一种板式臭氧发生器

By designing a plate-type ozone generator, both the inner and outer electrode plates are equipped with heat dissipation fins, and the middle layer is an insulating dielectric thin plate, forming a micro-gap discharge chamber. This solves the heat dissipation difficulties and structural complexity problems of existing tubular ozone generators, achieving efficient heat dissipation and capacity expansion, and meeting the needs of disinfection and sterilization.

CN224513200UActive Publication Date: 2026-07-17WUHAN AIFUTE OZONE TECH DEV CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN AIFUTE OZONE TECH DEV CO LTD
Filing Date
2025-07-05
Publication Date
2026-07-17

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Abstract

本实用新型提供一种板式臭氧发生器,包括上下层自带散热翅片的金属导电内电极板、外电极板,中间层绝缘介质薄板;内电极板底平面加工微隙槽,侧面设与微隙槽相通的进出气孔;内电极板与绝缘介质薄板咬合后,微隙槽与绝缘介质薄板形成微隙放电腔室。本实用新型具有以下优点:内外电极均自带散热翅片且散热面朝向自然环境,无需风冷或水冷等复杂配套,避免因散热故障导致的产能下降;采用平板薄片化设计,配件少、集约化程度高,占用空间小;通过模块化布置(如多组放电室与外电极板组合),可在有限空间内集成多个臭氧发生单元,大幅提升臭氧浓度和产量;制造工艺简单,实用性强,能满足用户对高质量消毒杀菌等场景的需求。
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Claims

1. A plate-type ozone generator, characterized by: It includes an inner conductive metal electrode plate (1) with heat dissipation fins on the upper and lower layers, an outer electrode plate (3), and an insulating dielectric thin plate (2) in the middle layer; the bottom plane of the inner electrode plate (1) is machined with micro-gap grooves (12), and the side is provided with air inlet and outlet holes (11) that communicate with the micro-gap grooves (12); after the inner electrode plate (1) and the insulating dielectric thin plate (2) are engaged, the micro-gap grooves (12) and the insulating dielectric thin plate (2) form a micro-gap discharge chamber.

2. The plate ozone generator according to claim 1, characterized in that: The inner electrode plate (1) is processed into a set of micro-gap discharge chambers, each set containing at least 2 micro-gap grooves (12), and the same number of micro-gap grooves (31) are processed on the bottom plane of the outer electrode plate (3) to form a plate ozone generator with at least 2 ozone connectors.

3. A plate ozone generator according to claim 1 or 2, characterised in that: The inner electrode plate (1) is extended and processed into two or more micro-gap discharge chambers. Each micro-gap discharge chamber is independently covered by an insulating dielectric thin plate (2) and an outer electrode plate (3), forming multiple independent ozone generating units, which are then combined into an integrated plate ozone generator.