• • Graphene hybridization in copper matrix composites with short carbon fibers/reduced graphene oxide filler reduces wear rate by up to 40% under dry sliding conditions (Tribol Int, 2016, 103: 406–411).
• • Multiscale graphene/carbon fiber reinforced copper matrix hybrid composites exhibit a 25% increase in tensile strength and a 30% improvement in electrical conductivity compared to baseline (Mater Sci Eng A, 2019, 743: 512–519).
• • Addition of graphene oxide to fiber metal laminates enhances interlaminar shear strength by 18% and flexural modulus by 12%, as reported in Polym Test, 2020, 91: 106766.
• • Graphene-modified C/C-SiC composites show a 30% reduction in linear ablation rate at 2500°C, attributed to improved thermal conductivity and oxidation resistance (Ceram Int, 2022, 48: 25191–25201).