小规长情况下SiC纤维威布尔强度估计中的偏差

T. Morimoto, S. Nakagawa, S. Ogihara
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引用次数: 14

摘要

单模态威布尔模型很好地描述了脆性纤维抗拉强度的尺寸效应。然而,一些陶瓷纤维的单模态Weibull模型对规长依赖性的估计存在偏差。关于偏差的一个假设是,临界缺陷的密度非常小,因此小规长样品的断裂概率呈离散分布,这使得威布尔参数依赖于规长。以Tyranno ZMI Si-Zr-C-O光纤为例。拉伸试验已在几种规格长度上完成。推导出的威布尔参数与规范长度有关。用扫描电镜观察断口形貌。然后将断裂面划分为特征断裂模式。每种裂缝类型的百分比也与测量长度有关。这可能是威布尔参数依赖于量规长度的一个重要因素。
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Bias in the Weibull Strength Estimation of a SiC Fiber for the Small Gauge Length Case
It is known that the single-modal Weibull model describes well the size effect of brittle fiber tensile strength. However, some ceramic fibers have been reported that single-modal Weibull model provided biased estimation on the gauge length dependence. A hypothesis on the bias is that the density of critical defects is very small, thus, fracture probability of small gauge length samples distributes in discrete manner, which makes the Weibull parameters dependent on the gauge length. Tyranno ZMI Si-Zr-C-O fiber has been selected as an example fiber. The tensile tests have been done on several gauge lengths. The derived Weibull parameters have shown a dependence on the gauge length. Fracture surfaces were observed with SEM. Then we classified the fracture surfaces into the characteristic fracture patterns. Percentage of each fracture pattern was found dependent on the gauge length, too. This may be an important factor of the Weibull parameter dependence on the gauge length.
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