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282 Carbon Fiber 50 5.8 Oz.

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Part numbers : RX1-01-00971 , 282-50 , 01-00971
Unit of Measure: YD

36.46 EUR / YD 36.46 EUR 36.46 € excl. VAT

36.46 EUR / YD excl. VAT

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Availability
Up to 82 YD ready to ship on Monday 2026-08-10
Order before 17:00 CET Today
Up to 237 YD ready to ship on Thursday 2026-08-13
Order before 17:00 CET Today
14 YD available on request, fees apply
Special order from vendor stock.

Style 282 carbon fibre fabric for composite reinforcement and repair work. This plain-weave material provides a balanced 3K carbon fibre construction in a broad 1.27 m width.

  • Manufacturer model: 282-50
  • Construction: 3K carbon fibre, plain weave
  • Nominal areal weight: 197 g/m²
  • Nominal width: 1.27 m
  • Nominal thickness: 0.18 mm
  • Weave count: 12.5 × 12.5
  • Unit of supply: linear yard

Confirm material suitability, laminate design and any required airworthiness documentation before use in a specific application.

Style #StyleWeight
Oz/Sq.Yd
Width / InThicknessWeave & FillPN
282Carbon Fiber 3K5.850.00712.5 x 12.501-00971

Overview

Woven graphite is an excellent alternative to fiberglass and Kevlar - only mils thick with great strength. In addition to its great strength, graphite fabric also has very low density and is very stiff. Although it is quite costly, the material saving is appreciable since only one course of graphite is required for 3 or 4 of fiberglass. It cuts considerably easier than Kevlar. The excellent qualities of the graphite fabric itself give it an immediate waiting market in the aircraft building field.

Carbon fibers are produced in a continuous operation, during which the polyacrylonitrile (PAN) precursor undergoes a series of precisely controlled processes. By exposing the precursor to extremely high temperatures, chemical changes occur which create high strength and stiffness to weight ratios through oxidation, carbonization and graphitization.

Subjecting the precursor to successive heat treatment and sizing stages makes for easier handling and improved bonding, resulting in a material that is stronger than steel, lighter than aluminum and as stiff as titanium.

Carbon fiber reinforcements, when properly engineered into the appropriate matrix, can achieve one of the strongest and most rigid composite structures available with significant weight savings when compared to metals and other materials.

In addition to the high strength-to-weight ratio, carbon fiber reinforcements are thermally and electrically conductive, have very low CTE and excellent fatigue resistance.



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