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  • 9309 Epoxy Phenolic Laminated Paperboard

    9309 Epoxy Phenolic Laminated Paperboard

    Product Description 9309 Epoxy Phenolic Laminated Paperboard is a premium composite insulation material composed of high-quality cellulose paper impregnated with a specialized blend of epoxy and phenolic resins. Engineered for high-stress electrical environments, this board offers a low dielectric loss factor, exceptional electrical strength, and excellent oil resistance. With a Grade E heat resistance rating, it ensures reliable long-term performance and structural integrity, making it an op...
  • 3021 Phenolic Resin Laminate Sheet

    3021 Phenolic Resin Laminate Sheet

    3021 Phenolic Resin Laminate Sheet is a high-quality electrical and mechanical insulation board manufactured from premium bleached wood pulp paper thoroughly impregnated with modified phenolic resin. It features a balanced combination of excellent dielectric properties and outstanding physical strength, making it an ideal choice for general and heavy-duty industrial applications.

    Specially engineered to meet rigorous stress standards, it exhibits great thermal stability and high voltage resistance, providing reliable insulation structures for motors, transformers, and electrical switchgears.
  • 3640 Epoxy Phenolic Glass Fiber Cloth Laminated Tube

    3640 Epoxy Phenolic Glass Fiber Cloth Laminated Tube

    3640 Epoxy Phenolic Glass Fiber Cloth Laminated Tube is a high-grade, heavy-duty electrical insulation component manufactured from alkali-free glass fiber cloth impregnated with a specialized epoxy phenolic resin binder. Engineered for extreme operating conditions, it delivers exceptional mechanical strength and unparalleled electrical stability, even when exposed to high-humidity environments.

    This premium composite tube is specifically designed to withstand high-temperature electric arcs, making it an excellent choice for protective partitioning and insulating structures in high-performance motors and heavy electrical machinery.
  • 3526 Phenolic Laminated Tube

    3526 Phenolic Laminated Tube

    3526 Phenolic Laminated Cotton Cloth Tube is a heavy-duty electrical and mechanical insulation material crafted from high-tensile, scouring desizing cotton fabric thoroughly impregnated with premium phenolic resin. Compared to paper-based tubes, this cotton cloth laminate offers significantly higher longitudinal tensile strength, excellent impact resistance, and lower water absorption (≤4%).With a superior thermal stability rating of ≥130° C, it is specifically engineered for structural components that demand robust mechanical loads and complex precision machining.
  • 3520 Phenolic Laminated Paper Tube

    3520 Phenolic Laminated Paper Tube

    3520 Phenolic Laminated Paper Tube is a premium-grade electrical insulation material manufactured by winding insulation paper impregnated with high-quality phenolic resin under heat and pressure. It exhibits outstanding dielectric properties in dry states and high thermal stability, making it a highly reliable insulation structural component for heavy-duty electrical machinery.
  • 3840 Epoxy Phenolic Glass Fiber Cloth Laminate Rod

    3840 Epoxy Phenolic Glass Fiber Cloth Laminate Rod

    3840 Epoxy Phenolic Glass Fiber Cloth Laminate Rod is a high-performance electrical insulation material composed of alkali-free glass fiber cloth and premium epoxy phenolic resin. Engineered for demanding industrial applications, it offers exceptional mechanical and electrical properties, combined with excellent processability.
    With a Grade B heat resistance rating, this robust laminate rod maintains superior insulation resistance even after 24 hours of water immersion, making it highly reliable in wet environments and transformer oil.Ideal for structural insulation parts in electrical equipment, motors, and oil-filled transformers.
  • Press material FX501 extruded

    Press material FX501 extruded

    FX501 phenolic glass fiber molded plastic use: It is suitable for pressing insulating structural parts with high mechanical strength, complex structure, large thin-walled, anticorrosive and moisture-resistant.
  • 3723 Phenolic Cloth Rod

    3723 Phenolic Cloth Rod

    This product is made by impregnating cotton fabric with phenolic resin and then hot-pressing it in a mold. It offers high mechanical strength and good processability. It has a heat resistance rating of Class E. It is suitable for use as insulating structural components in electrical equipment and can be used in transformer oil.
  • 3025 Phenolic Cotton Cloth Laminate Sheet

    3025 Phenolic Cotton Cloth Laminate Sheet

    3025 phenolic laminated cloth board is a composite material made by impregnating and hot-pressing cotton cloth reinforced with phenolic resin. It is widely used for insulating structural components in machinery, motors, and electrical equipment, and is suitable for use in transformer oil.
  • Phenolic Moulding Compound BH4330-2 Sheet

    Phenolic Moulding Compound BH4330-2 Sheet

    BH4330-2 Phenolic Glass Fiber Moulding Compound for Electrical Insulation (High Strength Fixed Length Fibers) Usage: Suitable for insulating structural parts under the conditions of stable structural dimensions and high mechanical strength, and suitable for use in humid environments, and can also be pressed and wound tubes and cylinders.
  • PMC Insulating Compression-Molded Parts

    PMC Insulating Compression-Molded Parts

    They feature high mechanical strength and heat resistance, excellent electrical insulation properties, low water absorption, low thermal conductivity, and high chemical resistance. Suitable for operation within a temperature range of -196°C to +200°C.
  • Pultruded FRP Grating

    Pultruded FRP Grating

    Pultruded fiberglass grating is manufactured using the pultrusion process. This technique involves continuously pulling a mixture of glass fibers and resin through a heated mold, forming profiles with high structural consistency and durability. This continuous production method ensures product uniformity and high quality. Compared to traditional manufacturing techniques, it allows for more precise control over fiber content and resin ratio, thereby optimizing the mechanical properties of the final product.
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