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  2. Automated fiber placement - Wikipedia

    en.wikipedia.org/wiki/Automated_fiber_placement

    Automated fiber placement (AFP), also known as advanced fiber placement, is an advanced method of manufacturing composite materials. These materials, which offer lighter weight with equivalent or greater strength than metals, [ 1 ] are increasingly used in airframes and other industrial products.

  3. Advanced composite materials (engineering) - Wikipedia

    en.wikipedia.org/wiki/Advanced_composite...

    The Advanced composites industry, or Advanced composite materials industry, is characterized by the use of expensive, high-performance resin systems and high-strength, high-stiffness fiber reinforcement. The aerospace industry, including military and commercial aircraft of all types, is the major customer for advanced composites.

  4. Welding of advanced thermoplastic composites - Wikipedia

    en.wikipedia.org/wiki/Welding_of_Advanced...

    Advanced thermoplastic composites (ACM) have a high strength fibres held together by a thermoplastic matrix. Advanced thermoplastic composites are becoming more widely used in the aerospace, marine, automotive and energy industry. This is due to the decreasing cost and superior strength to weight ratios, over metallic parts.

  5. Composite material - Wikipedia

    en.wikipedia.org/wiki/Composite_material

    Carbon fibre composite part. Composite materials are created from individual materials. These individual materials are known as constituent materials, and there are two main categories of it. One is the matrix and the other reinforcement. [48] A portion of each kind is needed at least.

  6. Fiber-reinforced composite - Wikipedia

    en.wikipedia.org/wiki/Fiber-reinforced_composite

    A fiber-reinforced composite (FRC) is a composite building material that consists of three components: [1] [2]. the fibers as the discontinuous or dispersed phase, the matrix as the continuous phase, and

  7. Polymer matrix composite - Wikipedia

    en.wikipedia.org/wiki/Polymer_matrix_composite

    Like in fiber-reinforced composites, the size dispersion of the carbon nanotubes significantly affects the final properties of the composite. Stress-strain studies of single-walled carbon nanotubes in a polyethylene matrix using molecular dynamics showed that long carbon nanotubes lead to an increase in tensile stiffness and strength due to the ...

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