Bupleurum chinense disinfection device

By designing a disinfection device for Artemisia argyi with multiple surrounding smoke outlets and adjustable smoke rings, and utilizing the principle of three-dimensional diffusion, the problem of smoke accumulation in traditional devices is solved, achieving rapid and uniform diffusion of smoke and improving disinfection efficiency.

CN224307607UActive Publication Date: 2026-06-02QICHUN COUNTY AIZAI SHUIYUNJIAN AI PRODUCTS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QICHUN COUNTY AIZAI SHUIYUNJIAN AI PRODUCTS CO LTD
Filing Date
2025-09-11
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Traditional mugwort disinfection devices emit smoke through a single direct smoke outlet, causing the smoke to accumulate along a fixed path, making it difficult to quickly fill a large space. The sterilization concentration is insufficient in areas far from the smoke outlet, affecting disinfection efficiency.

Method used

A disinfection device for Artemisia argyi was designed, which uses multiple sets of evenly surrounding smoke outlets and adjustable smoke rings. Combining the principles of three-dimensional diffusion and air convection, a continuous channel for delivering Artemisia argyi smoke is formed through the heating box, outer cylinder, inner cylinder and smoke ring, so as to achieve all-round diffusion of Artemisia argyi smoke.

Benefits of technology

It achieves rapid and uniform diffusion of moxa smoke, solves the problem of moxa smoke accumulation in traditional devices, improves disinfection efficiency, and ensures sterilization concentration in areas far from the smoke outlet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to disinfection equipment technical field discloses a kind of bupleurum smithii disinfection devices, including heating box, heating element is installed in the cavity inner wall of heating box, and the side of heating box is equipped with heat removal passage, and the upper end of heating box is installed with smoke outlet assembly, and smoke outlet assembly includes the outer cylinder that one end is communicated in the inner chamber of heating box, the inner wall sliding connection of outer cylinder has inner sleeve, the inner chamber of inner sleeve is communicated in the inner chamber of heating box, and the upper wall of inner sleeve is fixedly connected with cover plate main body, and the outer wall of inner sleeve is sleeved with smoke ring, and the outer wall of smoke ring is equipped with multiple smoke outlets, and multiple smoke outlets are evenly distributed around the outer wall of smoke ring, and are all communicated in the inner chamber of inner sleeve, and the smoke of heating generation enters the inner chamber of inner sleeve through the outer cylinder that heating box upper end is communicated, and then pass through the multiple evenly distributed smoke outlets of smoke ring on the outer wall of inner sleeve, and radiate and diffuse to the four corners based on three-dimensional diffusion and air convection principle, and fill larger space quickly.
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Description

Technical Field

[0001] This utility model relates to the field of disinfection equipment technology, and in particular to a disinfection device for Artemisia argyi. Background Technology

[0002] Artemisia argyi, a traditional Chinese medicinal herb, produces smoke containing various active ingredients such as eucalyptol, thujone, and α-thujone, which have broad-spectrum antibacterial, antiviral, and air-purifying effects. Therefore, disinfection devices based on Artemisia argyi are widely used in homes, medical settings, and aquaculture. Currently, Artemisia argyi disinfection devices on the market are mainly divided into two types: combustion-type and heating-and-volatilization-type. Their core function is to achieve disinfection by promoting the release and diffusion of the effective components of Artemisia argyi into the target space. However, traditional Artemisia argyi disinfection devices often use a single, direct smoke outlet. This single-outlet design is limited by airflow direction, causing the smoke to tend to accumulate along a fixed path, making it difficult to quickly fill a large space. This results in insufficient sterilization concentration in areas far from the smoke outlet, affecting disinfection efficiency. Utility Model Content

[0003] The technical problem to be solved by this utility model is that the existing technology has the disadvantage that the single smoke outlet device is limited by the airflow direction, the smoke of moxa tends to accumulate along a fixed path and is difficult to quickly fill a large space, resulting in insufficient sterilization concentration in areas far from the smoke outlet and affecting the disinfection efficiency. To this end, we propose a Qi Ai disinfection device.

