3M™ Nextel™ Served Roving 610

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Roving made from 3M™ Nextel™ 610 continuous ceramic oxide fibre

Can be converted into textiles

Very high extensional modulus at room temperature

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Details

Highlights
  • Roving made from 3M™ Nextel™ 610 continuous ceramic oxide fibre
  • Can be converted into textiles
  • Very high extensional modulus at room temperature
  • Very good mechanical properties at high temperatures
  • Electrically insulating with good electromagnetic transparency
  • Ideal as a ceramic fibre reinforcement for composites
  • Non-hygroscopic and non-oxidising
  • Very low shrinkage after thermal cycling

3M™ Nextel™ Roving 610 consists of continuous filament ceramic fibers and is available in 1,500, 3,000, and 10,000 deniers. Designed to withstand continuous use temperatures of up to 2200oF (1204oC), Nextel™ Roving 610 is considered a structural fiber, and used in applications requiring high tensile strength. Available served and un-served, and with several sizing options.

3M™ Nextel™ Roving 610 is made from 610 continuous filament ceramic oxide fiber. The roving styles are 1500, 3000, 4500 and 10000 denier. This material is designed to maintain strength while withstanding continuous high temperatures. Nextel roving 610 is ideal as a fibre reinforcement for high temperature composites. This roving can be used as an input material to make textiles to meet user needs. 3M™ Nextel Ceramic Fibers represent a major advancement in refractory fiber technology. The roving can be used to make a variety ceramic textiles including fabrics, tapes, sleevings and sewing threads. Because the fibers are flexible, continuous and strong, textiles can be produced without the aid of other fibres or wire inserts.

Nextel rovings from 3M are designed to meet the toughest thermal, mechanical and electrical performance requirements. They are heat and oxidation resistant; and chemically resistant, lightweight, electrically insulating and flexible.

Applications

  • Reinforcement fibre for high temperature composites
    • Polymer matrix
    • Metal matrix
    • Ceramic matrix

Specifications

Resources