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首页> 外文期刊>Applied composite materials >Modeling the Effect of Multiple Matrix Cracking Modes on Cyclic Hysteresis Loops of 2D Woven Ceramic-Matrix Composites
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Modeling the Effect of Multiple Matrix Cracking Modes on Cyclic Hysteresis Loops of 2D Woven Ceramic-Matrix Composites

机译:模拟多基质裂解模式对2D编织陶瓷 - 基质复合材料循环滞后环的影响

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摘要

In this paper, the effect of multiple matrix cracking modes on cyclic loading/unloading hysteresis loops of 2D woven ceramic-matrix composites (CMCs) has been investigated. The interface slip between fibers and the matrix existed in matrix cracking mode 3 and mode 5, in which matrix cracking and interface debonding occurred in longitudinal yarns, are considered as the major reason for hysteresis loops of 2D woven CMCs. The effects of fiber volume content, peak stress, matrix crack spacing, interface properties, matrix cracking mode proportion and interface wear on interface slip and hysteresis loops have been analyzed. The cyclic loading/unloading hysteresis loops of 2D woven SiC/SiC composite corresponding to different peak stresses have been predicted using the present analysis. It was found that the damage parameter, i.e., the proportion of matrix cracking mode 3 in the entire cracking modes of the composite, increases with increasing peak stress.
机译:本文研究了多种基质裂化模式对循环加载/卸载滞后环的效果已经研究过2D编织陶瓷基质复合材料(CMCS)。 在矩阵裂化模式3和模式5中存在纤维和矩阵之间的界面滑移,其中在纵向纱线中发生矩阵裂化和界面剥离,被认为是2D编织CMC的滞后环的主要原因。 已经分析了纤维体积含量,峰值应力,基质裂缝间距,界面性质,矩阵裂化模式比例和界面滑动和滞后环上的界面磨损的影响。 使用本分析预测了对应于不同峰值应力的2D编织SiC / SiC复合物的循环加载/卸误磁滞回路。 发现损伤参数,即复合材料的整个开裂模式中的基质裂化模式3的比例随着峰值应力的增加而增加。

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