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Acoustic emission and electrical resistance in SiC-based laminate ceramic composites tested under tensile loading

机译:基于SiC的层压陶瓷复合材料的声发射和电阻在拉伸载荷下测试

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摘要

Acoustic emission and electrical resistance were monitored for SiC-based laminate composites while loaded in tension and correlated with damage sources. The ceramic matrix composites were composed of Hi-Nicalon Type S-TM fibers, a boron-nitride interphase, and pre-impregnated (pre-preg) melt-infiltrated silicon/SiC matrix. Tensile load-unload-reload or tensile monotonic tests were performed to failure or to a predetermined strain condition. Some of the specimens were annealed which relieved some residual matrix compressive stress and enabled higher strains to failure. Differences in location, acoustic frequency and energy, and quantity of matrix cracking have been quantified for unidirectional and cross-ply type architectures. Consistent relationships were found for strain and matrix crack density with acoustic emission activity and the change in measured electrical resistance measured at either the peak stress or after unloading to a zero-stress state. Fiber breakage in the vicinity of composite failure was associated with high frequency, low energy acoustic events. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对SiC基层压板复合材料在拉伸加载时的声发射和电阻进行了监测,并与损伤源进行了关联。陶瓷基复合材料由Hi-Nicalon型S-TM纤维、氮化硼界面和预浸(预浸)熔渗硅/碳化硅基体组成。拉伸加载-卸载-再加载或拉伸单调试验被执行到失效或预定应变条件。一些试样经过退火处理,消除了一些残余基体压应力,并使较高的应变失效。对于单向和交叉铺层结构,已对位置、声频和能量以及基体开裂数量的差异进行了量化。发现应变和基体裂纹密度与声发射活动以及峰值应力或卸载至零应力状态后测得的电阻变化之间存在一致的关系。复合材料失效附近的纤维断裂与高频低能声事件有关。(C) 2017爱思唯尔有限公司版权所有。

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