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3M™ Nextel™ Fabric DF-13-4500, 4500 D, 36 in Wide, per ft

3M Product Number DF-113M ID 98021338011UPC 00638060423783
  • Woven 3M™ Nextel™ 610 continuous ceramic oxide fiber roving
  • A preferred reinforcement for Ox-Ox CMC pre-preg and parts
  • Good mechanical properties at high temperatures
  • Electrically insulating with good electromagnetic transparency
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Typical Properties
Attribute Name
Value
Brand
Nextel™
Capabilities
Lightweighting
Denier
4500 Denier
Density (g/cc)
3.9
Fiber Type Input
Roving
Finish
Sized
Industries
Aerospace, Fuel Cell, Industrial
Melting point
3632°F (2000°C)
Overall Thickness (Imperial)
0.019 in
Overall Thickness (Metric)
0.48 mm
Overall Width (Imperial)
36 in
Overall Width (Metric)
914.4 mm
Product Color
Off-white
Product Composition
610
Product Form
Fabric
Weave
5 Harness Satin
Weight (Imperial)
14.1 oz/yd²
Weight (Metric)
480 g/m²
Details
  • Woven 3M™ Nextel™ 610 continuous ceramic oxide fiber roving
  • A preferred reinforcement for Ox-Ox CMC pre-preg and parts
  • Good mechanical properties at high temperatures
  • Electrically insulating with good electromagnetic transparency
  • Ideal as a ceramic fiber reinforcement for composites
  • Non-hygroscopic and non-oxidizing
  • High purity alpha-alumina

3M™ Nextel™ Fabric DF-13-4500 is a woven fabric made from 3M™ Nextel™ 610 Grade continuous filament ceramic oxide fiber that is designed to maintain strength under a variety of extremely high temperature conditions. Our Nextel structural fabric DF-13-4500 outperforms the useful limits of other high temperature textiles for improved performance in demanding applications.

3M™ Nextel™ Fabric DF-13-4500 is a woven fabric made from 3M™ Nextel™ 610 high temperature continuous filament ceramic oxide fiber. Nextel 610 fiber outperforms the useful limits of many other high temperature textiles. It is light weight, electrically insulating and has good thermo-mechanical properties. Nextel structural fabric DF-13-4500 is often used to reinforce ceramic matrix composites (CMC), metal matrix composites (MMC), or polymer matrix composites (PMC). These composites have exceptional strength and stiffness as well as high temperature capabilities.