Movable disinfection device

By creating high pressure inside the disinfection tank and controlling the spraying of disinfectant using a disinfection spray gun, the problem of frequent pump starts in existing equipment is solved, achieving a convenient intermittent disinfection spraying effect.

CN223490123UActive Publication Date: 2025-10-31YIBIN LAONIU ANIMAL HUSBANDRY CO LTD
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Patent Information

Application Number
CN202422385903.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-10-31
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

Existing disinfection equipment requires the water pump to be constantly started and stopped when spraying disinfectant intermittently, making it inconvenient to carry out intermittent disinfectant spraying.

Method used

A pressurizing mechanism is used to create high pressure inside the disinfection tank, and the spraying of disinfectant is controlled by a disinfection spray gun. It is only necessary to control the pressure inside the disinfection tank within a specified range, thus avoiding the need to restart the water pump every time it is sprayed.

Benefits of technology

It enables convenient intermittent spraying of disinfectant, avoids the problem of frequent pump starts, and improves the convenience and efficiency of operation.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223490123U_ABST
    Figure CN223490123U_ABST
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Abstract

The utility model relates to the field of disinfection equipment, and discloses a movable disinfection device which comprises a movable base placed on the ground; the disinfection tank is mounted on the movable base; the pressurizing mechanism is arranged at the lower part of the disinfection tank and is used for pressurizing the interior of the disinfection tank; the disinfection spray gun is connected with a hose, and the hose is communicated with the disinfection tank. According to the utility model, high pressure is formed in the disinfection tank through the pressurizing mechanism, the disinfection spray gun is operated to control the spraying of the disinfectant, and only the pressure in the disinfection tank needs to be controlled to be within a specified range, so that the situation that a water pump needs to be restarted during spraying every time in a transmission scheme is avoided, and the problem that the disinfectant is inconvenient to spray intermittently is solved.
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Description

Technical Field

[0001] This utility model relates to the field of disinfection equipment, specifically to a portable disinfection device. Background Technology

[0002] In some disinfection processes, disinfection is achieved by spraying disinfectant. Existing disinfection equipment includes a workbench with a mixing tank above it for thoroughly mixing disinfectant and water. Above the mixing tank is a water tank, and a disinfectant tank is mounted on the outer wall of the water tank. The outlet of a water pump is connected to a disinfection spray mechanism via a water outlet pipe. The equipment also includes a disinfection spray carrier plate mounted above the workbench for installing the disinfection spray mechanism. A telescopic support rod is hinged to the center of the carrier plate via a folding connector. The telescopic support rod is fixedly connected to a nozzle support, which is rotatably mounted on a rotating disc, which is fixedly positioned above the workbench. This disinfection equipment can thoroughly mix disinfectant and water, maximizing the effectiveness of the disinfectant.

[0003] Existing disinfection equipment has the following problems: because it uses a water pump to pump the disinfectant to the nozzle, when spraying disinfectant intermittently, the water pump needs to be started and stopped repeatedly, which makes it inconvenient to spray disinfectant intermittently.

[0004] Based on the above situation, there is an urgent need for a portable disinfection device to solve the problem of the inconvenience of intermittent spraying of disinfectant. Utility Model Content

[0005] The purpose of this invention is to address the problem that existing disinfection equipment uses a water pump to deliver disinfectant to the nozzles. When spraying disinfectant intermittently, the water pump needs to be constantly started and stopped, making it inconvenient to spray disinfectant intermittently. This invention solves the problem of inconvenience in intermittent disinfectant spraying.

[0006] The technical solution of this utility model is as follows:

[0007] A portable disinfection device, characterized in that it comprises:

[0008] The mobile base is placed on the ground;

[0009] The disinfection tank is mounted on the mobile base;

[0010] A pressurizing mechanism is located at the bottom of the disinfection tank and is used to pressurize the inside of the disinfection tank;

[0011] A disinfection spray gun, wherein the disinfection spray gun is connected to a hose and the hose is connected to a disinfection tank.

[0012] Existing disinfection equipment uses a water pump to deliver disinfectant to the nozzle. When spraying disinfectant intermittently, the water pump needs to be constantly started and stopped, making it inconvenient to spray disinfectant intermittently. In this solution, the pressurizing mechanism creates high pressure inside the disinfection tank, and the disinfection spray gun controls whether the disinfectant is sprayed. It is only necessary to control the pressure inside the disinfection tank within a specified range, avoiding the need to restart the water pump every time spraying is performed, thus solving the problem of inconvenience for intermittent disinfectant spraying.

[0013] Furthermore, this solution does not exclusively limit the specific structure of the pressurizing mechanism. One feasible solution is that the pressurizing mechanism includes a one-way air intake component and a cylinder connected to the one-way air intake component. A piston is installed inside the cylinder. When this solution is adopted, the piston moves back and forth along the axial direction of the cylinder, which can deliver air unidirectionally into the disinfection tank, thereby creating high pressure inside the disinfection tank.

