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Enhanced fracture toughness of nanostructured carbon-fiber reinforced poly(urethane-isocyanurate) composites at low concentrations

机译:在低浓度下增强纳米结构碳纤维增强聚(氨基甲酸酯 - 异氰脲酸酯)复合材料的断裂韧性

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Carbon fiber reinforced poly(urethane-isocyanurate)-nanosilica composites CF-(PUI-NS) were manufactured by means of the vacuum-assisted resin transfer moulding technique (VARTM) at very low NS concentrations (0-4 wt%). The high strain to failure of the PUI matrix (7%) affected tensile tests by CF reorientation. Both the tensile strength and strain to failure were highly dependent on its kinematics. CF(PUI-NS) caused an increase of the static toughness with a maximum improvement of tensile strain to failure and modulus of +28.8% and +39% at 1 wt% and 2 wt% of NS, respectively. The interlaminar shear strength (G(IC)) of the composites showed both a deterioration of -12.9% and an improvement of +9.9% for NS concentrations of 1 wt% and 4 wt%, respectively. Regardless of the G(IC) value, all of the composites prepared with NS presented secondary maxima of the force versus displacement plots, indicating a substantial arrest of the crack propagation velocity after delamination started. Fractographic analysis revealed several features, such as fiber pull-out, bridging as well as river patterns whereas the composites prepared with NS behaved in a more ductile fashion due to the presence of river patterns and a reduced fiber pull-out. POLYM. ENG. SCI., 58:1241-1250, 2018. (c) 2017 Society of Plastics Engineers
机译:采用真空辅助树脂转移模塑技术(VARTM)在极低的NS浓度(0-4 wt%)下制备了碳纤维增强聚(聚氨酯异氰脲酸酯)-纳米二氧化硅复合材料CF-(PUI-NS)。PUI基体的高应变失效(;7%)通过CF重新定向影响拉伸试验。拉伸强度和破坏应变高度依赖于其运动学。CF(PUI-NS)使静态韧性增加,在NS质量分数为1%和2%时,断裂拉伸应变和模量分别提高了+28.8%和+39%。当NS浓度为1 wt%和4 wt%时,复合材料的层间剪切强度(G(IC))分别下降了-12.9%和提高了+9.9%。无论G(IC)值如何,使用NS制备的所有复合材料均呈现出力-位移曲线的次最大值,表明分层开始后裂纹扩展速度大幅停止。断口分析揭示了一些特征,如纤维拔出、桥接以及河流模式,而使用NS制备的复合材料由于河流模式的存在和纤维拔出的减少,表现出更具韧性的方式。博莱姆。工程科学。,58:1241-1250, 2018. (c) 2017年塑料工程师学会

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