Specializing in the design, manufacturing, and processing of filter cores, fi...
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Highly resistant to acids and alkalis, with excellent strength and toughness of the filter cores. They can withstand high temperatures up to 200°C, earning the title of "King of Filter Cores."
1. Resistant to strong acids and alkalis, excellent chemical compatibility and oxidation resistance.
2. Highly hydrophobic for gas filtration; hydrophilic for liquid filtration.
3. High-temperature resistant up to 200°C, capable of steam sterilization and steam filtration.
4. High porosity: General metal sintered filter cores have a porosity below 30%, thus, with the same filtration area, the fluid flow rate is higher.
5. Smooth Outer Surface: The outer surface of the filter element is as smooth as "wax," making it difficult for impurities to adhere to the surface. Additionally, the outer surface has high filtration accuracy, while the inner layer has lower accuracy, preventing impurities from embedding within the core. The filter element is easy to clean and ensures thorough cleaning, resulting in excellent cleaning performance and a longer service life.
6. High strength and toughness: The high strength and toughness ensure that the filter core is less prone to breakage, an advantage that metal filter cores cannot match. This completely resolves the issue of significant losses caused by filter core "breakage" that has been a headache for manufacturers.
7. High filtration accuracy: Can even reach below 0.1um, which is unattainable for most metal filter cores. The high filtration accuracy and high porosity ensure the filter core maintains good fluid flow under high filtration precision conditions, thus making it practical.
8. No "degranulation" occurs: Fully sintered under high temperature and pressure, ensuring no "degranulation" during use to contaminate the fluid.
9. Strong ozone resistance: fully sintered under high temperature and pressure
Filter Precision: 0.1-100 um
Porosity: 30-55%
Filter Area: 0.6 m²/10"
Compressive Strength: 0.8 MPa
Thermal Resistance: 200℃ (wet state)
Significant working pressure difference: 0.42 MPa

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