[0004] To achieve the above objectives, this application adopts the following technical solution: a mugwort disinfection device, comprising a heating box and a control panel installed on the outer wall of the heating box. A heating element is installed on the inner wall of the heating box, and a heat exhaust channel is opened on one side of the heating box. A sliding plate is slidably arranged on the outer wall of the heat exhaust channel. A smoke exhaust assembly is installed at the upper end of the heating box. The smoke exhaust assembly includes an outer cylinder with one end connected to the inner cavity of the heating box. An inner cylinder is slidably connected to the inner wall of the outer cylinder. The inner cavity of the inner cylinder is connected to the inner cavity of the heating box. A cover plate body is fixedly connected to the upper wall of the inner cylinder. A smoke exhaust ring is sleeved on the outer wall of the inner cylinder. Multiple sets of smoke exhaust ports are opened on the outer wall of the smoke exhaust ring. The multiple sets of smoke exhaust ports are evenly distributed around the outer wall of the smoke exhaust ring and are all connected to the inner cavity of the inner cylinder.

[0005] Furthermore, the smoke ring is a component made of rubber, and the diameter of the smoke ring is larger than the inner diameter of the outer cylinder. The rubber material has high elasticity. Through the interference fit design with a diameter larger than the inner diameter of the outer cylinder, the smoke ring can produce elastic deformation and fit tightly against the inner wall when it is embedded in the outer cylinder.

[0006] Furthermore, a threaded rod is internally threaded on one side of the cover plate body, and a motor is fixedly connected to the lower end of the threaded rod. The motor is installed on the side wall of the outer cylinder. The threaded engagement between the threaded rod and the cover plate body converts the rotational motion into the linear motion of the cover plate body. Thus, through the fixed connection between the cover plate body and the inner cylinder, the height of the smoke ring can be adjusted and the opening and closing state of the smoke outlet can be controlled synchronously.

[0007] Furthermore, a slide rod body is slidably connected inside the cover plate body on the side away from the threaded rod, and the lower end of the slide rod body is fixedly connected to the upper wall of the outer cylinder.

[0008] Furthermore, the smoke ring has multiple sets of elastic cavities inside, which increases the deformation space of the smoke ring based on the principle of cavity elasticity enhancement.

[0009] Furthermore, a rubber support block is fixedly connected to the inner wall of the elastic cavity, which can enhance the structural strength of the elastic cavity and prevent the smoke ring from deforming excessively due to insufficient strength caused by the cavity design.

[0010] The technical effects and advantages of this utility model are as follows:

[0011] In this invention, the smoke generated by heating enters the inner cavity of the inner tube through the outer tube connected to the upper end of the heating box. Then, it radiates and diffuses in all directions through multiple sets of evenly surrounding smoke outlets on the outer wall of the inner tube, based on the principles of three-dimensional diffusion and air convection. This quickly fills a large space and solves the problem that traditional Qi Ai disinfection devices mostly use a single smoke outlet for direct injection. Devices with a single smoke outlet are limited by the airflow direction, and the smoke tends to accumulate along a fixed path, making it difficult to quickly fill a large space. This results in insufficient sterilization concentration in areas far from the smoke outlet, affecting disinfection efficiency. Attached Figure Description

[0012] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts:

[0013] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the overall planar structure of this utility model;

[0015] Figure 3 This is a schematic diagram of the smoke output assembly structure of this utility model;

[0016] Figure 4 This is a schematic diagram of the internal structure of the smoke ring of this utility model.

[0017] Legend: 1. Heating box; 2. Control panel; 3. Heating element; 4. Heat exhaust channel; 5. Smoke exhaust assembly; 51. Outer cylinder; 52. Inner cylinder; 53. Cover plate body; 54. Smoke exhaust ring; 55. Smoke outlet; 56. Threaded rod; 57. Motor; 58. Slide rod body; 59. Elastic cavity; 510. Rubber support block. Detailed Implementation

[0018] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0019] Reference Figures 1-4 As shown, in order to solve the problem that traditional mugwort disinfection devices mostly use a single smoke outlet for direct smoke emission, which is limited by the airflow direction and the mugwort smoke tends to accumulate along a fixed path, making it difficult to quickly fill a large space, resulting in insufficient sterilization concentration in areas far from the smoke outlet and affecting disinfection efficiency, the following preferred technical solution is provided:

