Advanced composite materials, encompassing metal matrix composites, polymer matrix composites, ceramic matrix composites, and natural fiber composites, are increasingly vital in aerospace, automotive, construction, and energy sectors due to their high strength-to-weight ratios, corrosion resistance, and multifunctional potential. Metal matrix composites reinforced with SiC, Al 2 O 3 , TiB 2 , or B 4 C exhibit tensile strengths ranging from 200 to 500 MPa, Young's modulus of 70–100 GPa, and improved wear resistance, while polymer matrix composites with hybrid nano- and micron-scale reinforcements achieve 150–200 MPa tensile strength and enhanced recyclability. Ceramic matrix composites, such as SiC or Si 3 N 4 composites, retain structural integrity at temperatures exceeding 1600 °C, making them suitable for turbine and aerospace applications. Natural fiber composites, derived from flax, hemp, jute, and kenaf, offer eco-friend
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