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Crack propagation and fracture resistance behavior under fatigue loading of a ceramic matrix composite

机译:陶瓷基质复合材料疲劳负载下裂纹繁殖与断裂性能

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The crack growth behavior of unidirectional silicon carbide (SCS-6) fiber reinforced zircon (ZrSiO{sub}4) matrix composites under cyclic fatigue is studied in the temperature range 20 -1400°C. In situ crack length measurements under fatigue loading are obtained from single edge notched specimen using a traveling optical microscope. Fracture resistance curves (R-curve) are obtained from the experimental crack growth data, which show a rising R-curve behavior with a decreasing value of the fracture resistance at elevated temperatures. Numerical analyses/iterations, based on the micromechanical models, are done to determine the relationship between the bridging stress function and the R - curve behavior of the composite. The effect of residual stress and constituent properties such as fiber strength, interfacial shear stress, and matrix toughness on the bridging stress function is systematically studied both at room and elevated temperatures.
机译:在20 -1400℃的温度范围内研究了单向碳化硅(SCS-6)纤维增强锆(Zrsio {Sec} 4)基质复合材料的裂纹生长行为。在使用行驶光学显微镜的单边缘缺口样品中获得疲劳载荷下的原位裂缝长度测量。从实验裂纹生长数据中获得裂缝抗性曲线(R曲线),其显示出升高的抗曲线行为的上升曲线行为,其近升温下的裂缝抗性值下降。基于微机械模型进行数值分析/迭代以确定桥接应力功能与复合材料的R曲线行为之间的关系。在室内和高温下,系统地研究了残余应力和构成性质如纤维强度,界面剪切应力和基质韧性的效果。

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