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修正的断裂镜面法及其在C_f/SiC复合材料中的应用——碳纤维的就位强度

Up-dated Fracture Mirror Method and its Application in Cf/SiC Composites-In-situ Strength of Carbon Fibers

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【作者】 江大志汪洋周元鑫夏源明

【Author】 Dazhi Jiang, Yang Wang, Yuanxing Zhou & Yuanming Xia Department of Modern Mechanics, University of Science & Technology of China, Hefei, Anhui, 230027,P.R.China School of Aerospace and Materials Engineering, National University of Defense Technology, Changsha, Hunan,410073, P.R. China

【机构】 中国科学技术大学力学与机械工程系

【摘要】 本文采用修正的断裂镜面法,即采用纤维束试验确定镜面常数,将标距长度定义为两倍纤维拔出长度与两倍失效长度之和,采用分级平均统计分析方法确定纤维就位强度的Weibull参数和平均强度,对聚合物先驱体转化法制备的M40JB纤维增强的碳化硅基复合材料中M40JB碳纤维的就位强度进行了分析,得到了M40JB纤维的Wcibull参数和平均强度,并与未修正的断裂镜面法得到的结果进行了比较。

【Abstract】 The up-dated fracture mirror method was applied to evaluation of the in-situ strength of fibers in ceramic composites. The most significant modifications include (1) the mirror constant replies on the tensile test of fiber bundles instead of single fiber test and (2) the gauge length parameter is redefined. Traditionally the gauge length parameter was considered as mean fiber pull out length. In this study, by analyzing the mechanism of fiber pullout, the parameter was defined as the sum of double pullout length and double ineffective length of the broken fibers and the random parameter was then graded statistically. Based on this method, Weibull parameters and mean in-situ strength of the M40JB fiber embedded in SiC matrix composites produced from polymer precursor were obtained. The experimental results show that the Weibull shape parameters of fabricated fibers and in-situ ones are nearly identical, but the scale parameter of in-situ fiber strength is much lower than that of the fabricated one. That means the flaws position distribution in both fibers does not vary obviously, however, the flaws are deeper in in-situ fiber than in fabricated one and that leads the strength of the former fiber decreases markedly.

【基金】 中国博士后科学基金
  • 【会议录名称】 复合材料的现状与发展——第十一届全国复合材料学术会议论文集
  • 【会议名称】第十一届全国复合材料学术会议
  • 【会议时间】2000-10
  • 【会议地点】中国合肥
  • 【分类号】TB332
  • 【主办单位】中国力学学会
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