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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:碳纤维增强聚(氨基甲酸酯 - 异氰脲酸酯) - 纳硅藻复合材料CF-(PUI-NS)通过在非常低的NS浓度(0-4wt%)下真空辅助的树脂转移模塑技术(VARTM)制造。 PUI基质(& 7%)的高菌株受CF重新定向影响拉伸试验。抗拉强度和失效菌株均高度依赖于其运动学。 CF(PUI-NS)引起静韧性的静态韧性,最大限度地改善抗拉菌株,分别以1wt%和2wt%的Ns + 28.8%和+ 39%的模量增加。复合材料的层间剪切强度(G(IC))分别显示出-12.9%的劣化,并且对于Ns浓度分别为1wt%和4wt%的改善+ 9.9%。无论G(IC)值如何,用NS制备的所有复合材料都呈现了力与位移图的次要最大值,表明在分层开始后大量停止裂纹传播速度。 Fretography分析显示了几种特征,例如纤维拉出,桥接以及河流图案,而用NS制备的复合材料由于河纹图案的存在和减少的纤维拉出而在更延展的方式中表现得更加延展。聚合物。 eng。 SCI。,58:1241-1250,2018。(c)2017年塑料工程师协会

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