一种等离子组合电极头及等离子清洗机
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN CUBE TECH CO LTD
- Filing Date
- 2025-06-20
- Publication Date
- 2026-07-17
AI Technical Summary
Existing plasma electrode heads are thick and heavy and not easily expandable, which limits the use of plasma cleaners.
A plasma combined electrode head is constructed by splicing multiple independently packaged electrode blocks into an electrode module. A thin electrode layer is set in the electrode block. The conductive module includes a conductive plate, a conductive base plate and a conductive cover plate. The electrode blocks are connected to the conductive plate through conductive wires. A high-voltage power supply is connected to the conductive cover plate. A gas control box delivers gas through an air inlet. An ozone treatment module surrounds the cavity.
It achieves a thinner and more scalable plasma electrode head, which is easy to maintain and can be extended and deformed as needed, reducing replacement costs.
Smart Images

Figure CN224507893U_ABST
Abstract
Claims
1. A plasma combination electrode tip, characterized by, The device includes a cavity and an electrode section disposed at the bottom of the cavity. A high-voltage wire inlet and an air inlet are disposed at the top of the cavity. The electrode section includes a conductive module, an electrode module, a ground plane, and a fixing module. The conductive module is connected to the electrode module and is disposed below the conductive module. The ground plane is disposed below the electrode module. The conductive module includes a conductive plate, a conductive base plate, and a conductive cover plate. The conductive plate is mounted on the conductive base plate, and the conductive cover plate abuts against the conductive plate. The conductive plate is connected to a high-voltage power supply through the conductive cover plate. The fixing module is used to fix the electrode module. The electrode module includes multiple electrode blocks and conductive wires electrically connected to the electrode blocks. Each electrode block is independently packaged, and multiple electrode blocks are assembled into the electrode module. The assembly shape of the electrode module is determined according to the required shape. Each electrode block is independently connected to the conductive plate through the conductive wire.
2. The plasma tip assembly of claim 1, wherein: The electrode block includes a first substrate, a second substrate, and an electrode, wherein the electrode is located between the first substrate and the second substrate.
3. The plasma tip assembly of claim 2 wherein: The electrodes in the electrode block are electrode coatings, which are disposed on the first substrate or the second substrate.
4. The plasma combined electrode head according to claim 1, characterized in that, The conductive base plate is provided with a groove to accommodate the conductive plate, and the conductive plate is disposed in the groove.
5. The plasma tip assembly of claim 1 wherein: The second substrate of each electrode block is provided with holes for conductive wires to pass through.
6. The plasma tip assembly of claim 1 wherein: The electrode block is configured in one or more of the following shapes: strip, block, or irregular shape.
7. A plasma cleaning machine characterised in that, The system includes a high-voltage power supply, a plasma electrode head, a gas control box, and an ozone treatment module. The plasma electrode head includes a cavity and an electrode section located at the bottom of the cavity. The top of the cavity has a high-voltage line connector and an air inlet interface. The electrode section includes a conductive module, an electrode module, a grounding plate, and a fixing module. The conductive module is connected to the electrode module and is located below the conductive module. The grounding plate is located below the electrode module. The conductive module includes a conductive plate, a conductive base plate, and a conductive cover plate. The conductive plate is mounted on the conductive base plate, and the conductive cover plate abuts against the conductive plate. The conductive plate passes through the conductive cover plate. A high-voltage power supply is connected. The fixing module is used to fix the electrode module. The electrode module includes multiple electrode blocks and conductive wires that are electrically connected to the electrode blocks. Each electrode block is independently packaged, and multiple electrode blocks are spliced together to form the electrode module. The splicing shape of the electrode module is spliced according to the shape required for use. Each electrode block is independently connected to the conductive plate through the conductive wire. The high-voltage power supply is connected to the conductive cover plate through the high-voltage wire socket, thereby connecting to the conductive plate. The gas control box supplies gas to the cavity through the air inlet interface. The ozone treatment module is set above the cavity and surrounds the cavity.
8. The plasma cleaner according to claim 7, characterized in that, It also includes a busbar, which is disposed in the upper part of the cavity.
9. The plasma cleaning machine of claim 7, wherein, It also includes an electrode separator, which divides the cavity into two spaces.