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hybrid composites

  • Improving Biocomposite Strength: Sodium Bicarbonate Treatment Elevates Curauá Fiber and Biochar Composites’ Tensile and Flexural Strength to 56.32 MPa and 74.69 MPa

    Improving Biocomposite Strength: Sodium Bicarbonate Treatment Elevates Curauá Fiber and Biochar Composites’ Tensile and Flexural Strength to 56.32 MPa and 74.69 MPa

  • Almond Biochar Enhances Composite Strength: 324.66 MPa Tensile Strength at 10% Filler Load

    Almond Biochar Enhances Composite Strength: 324.66 MPa Tensile Strength at 10% Filler Load

  • Miscanthus-Derived Biochar for Enhanced Epoxy Composites

    Miscanthus-Derived Biochar for Enhanced Epoxy Composites

  • Sustainable Flame Retardancy: Coffee Waste Biochar in Epoxy Nanocomposites

    Sustainable Flame Retardancy: Coffee Waste Biochar in Epoxy Nanocomposites

  • Exploring the Benefits of Biochar and Treated Palm Fibers in PLA-Based Composites

    Exploring the Benefits of Biochar and Treated Palm Fibers in PLA-Based Composites

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