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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Effect of Water Absorption on Interaction between Matrix Cracking and Fiber Bridging for Stress Corrosion Cracking of PMC
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Effect of Water Absorption on Interaction between Matrix Cracking and Fiber Bridging for Stress Corrosion Cracking of PMC

机译:吸水对PMC应力腐蚀开裂的基体开裂与纤维桥接相互作用的影响

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The effect of water on fiber bridging of polymer matrix composites (PMCs) has been studied for stress-corrosion cracking (SCC). The fiber bridging during crack propagation in the PMC was observed directly using a transparent polymer matrix. Specimens were immersed and weighed just before conducting the crack propagation test. The contribution of mechanical degradation caused by the water to the bridging was measured as a function of weight gain due to water absorption. The critical energy release rate of the matrix decreased with increase of the water absorption. The energy release rate of a bridged crack varied with the water absorption. To investigate the variation in the bridging mechanism under the water environment, we calculated the bridging stress the σ_t and the bridging contribution to crack propagation resistance ΔG based on a single-fiber bridging mechanism with the interfacial debonding length and the interfacial debonding energy. The debonding length was measured directly, and the debonding energy was obtained in a fragmentation test. The calculation showed that the increase in the interfacial debonding length influenced the fiber bridging mechanism.
机译:对于应力腐蚀开裂(SCC),已经研究了水对聚合物基复合材料(PMC)纤维桥接的影响。使用透明的聚合物基质可以直接观察到PMC中裂纹扩展过程中的纤维桥接。在进行裂纹扩展测试之前,将样品浸没并称重。由水引起的机械降解对桥接的贡献是由于吸水引起的重量增加的函数。基质的临界能量释放速率随吸水率的增加而降低。桥接裂纹的能量释放速率随吸水率而变化。为了研究水环境下桥接机制的变化,我们基于具有界面剥离长度和界面剥离能的单纤维桥接机制,计算了桥接应力σ_t和桥接对裂纹扩展阻力ΔG的贡献。直接测量脱粘长度,并在断裂试验中获得脱粘能量。计算表明,界面剥离长度的增加影响了纤维的桥接机理。

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