[0020] A disinfection device for Artemisia argyi includes a heating box 1 and a control panel 2. The control panel 2 is installed on the outer wall of the heating box 1. A door is axially connected to the outer wall of the heating box 1. A heating element 3 is installed on the inner wall of the heating box 1. A heat exhaust channel 4 is opened on one side of the heating box 1. A sliding plate is slidably installed on the outer wall of the heat exhaust channel 4. A smoke exhaust assembly 5 is installed at the upper end of the heating box 1. The smoke exhaust assembly 5 includes an outer cylinder 51 with one end connected to the inner cavity of the heating box 1. An inner cylinder 52 is slidably connected to the inner wall of the outer cylinder 51. The inner cavity of the inner cylinder 52 is connected to the inner cavity of the heating box 1. A cover plate body 53 is fixedly connected to the upper wall of the inner cylinder 52. A smoke exhaust ring 54 is sleeved on the outer wall of the inner cylinder 52. Multiple sets of smoke exhaust ports 55 are opened on the outer wall of the smoke exhaust ring 54. The multiple sets of smoke exhaust ports 55 are evenly distributed around the outer wall of the smoke exhaust ring 54 and are all connected to the inner cavity of the inner cylinder 52. The heating box 1, outer cylinder 51, inner cylinder 52 and smoke ring 54 form a continuous smoke delivery channel to ensure the smooth flow of the smoke generated by heating. At the same time, multiple sets of surrounding smoke outlets 55 break the airflow direction limitation of a single smoke outlet based on the principle of three-dimensional diffusion, so that the smoke can radiate to all directions at the same time. Multiple sets of evenly surrounding smoke outlets 55 replace the traditional single smoke outlet, realize all-round smoke output, can quickly fill a large space, and avoid the smoke from gathering along a fixed path.

[0021] Furthermore, the smoke ring 54 is a component made of rubber, and its diameter is larger than the inner diameter of the outer casing 51. Rubber has high elasticity, and through an interference fit design with a diameter larger than the inner diameter of the outer casing 51, the smoke ring 54 can undergo elastic deformation and tightly fit the inner wall when embedded in the outer casing 51. Simultaneously, rubber, based on its molecular structure stability, possesses good wear resistance and can resist sliding friction loss. The rubber material also has good elasticity and sealing properties; with this fit, the smoke ring 54 and the inner wall of the outer casing 51 are tightly fitted, effectively preventing the smoke from leaking out from the gap between them.

[0022] Furthermore, a threaded rod 56 is threadedly connected to one side of the cover plate body 53, and a motor 57 is fixedly connected to the lower end of the threaded rod 56. The motor 57 is installed on the side wall of the outer cylinder 51. The electric motor 57 converts electrical energy into mechanical energy to drive the threaded rod 56 to rotate. Based on the principle of threaded transmission, the threaded engagement between the threaded rod 56 and the cover plate body 53 converts the rotational motion into the linear motion of the cover plate body 53. Then, through the fixed connection between the cover plate body 53 and the inner cylinder 52, the height of the smoke ring 54 is adjusted and the opening and closing state of the smoke outlet 55 is controlled synchronously. When the electric motor 57 drives the threaded rod 56 to rotate, the cover plate body 53 is moved up and down through the threaded transmission, thereby controlling the height of the inner cylinder 52 and the smoke ring 54. When moving upward, the smoke ring 54 is separated from the outer cylinder 51 along with the inner cylinder 52, and the smoke outlet 55 is fully opened to allow the smoke to diffuse. When moving downward, the smoke ring 54 is embedded in the outer cylinder 51, and its rubber material is tightly fitted with the inner wall of the outer cylinder 51 to achieve the sealing and closure of the smoke outlet 55, preventing the smoke from leaking or external impurities from entering.

[0023] Furthermore, a slide rod body 58 is slidably connected inside the cover plate body 53 on the side away from the threaded rod 56, and the lower end of the slide rod body 58 is fixedly connected to the upper wall of the outer sleeve 51. The slide rod body 58 restricts the rotational freedom of the cover plate body 53 through the guiding constraint principle, allowing it to move up and down along the slide rod axis only, avoiding deviation caused by torque during threaded transmission, ensuring the coaxiality of the inner sleeve 52 and the outer sleeve 51, and ensuring the precise insertion or disengagement of the smoke ring 54.

[0024] Furthermore, the smoke ring 54 has multiple sets of elastic cavities 59 inside. The elastic cavities 59 increase the deformation space of the smoke ring 54 based on the principle of cavity elastic enhancement, so that it can better adapt to the slight curvature difference of the inner wall when it is embedded in the outer sleeve 51. At the same time, the cavity structure can disperse the compressive stress and reduce the loss caused by excessive local deformation.

