CARBON FIBER Carbon fibers may be made from several precursor materials, with polyacrylonitrile (PAN) being the most widely used raw input constituent. The crystalline structure of carbon atoms produces a fiber with high stiffness and tensile strength, and low thermal expansion. Carbon is sold in the form of tow (yarn), woven or knitted fabrics, and prepregs (pre-impregnated with epoxy or other matrix resins). While carbon fiber is more expensive than traditional glass fiber, the stiffness and strength to weight ratio are significantly higher. Carbon fiber is used in a wide variety of cutting-edge applications including aerospace, transportation, sporting goods, and many new composites applications.

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FIBERGLASS Fiberglass is the foundation of the composites industry. It is often the best all-purpose choice among reinforcements for creating composite parts with excellent strength, low weight, and dimensional stability.

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CARBON FIBER Carbon fibers may be made from several precursor materials, with polyacrylonitrile (PAN) being the most widely used raw input constituent. The crystalline structure of carbon atoms produces a fiber with high stiffness and tensile strength, and low thermal expansion. Carbon is sold in the form of tow (yarn), woven or knitted fabrics, and prepregs (pre-impregnated with epoxy or other matrix resins). While carbon fiber is more expensive than traditional glass fiber, the stiffness and strength to weight ratio are significantly higher. Carbon fiber is used in a wide variety of cutting-edge applications including aerospace, transportation, sporting goods, and many new composites applications.

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Carbon fibers may be made from several precursor materials, with polyacrylonitrile (PAN) being the most widely used raw input constituent. The crystalline structure of carbon atoms produces a fiber with high stiffness and tensile strength, and low thermal expansion. Carbon is sold in the form of tow (yarn), woven or knitted fabrics, and prepregs (pre-impregnated with epoxy or other matrix resins). While carbon fiber is more expensive than traditional glass fiber, the stiffness and strength to weight ratio are significantly higher. Carbon fiber is used in a wide variety of cutting-edge applications including aerospace, transportation, sporting goods, and many new composites applications.
FIBERGLASS Fiberglass is the foundation of the composites industry. It is often the best all-purpose choice among reinforcements for creating composite parts with excellent strength, low weight, and dimensional stability.

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Fiberglass is the foundation of the composites industry. It is often the best all-purpose choice among reinforcements for creating composite parts with excellent strength, low weight, and dimensional stability.