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首页> 外文期刊>Journal of Composite Materials >WEIBULL ANALYSIS OF THE STRENGTH OF CARBON FIBERS USING LINEAR AND POWER LAW MODELS FOR THE LENGTH EFFECT
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WEIBULL ANALYSIS OF THE STRENGTH OF CARBON FIBERS USING LINEAR AND POWER LAW MODELS FOR THE LENGTH EFFECT

机译:线性和幂定律模型对碳纤维强度的威布尔分析

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摘要

The single-filament test measurements for strength of carbon fibers obtained by Bader and Priest [5] are analyzed using a broader class of Weibull models with the scale parameter assumed to be a function of fiber gauge length. Two specific models are proposed for the fiber gauge length effect on tensile strength: The power law model and a linear model. The methods of maximum likelihood estimation and Weibull plots provide tools for the parameter estimation and assessment of the fitted models. In particular, the models provide excellent prediction of the fiber strength distributions at longer gauge lengths not tested, but illustrate that extrapolation to very short gauge lengths yield larger predicted fiber strengths than those actually observed experimentally, and extrapolation to very long gauge lengths yield smaller predicted fiber strength than observed experimentally. Analysis of the Bader-Priest data using the proposed models supports the observed ''end effects'' (or ''clamp effects'') for short gauge lengths studied initially by Phoenix and Sexsmith [3] and reported also by Stoner, Edie and Durham [4]. [References: 10]
机译:由Bader和Priest [5]获得的碳纤维强度的单丝测试测量值是使用更广泛的Weibull模型类别分析的,比例参数假定为纤维规格长度的函数。针对纤维规格长度对拉伸强度的影响,提出了两个特定的模型:幂律模型和线性模型。最大似然估计和威布尔图的方法提供了用于参数估计和拟合模型评估的工具。特别是,这些模型可以很好地预测未测试的更长标距的纤维强度分布,但是可以说明,对非常短的标距进行外推比对实际实验观察到的纤维强度预测要大,而对很长的标距进行外推可以得出较小的预测纤维强度。纤维强度比实验观察到的强。使用提议的模型对Bader-Priest数据进行的分析支持了Phoenix和Sexsmith [3]最初研究的短轨距的观察到的“末端效应”(或“钳位效应”),并由Stoner,Edie和达勒姆[4]。 [参考:10]

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