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High Quality Low Resistance Paint Filter Net - China Suppliers & Factory - Ultra-Fine Glass Fibers, 40% Efficiency@2.0µm

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Introducing our premium filtration media made from ultra-fine glass fibers, skillfully interwoven to provide exceptional performance. This advanced material is often coated with a distinctive green adhesive, enhancing its durability and filtration efficiency.

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With a thickness of 50mm, our filtration media meets the highest industry standards for air quality improvement. It boasts an impressive efficiency of 40% at 2.0μm, making it an ideal choice for various applications.

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Manufactured according to the EN 779 G1 standard, our product is sourced directly from trusted suppliers in China and crafted in our state-of-the-art factory. Choose our filtration media for reliable and efficient air filtration solutions that enhance indoor air quality.

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    Application Area

    Ordinary automotive repair paint shops, industrial spraying, etc., are currently the most widely used types.

    Main Characteristics

    • Excellent Flame Retarding: Glass fiber itself is non-combustible, meeting fire safety requirements for paint spray booths.
    • High Filtration Efficiency: Particularly effective at capturing large and medium-sized paint mist particles.
    • Low Cost: Economical and cost-effective, making it a mainstream choice in the market.

    The Efficiency of Coarse Filter Cotton

    The efficiency of currently available ranges from 40% — they can be selected based on specific requirements. The rational selection of filter efficiency and face velocity contributes to comprehensive economic benefits.

    Service Life of Filters

    As dust accumulates on the filter media, the resistance increases. When the resistance reaches an unreasonable level, the filter must be discarded. Sometimes, excessive resistance can cause previously captured dust to become dislodged and re-enter the airflow; when this risk arises, the filter should also be replaced. The resistance of a filter increases with higher airflow rates. By increasing the surface area of the filter media, the relative velocity of air passing through the filter can be reduced, thereby decreasing the resistance.

    Frequently Asked Questions

    Q1
    What is coarse filter cotton primarily used for?
    Coarse filter cotton is primarily used in ordinary automotive repair paint shops and industrial spraying environments. It is one of the most widely applied filtration materials in these industries due to its cost-effectiveness and reliable performance.
    Q2
    Is coarse filter cotton fire-safe for use in paint spray booths?
    Yes. Coarse filter cotton made from glass fiber is non-combustible, giving it excellent flame-retarding properties. It meets fire safety requirements for paint spray booth applications, making it a reliable and safe choice.
    Q3
    What types of particles can coarse filter cotton capture effectively?
    Coarse filter cotton is particularly effective at capturing large and medium-sized paint mist particles. Its high filtration efficiency makes it suitable for environments with significant particulate output, such as automotive refinishing and industrial spray operations.
    Q4
    How is filtration efficiency selected for coarse filter cotton?
    The filtration efficiency of coarse filter cotton starts from 40% and can be selected based on specific application requirements. A rational selection of both filter efficiency and face velocity is key to achieving the best overall economic and operational benefits.
    Q5
    When should a coarse filter cotton be replaced?
    The filter should be replaced when accumulated dust causes the resistance to rise to an unreasonable level. Additionally, if excessive resistance risks dislodging previously captured dust back into the airflow, immediate replacement is recommended to maintain air quality and system performance.
    Q6
    How can filter resistance be reduced to extend service life?
    Filter resistance can be reduced by increasing the surface area of the filter media. A larger surface area lowers the relative velocity of air passing through the filter, which in turn decreases resistance and can help extend the effective service life of the filter.