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  • 3M™ Dyneon™ High Temperature Perfluoroelastomer PFE 133TBZ
  • 3M™ Dyneon™ High Temperature Perfluoroelastomer PFE 133TBZ

    3M ID 98021321033UPC 00051135334577
    • High-temperature perfluoroelastomer (FFKM)
    • Ideal for dry side (thermal processes) semiconductor applications
    • Low metal ion content with low extractables
    • Offers excellent compression set resistance
     More...
    Typical Properties
    Attribute Name
    Value
    Brand
    Dyneon™
    Capabilities
    Productivity Improvement
    Color
    White
    Composition
    Copolymer of tetrafluoroethylene and perfluorovinylether
    Compression Set
    26 %
    Container Volume
    2 kg
    Cure Technology
    Triazine
    Elongation
    192 %
    Fluorine Content
    72.5 %
    Industries
    CPI/Semicon, Rubber and Plastic
    Mooney Viscosity
    110 MU
    Net Weight
    2
    Post Cure
    24 h @ 250°C
    Press Cure
    15 min @ 188°C
    Product Class
    High Temperature
    Product Form
    Crumb
    Shelf Life
    2 Year
    Specific Gravity
    2
    Tensile Strength at Break
    16.0 MPa (2,323 psi)
    Weight (Imperial)
    4.4 lb.
    Weight (Metric)
    2 kg
    Details
    • High-temperature perfluoroelastomer (FFKM)
    • Ideal for dry side (thermal processes) semiconductor applications
    • Low metal ion content with low extractables
    • Offers excellent compression set resistance
    • Upper continuous use temperature of 315°C (599°F)

    3M™ Dyneon™ High Temperature Perfluoroelastomer PFE 133TBZ is a technically advanced high-temperature perfluoroelastomer designed to meet the needs of higher-temperature plasma applications. It is ideal for dry side semiconductor applications, and is classified as FFKM per ASTM D1418.

    Enhanced Sealing Capability
    3M™ Dyneon™ High Temperature Perfluoroelastomer PFE 133TBZ offers excellent compression set resistance, resulting in enhanced sealing force retention and seal life. Dyneon high temperature perfluoroelastomer PFE 133TBZ has a fully fluorinated backbone structure that provides very broad chemical and thermal stability.

    With an upper use temperature of 315°C (599°F), it meets the challenges of demanding high-temperature applications. This product is not recommended for use in applications with exposure to steam or water. Dyneon PFE 133TBZ is packaged in crumb form and is available in 2 kg and 10 kg boxes.

    Top Performing Polymers from 3M
    3M™ Dyneon™ Perfluoroelastomers are elastomeric materials with a fully fluorinated backbone. Their C-F backbone is the strongest in organic chemistry and helps provide materials with outstanding performance characteristics. Whether you’re looking for durability, chemical or temperature resistance, Dyneon perfluoroelastomers are the material of choice for industries around the world.

    Delivering Custom Solutions
    3M offers over 50 grades of fluoroelastomers with varying monomer composition, Mooney viscosity and fluorine content. This broad offering, combined with our expertise in application and product development, translates into greater design flexibility.

    For decades, we have been able to supply unique solutions to meet the increasing market challenges in developing and producing state-of-the-art fluoroelastomer products at the highest quality level. This goes hand-in-hand with our unparalleled commitment to research and customer support. Like all of our products, 3M™ Dyneon™ High Temperature Perfluoroelastomer PFE 133TBZ is backed by skilled researchers at several 3M tech service laboratories. Collectively, our staff has decades of experience researching, developing and improving upon fluoroelastomers. Toward that end, we are in regular communication with customers who deliver feedback – allowing us to improve existing products and deliver custom solutions. All of this is part of an unrelenting drive to deliver top products to our customers. From coatings to calendered sheets, tubing to molded goods, 3M has a solution for your specialty application.

    Applications

    • Dry side (thermal processes) semiconductor applications, including plasma

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