一种空气等离子体装置及空调器

By introducing a dielectric barrier discharge plasma generating component with multiple parallel plate electrodes and various air filters into the air conditioner, the problem of air conditioners being unable to purify harmful substances under normal pressure is solved, achieving the effects of efficient air purification and device simplification.

CN224521241UActive Publication Date: 2026-07-17NAT INST OF ADVANCED MEDICAL DEVICES SHENZHEN

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NAT INST OF ADVANCED MEDICAL DEVICES SHENZHEN
Filing Date
2025-06-18
Publication Date
2026-07-17

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Abstract

本实用新型公开了一种空气等离子体装置,其包括第一绝缘外壳、过滤器组件以及介质阻挡放电等离子体发生组件,第一绝缘外壳的内部形成容置空间;过滤器组件设置于容置空间内;介质阻挡放电等离子体发生组件设置于容置空间内,并位于过滤器组件的前侧,介质阻挡放电等离子体发生组件包括多个板状电极,多个板状电极的左右两端分别安装于第一绝缘外壳的左壳体和右壳体,并沿上下方向间隔设置,相邻两个板状电极之间设置有介质阻挡层。上述结构简单,在杀菌的同时,还能去除异;并且,多个板状电极所构成的介质阻挡放电等离子体发生组件使得空气等离子体装置更高,即同时满足了结构简单和提高效率的双重目的。
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Claims

1. An air plasma device, characterized by, include: A first insulating shell has an internal accommodating space. The first insulating shell includes an upper shell, a lower shell, a left shell, and a right shell. The first insulating shell has a front opening and a rear opening that communicate with the accommodating space. A filter assembly is disposed within the accommodating space; A dielectric barrier discharge plasma generating assembly is disposed within the accommodating space and located in front of the filter assembly. The dielectric barrier discharge plasma generating assembly includes multiple plate-shaped electrodes. The left and right ends of the multiple plate-shaped electrodes are respectively installed on the left housing and the right housing and are spaced apart in the vertical direction. A dielectric barrier layer is disposed between two adjacent plate-shaped electrodes.

2. The air plasma device of claim 1, wherein, The air plasma device further includes a second insulating shell connected to the right side of the first insulating shell, and a power supply device is housed inside the second insulating shell; a slit is provided on the right shell for a wire to pass through, the wire connecting the plate electrode to the power supply device.

3. The air plasma device of claim 1, wherein, The left housing has a replacement port for replacing the filter assembly.

4. The air plasma device of claim 3, wherein, The filter assembly, from back to front, includes a catalytic filter, a carbon filter, and a high-efficiency particulate filter, which are arranged at intervals. There are three replacement ports, corresponding to the catalytic filter, the carbon filter, and the high-efficiency particulate filter, respectively.

5. The air plasma device of claim 4, wherein, The first insulating housing is provided with a first spacer, a second spacer and a third spacer. The first spacer is used to separate the dielectric barrier discharge plasma generating component and the high-efficiency particulate filter. The second spacer is used to separate the high-efficiency particulate filter and the slot of the carbon filter. The third spacer is used to separate the carbon filter and the catalytic filter.

6. The air plasma device of claim 5, wherein, The first spacer is connected to the lower housing, and the two ends of the second spacer and the third spacer are respectively connected to the left housing and the right housing. Hollowed-out portions are formed between the second spacer and the first insulating shell, and between the third spacer and the first insulating shell.

7. The air plasma device of claim 5, wherein, A front filter screen is provided at the front opening, and a rear filter screen is provided at the rear opening. A fourth spacer is provided inside the first insulating shell, which is used to separate the catalytic filter and the rear filter screen.

8. The air plasma device of claim 1, wherein, The left housing includes a first insulating support protruding into the accommodating space, and the right housing includes a second insulating support protruding into the accommodating space. The left and right ends of the plate electrode are respectively mounted on the first insulating support and the second insulating support, and the protruding length of the first insulating support is less than the protruding length of the second insulating support.

9. The air plasma device of claim 1, wherein, A clamp is attached to the first insulating housing for securing the air plasma device in the mounting position.

10. An air conditioner characterized by comprising: Includes the air plasma device according to any one of claims 1-9, wherein the air plasma device is installed at the air outlet of the air conditioner.