Strength Improvement on an Imaginary SiC Fiber of Ideal Diameter and Reduced Internal Defects Estimated from the Weibull Scaling of Tyranno ZMI Fiber

T. Morimoto, Koji Yamamoto, S. Ogihara
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引用次数: 4

Abstract

The size effect of the diameter has been assessed for the tensile strength of Tyranno ZMI fiber. Uniform diameter section in sample fibers has been selected as tensile test sample. The single fibers of measured diameters have been tensile tested to provide two groups of data, i.e., “small diameter” group and “large diameter” group. The parameters of single-modal Weibull model showed inconsistency on the two groups, thus the Weibull parameters have shown the dependence on the sample diameter. Scanning electron microscope (SEM) analyses had revealed characteristic fracture patterns of “extremely weak” samples only in “large diameter” group. The key information for improving the reliability was then discussed through coupling the Weibull scaling and the fracture surface analyses. The potential in the strength improvement has been assessed for an imaginary fiber, which does not contain the sources of the characteristic fracture patterns.
从Tyranno ZMI纤维的Weibull标度估计理想直径假想SiC纤维强度的提高和内部缺陷的减少
对Tyranno ZMI纤维的抗拉强度进行了直径尺寸效应评价。选取纤维试样中的等径截面作为拉伸试样。对测量直径的单纤维进行拉伸试验,得到两组数据,即“小直径”组和“大直径”组。单模态威布尔模型的参数在两组上表现出不一致,因此威布尔参数对样本直径表现出依赖性。扫描电镜(SEM)分析显示,只有在“大直径”组中,“极弱”样品的断裂模式才具有特征性。通过威布尔尺度与断口分析的耦合,讨论了提高可靠性的关键信息。对一种假想纤维的强度改进潜力进行了评估,该纤维不包含特征断裂模式的来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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