiated antibacterial structure according to claim 1, characterized in that: The heating mechanism comprises a rectangular frame (11), the rectangular frame (11) is fixed on the inner wall of the antibacterial cabin body (1), and the rectangular frame (11) is located above the support plate (14), and an electric heating wire (12) is fixed to the inner wall of the rectangular frame (11).

6. The antibacterial cabin with a light-irradiated antibacterial structure according to claim 1, characterized in that: The stabilizing mechanism comprises a first connecting plate (5), which is arranged at the middle of the bottom of the antibacterial cabin body (1), two hydraulic push rods (4) are fixed to the bottom of the antibacterial cabin body (1), and the output ends of the two hydraulic push rods (4) are fixed to the two ends of the top of the first connecting plate (5), and a rubber plate (6) is fixed to the bottom of the first connecting plate (5), and a plurality of anti-slip grooves are provided at the bottom of the rubber plate (6).