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Effect of Fiber Waviness on the Tensile Response of 2D C(f)/SiC Ceramic Matrix Composites

机译:纤维波纹度对二维C(f)/ SiC陶瓷基复合材料拉伸响应的影响

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摘要

The mastercurve approach was employed to analyze the response of a satin weave and a plain weave reinforced C(f)/SiC ceramic matrix composite under tensile loading at both room and elevated temperatures. For each test specimen, the mastercurve was used to determine the magnitude of the axial residual stresses and to derive the "actual" values of the constituent properties, namely the first additional matrix cracking stress and the fiber fracture stress. It is shown that the waviness of the fiber reinforcement affects the matrix cracking stress but that the type of weave does not influence the in-situ fiber strength properties.
机译:采用主曲线方法来分析缎纹编织和平纹增强的C(f)/ SiC陶瓷基复合材料在室温和高温下的拉伸载荷下的响应。对于每个试样,使用主曲线确定轴向残余应力的大小,并得出组成特性的“实际”值,即第一个附加的基体开裂应力和纤维断裂应力。结果表明,纤维增强材料的波纹度会影响基体的开裂应力,但编织类型不会影响原位纤维强度特性。

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