[0014] Furthermore, this solution does not exclusively limit the specific structure of the one-way air intake assembly. One feasible solution is as follows: the one-way air intake assembly includes two support frames and elastic valves mounted on the support frames. When this solution is adopted, when the piston moves away from the one-way air intake assembly, the elastic valve near the sterilization tank closes and the other elastic valve is pushed open by the external air, thereby drawing in air. When the piston moves away from the one-way air intake assembly, the elastic valve away from the sterilization tank is pressed and closed, and the other elastic valve is pushed open, thus delivering the air in the cylinder into the sterilization tank. This process is repeated to increase the pressure inside the sterilization tank.

[0015] Furthermore, to facilitate the operation of the piston, one feasible solution is that the piston is connected to an operating rod. With this solution, the piston can be moved conveniently and quickly via the operating rod.

[0016] Furthermore, to facilitate monitoring of the pressure inside the disinfection tank, one feasible solution is to install a pressure gauge on the disinfection tank. With this solution, the pressure gauge can be used to easily monitor the pressure inside the disinfection tank.

[0017] Furthermore, this solution is not limited to the specific structure of the mobile base. One feasible solution is that the mobile base includes a flat plate connected to the sterilization tank, and a battery pack and casters driven by the battery pack are installed on the flat plate. When this solution is adopted, the casters are driven to rotate by the battery pack, thereby moving the flat plate and the sterilization tank on the flat plate.

[0018] Compared with existing technologies, the beneficial effects of this utility model are:

[0019] First, by using the pressurizing mechanism to create high pressure inside the disinfection tank and operating the disinfection spray gun to control whether the disinfectant is sprayed, it is only necessary to control the pressure inside the disinfection tank within a specified range, thus avoiding the need to restart the water pump every time spraying in the transmission scheme and solving the problem of inconvenience for intermittent spraying of disinfectant.

[0020] Second, since the one-way air intake assembly includes two support frames and elastic valves mounted on the support frames, when the piston moves away from the one-way air intake assembly, the elastic valve near the disinfection tank closes and the other elastic valve is pushed open by the external air, thereby drawing in air. When the piston moves away from the one-way air intake assembly, the elastic valve away from the disinfection tank is pressed and closed, and the other elastic valve is pushed open, thus transporting the air in the cylinder into the disinfection tank. This process is repeated, thereby increasing the pressure inside the disinfection tank. Attached Figure Description

[0021] Figure 1 This is a first-view structural diagram of an embodiment of the present utility model;

[0022] Figure 2 This is a schematic diagram of the overall second-view structure of an embodiment of the present utility model;

[0023] Figure 3 for Figure 2 Enlarged view of point A in the image;

[0024] Figure 4 This is a cross-sectional schematic diagram of an embodiment of the present utility model;

[0025] Figure 5 for Figure 4 Enlarged view of point B in the image.

[0026] Figure label:

[0027] 1. Movable base; 2. Disinfection tank; 3. Pressurization mechanism; 4. Disinfection spray gun;

[0028] 11. Flat panel; 12. Battery pack; 13. Casters;

[0029] 21. Pressure gauge; 22. Sealing cap;

[0030] 31. One-way air intake assembly; 32. Cylinder; 33. Piston; 34. Operating lever;

[0031] 311. Support frame; 312. Resilient valve disc;

[0032] 41. Hose. Detailed Implementation

[0033] It should be noted that relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element.

[0034] The features and performance of this utility model will be further described in detail below with reference to the embodiments.

[0035] Example:

[0036] Please refer to Figure 1 , Figure 2 and Figure 3 A portable disinfection device, characterized in that it comprises:

[0037] Movable base 1, placed on the ground;

[0038] Disinfection tank 2 is installed on the mobile base 1;

[0039] The pressurizing mechanism 3 is located at the bottom of the disinfection tank 2 and is used to pressurize the inside of the disinfection tank 2;

[0040] Disinfection spray gun 4, disinfection spray gun 4 is connected to hose 41 and hose 41 is connected to disinfection tank 2.

[0041] Existing disinfection equipment uses a water pump to deliver disinfectant to the nozzles. When spraying disinfectant intermittently, the water pump needs to be constantly started and stopped, making it inconvenient to spray disinfectant intermittently. In this solution, a pressurizing mechanism 3 creates high pressure inside the disinfection tank 2, and the disinfection spray gun 4 controls whether the disinfectant is sprayed. It is only necessary to control the pressure inside the disinfection tank 2 within a specified range, avoiding the need to restart the water pump every time spraying in the transmission scheme, thus solving the problem of inconvenience for intermittent disinfectant spraying.

