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首页> 外文期刊>International journal of applied ceramic technology >Effects of Fiber Architecture on Matrix Cracking for Melt-Infiltrated SiC/SiC Composites
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Effects of Fiber Architecture on Matrix Cracking for Melt-Infiltrated SiC/SiC Composites

机译:纤维结构对熔渗SiC / SiC复合材料基体开裂的影响

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摘要

The matrix cracking behavior of slurry cast melt-infiltrated SiC matrix composites consisting of Sylramic-iBN fibers with a wide variety of fiber architectures were compared. The fiber architectures included 2D woven, braided, 3D orthogonal, and angle interlock architectures. Acoustic emission was used to monitor in-plane matrix cracking during unload-reload tensile tests. Two key parameters were found to control matrix-cracking behavior: the fiber volume fraction in the loading direction and the area of the weakest portion of the structure, that is, the largest tow in the architecture perpendicular to the loading direction. Empirical models that support these results are presented and discussed.
机译:比较了由Sylramic-iBN纤维组成的浆料浇铸熔渗SiC基复合材料的基体开裂行为,该基体具有多种纤维结构。光纤架构包括2D编织,编织,3D正交和角度互锁架构。在卸载-再加载拉伸试验中,声发射被用来监测面内基体裂纹。发现了两个关键参数来控制基质开裂行为:纤维在加载方向上的体积分数和结构最薄弱部分的面积,即结构中垂直于加载方向的最大丝束。提出并讨论了支持这些结果的经验模型。

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    Ohio Aerospace Institute, 22800 Cedar Point Road, Cleveland, Ohio 44142;

    rnNASA Glenn Research Center, 21000 Brookpark Road, Cleveland, Ohio 44135;

    rnNASA Glenn Research Center, 21000 Brookpark Road, Cleveland, Ohio 44135;

    rnMatech GSM, 31304 Via Colinas, Suite 102, Westlake Village, California 91362;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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