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Time dependent fracture behaviour of a carbon fibre composite based on a (rubber toughened) acrylic polymer

机译:基于(橡胶增韧)丙烯酸聚合物的碳纤维复合材料的时间依赖性断裂行为

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The fracture behaviour of continuous carbon fibre laminates based on plain and rubber-toughened acrylic resins was investigated focusing on the influence of rate and temperature. The tensile behaviour of the two matrices was also characterized for subsequent analysis. In all cases the experimental window was extended by applying the time-temperature equivalence postulate. Fracture toughness at varying crack propagation rate turned out to have opposite trends for the two matrices. For the plain acrylic resin, a monotonically increasing trend with crack rate was found in agreement with viscoelastic fracture theories. For the rubber-toughened resin the change of the failure mechanisms occurring at the crack tip, resulted in a monotonically decreasing trend for increasing crack rate. Rate and temperature effects were analysed in terms of volumetric strain during tensile tests. Composites turned out to be more resistant to crack propagation than the relevant matrices in both cases. Delamination fracture toughness turned out to have the same dependence on crack rate for rubber toughened matrix only. For composites based on the plain resin, no effect of crack rate on delamination fracture toughness was observed.
机译:研究了基于普通和橡胶增韧丙烯酸树脂的连续碳纤维层压板的断裂行为,重点关注速率和温度的影响。两个基质的拉伸行为还表征了随后的分析。在所有情况下,通过施加时间温度等效的假设来延长实验窗口。变化裂纹繁殖速率的断裂韧性转向具有两个矩阵的相反趋势。对于普通的丙烯酸树脂,与粘弹性骨折理论一致地发现了具有裂缝率的单调增加的趋势。对于橡胶 - 增韧树脂,在裂纹尖端发生的失效机制的变化导致裂缝率提高的单调减少趋势。根据拉伸试验期间的体积菌株分析速率和温度效应。复合材料旨在比两种情况下的相关矩阵更耐裂纹传播。分层裂缝韧性已依赖于仅对橡胶增韧基质的裂缝率相同的依赖性。对于基于普通树脂的复合材料,观察到裂缝率对分层裂缝韧性的影响。

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