[0042] Reference Figure 4 and Figure 5This solution does not limit the specific structure of the pressurizing mechanism 3. One feasible solution is that the pressurizing mechanism 3 includes a one-way air intake component 31 and a cylinder 32 connected to the one-way air intake component 31. A piston 33 is installed inside the cylinder 32. When this solution is adopted, the piston 33 moves back and forth along the axial direction of the cylinder 32, which can deliver air unidirectionally to the disinfection tank 2, thereby forming a high pressure inside the disinfection tank 2.

[0043] This solution does not exclusively limit the specific structure of the one-way air intake assembly 31. One feasible solution is as follows: the one-way air intake assembly 31 includes two support frames 311 and elastic valve discs 312 mounted on the support frames 311. When this solution is adopted, when the piston 33 moves away from the one-way air intake assembly 31, the elastic valve disc 312 near the disinfection tank 2 closes and the other elastic valve disc 312 is pushed open by the external air, thereby drawing in air. When the piston 33 moves away from the one-way air intake assembly 31, the elastic valve disc 312 away from the disinfection tank 2 is pressed and closed, and the other elastic valve disc 312 is pushed open, thus transporting the air in the cylinder 32 to the disinfection tank 2. This process is repeated to increase the pressure inside the disinfection tank 2.

[0044] To facilitate the operation of piston 33, one feasible solution is to connect piston 33 to operating rod 34. With this solution, piston 33 can be moved conveniently and quickly via operating rod 34.

[0045] Reference Figure 4 In order to facilitate monitoring of the pressure inside the disinfection tank 2, one feasible solution is to install a pressure gauge 21 on the disinfection tank 2. When this solution is adopted, the pressure gauge 21 can be used to easily monitor the pressure inside the disinfection tank 2.

[0046] Reference Figure 2 Optionally, the disinfection tank 2 is equipped with a sealing cap 22, which allows for the addition of disinfectant solution to the disinfection tank 2 after the sealing cap 22 is opened.

[0047] This solution does not limit the specific structure of the mobile base 1. One feasible solution is: the mobile base 1 includes a flat plate 11 connected to the disinfection tank 2. A battery pack 12 and casters 13 driven by the battery pack 12 are installed on the flat plate. When this solution is adopted, the casters 13 are driven to rotate by the battery pack 12, thereby driving the flat plate 11 and the disinfection tank 2 on the flat plate 11 to move.

[0048] To address the issue of inconvenience in intermittent disinfectant spraying, this solution uses a pressurizing mechanism 3 to create high pressure within the disinfection tank 2, and operates the disinfection spray gun 4 to control whether or not the disinfectant is sprayed. This only requires controlling the pressure within the disinfection tank 2 within a specified range, avoiding the need to restart the water pump each time spraying is performed, thus solving the problem of inconvenience in intermittent disinfectant spraying.

[0049] To increase the pressure inside the disinfection tank 2, in this design, the one-way air intake assembly 31 includes two support frames 311 and elastic valve discs 312 mounted on the support frames 311. When the piston 33 moves away from the one-way air intake assembly 31, the elastic valve disc 312 closer to the disinfection tank 2 closes and the other elastic valve disc 312 is opened by external air, thereby drawing in air. When the piston 33 moves away from the one-way air intake assembly 31, the elastic valve disc 312 further away from the disinfection tank 2 is closed by pressure and the other elastic valve disc 312 is opened, thus transporting the air inside the cylinder 32 into the disinfection tank 2. This process is repeated to increase the pressure inside the disinfection tank 2.

[0050] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A portable disinfection device, characterized in that, include: The mobile base (1) is placed on the ground; The disinfection tank (2) is installed on the mobile base (1); A pressurizing mechanism (3) is provided at the lower part of the disinfection tank (2) and is used to pressurize the inside of the disinfection tank (2); Disinfection spray gun (4), the disinfection spray gun (4) is connected to a hose (41) and the hose (41) is connected to the disinfection tank (2).

2. The portable disinfection device according to claim 1, characterized in that, The pressurization mechanism (3) includes a one-way air intake assembly (31) and a cylinder (32) connected to the one-way air intake assembly (31), wherein a piston (33) is installed inside the cylinder (32).

3. A portable disinfection device according to claim 2, characterized in that, The one-way air intake assembly (31) includes two support frames (311) and a resilient valve disc (312) mounted on the support frames (311).

4. A portable disinfection device according to claim 2, characterized in that, The piston (33) is connected to an operating rod (34).

5. A portable disinfection device according to claim 1, characterized in that, A pressure gauge (21) is installed on the disinfection tank (2).

6. A portable disinfection device according to claim 1, characterized in that, The mobile base (1) includes a flat plate (11) connected to the sterilization tank (2), on which a battery pack (12) and casters (13) driven by the battery pack (12) are mounted.