[0025] Furthermore, a rubber support block 510 is fixedly connected to the inner wall of the elastic cavity 59. The rubber support block 510 can not only enhance the structural strength of the elastic cavity 59 and prevent the smoke ring 54 from being excessively deformed due to insufficient strength caused by the cavity design, but also, with the elasticity of the rubber material working together with the elastic cavity 59, provide a restoring force to restore the original shape after the smoke ring 54 is separated from the outer sleeve 51, ensuring the smooth opening of the smoke outlet 55.

[0026] Specifically, using the heating box 1 as a carrier, the heating element 3 on the inner wall of the chamber is controlled by the control panel 2 to convert electrical energy into heat energy, so that the mugwort is heated and produces smoke. The smoke generated by heating enters the inner cavity of the inner tube 52 through the outer tube 51 connected to the upper end of the heating box 1, and then radiates and diffuses in all directions through multiple sets of evenly surrounding smoke outlets 55 on the smoke outlet ring 54 on the outer wall of the inner tube 52, based on the principle of three-dimensional diffusion and air convection, quickly filling a large space. This solves the problem that the traditional mugwort disinfection device is mostly a single smoke outlet direct injection method. The single smoke outlet device is limited by the airflow direction, and the mugwort smoke tends to accumulate along a fixed path, making it difficult to quickly fill a large space. This results in insufficient sterilization concentration in areas far from the smoke outlet, affecting the disinfection efficiency.

[0027] The switching between opening and sealing of the smoke outlet 55 is achieved by the rotation of the threaded rod 56 driven by the motor 57. Based on the principle of threaded transmission, the threaded rod 56 drives the cover plate body 53, the inner cylinder 52, and the smoke outlet ring 54 to move up and down. When rising, the smoke outlet ring 54 disengages from the outer cylinder 51 to open the smoke outlet 55. When falling, the rubber smoke outlet ring 54 is inserted into the outer cylinder 51 through an interference fit to achieve sealing. The sliding rod body 58 on one side of the cover plate body 53 ensures precise movement through guide constraints. The elastic cavity 59 and the rubber support block 510 inside the smoke outlet ring 54 enhance and support through cavity elasticity, strengthen the sealing performance and prevent deformation. At the same time, the heat exhaust channel 4 on one side of the heating box 1 balances the temperature inside the cavity through the principle of heat conduction, ensuring stable operation of the device, and finally forming a complete and efficient disinfection system.

[0028] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A disinfection device for Artemisia argyi, characterized in that, The device includes a heating chamber and a control panel installed on the outer wall of the heating chamber. Heating elements are installed on the inner wall of the heating chamber. A heat exhaust channel is provided on one side of the heating chamber. A sliding plate is slidably provided on the outer wall of the heat exhaust channel. A smoke exhaust assembly is installed at the upper end of the heating chamber. The smoke exhaust assembly includes an outer cylinder with one end connected to the inner cavity of the heating chamber. An inner cylinder is slidably connected to the inner wall of the outer cylinder. The inner cavity of the inner cylinder is connected to the inner cavity of the heating chamber. A cover plate body is fixedly connected to the upper wall of the inner cylinder. A smoke exhaust ring is sleeved on the outer wall of the inner cylinder. Multiple sets of smoke exhaust ports are opened on the outer wall of the smoke exhaust ring. The multiple sets of smoke exhaust ports are evenly distributed around the outer wall of the smoke exhaust ring and are all connected to the inner cavity of the inner cylinder.

2. The Artemisia argyi disinfection device according to claim 1, characterized in that: The smoke ring is a component made of rubber, and the diameter of the smoke ring is larger than the inner diameter of the outer casing.

3. The Artemisia argyi disinfection device according to claim 1, characterized in that: A threaded rod is internally threaded on one side of the cover plate body, and an electric motor is fixedly connected to the lower end of the threaded rod. The electric motor is installed on the side wall of the outer cylinder.

4. The Artemisia argyi disinfection device according to claim 3, characterized in that: The cover plate body is slidably connected to a slide rod body on the side away from the threaded rod, and the lower end of the slide rod body is fixedly connected to the upper wall of the outer cylinder.

5. The Artemisia argyi disinfection device according to claim 1, characterized in that: The smoke ring has multiple sets of elastic cavities inside.

6. The Artemisia argyi disinfection device according to claim 5, characterized in that: A rubber support block is fixedly connected to the inner wall of the elastic cavity.