An oxygen booster is a specialized gas compression device designed to increase the pressure of oxygen to the required working pressure. It compresses the inhaled oxygen mechanically, significantly inc

1. Absolute Oil-Free Operation and High Cleanliness
The entire system must be designed to be completely oil-free, and all components in contact with oxygen must be strictly degreased to prevent the risk of combustion or explosion caused by contact between oil and high-pressure oxygen.
2. Material Compatibility and Oxidation Resistance
The core materials of the flow path must be made of oxidation-resistant alloys (such as stainless steel, copper alloys) or treated with special coatings to prevent corrosion or sparks caused by high-speed oxygen flow.
3. Safety and Explosion-Proof Design
Electrical components typically use explosion-proof configurations and are equipped with multiple safety protections such as pressure relief valves and temperature monitoring to ensure safe operation in a high-pressure oxygen environment.
4. Reliable Sealing
Oxygen-specific sealing materials (such as PTFE, special elastomers) are used to prevent leakage and avoid reactions between the sealing components and oxygen.
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