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Tensile mechanical behavior of T300 and M40J fiber bundles at different strain rate

机译:T300和M40J纤维束在不同应变速率下的拉伸力学行为

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Tensile mechanical behavior of T300 fiber bundles and M40J fiber bundles have been studied in the strain rate range from 0.001 1/s to 1300 1/s and complete stress strain curves were obtained. Results show that both ultimate strength and failure strain of two materials are strain rate insensitive, and T300 fiber and M40J fiber can be regarded as strain rate insensitive materials. On basis of the fiber bundles model and the statistic theory of fiber strength, single Weibull distribution model and bimodal Weibull distribution model have been developed to describe mechanical behavior of fiber bundles. And a method for determine the statistic parameters of fibers by tensile tests of fiber bundles is established, too. The simulated stress strain curves from the model are in good agreement with the test data. Simulated results show that the strength of T300 fiber can be described by single Weibull distribution function, and the strength of M40J fiber should be described by bimodal Weibull distribution function. (C) 2001 Kluwer Academic Publishers. [References: 5]
机译:研究了T300和M40J纤维束在0.001 1 / s至1300 1 / s应变速率下的拉伸力学行为,并获得了完整的应力应变曲线。结果表明,两种材料的极限强度和破坏应变均对应变率不敏感,可以认为T300和M40J纤维是应变率不敏感的材料。在纤维束模型和纤维强度统计理论的基础上,建立了描述纤维束力学行为的单Weibull分布模型和双峰Weibull分布模型。建立了通过纤维束拉伸试验确定纤维统计参数的方法。该模型的模拟应力应变曲线与试验数据吻合良好。仿真结果表明,T300纤维的强度可以用单一的威布尔分布函数来描述,而M40J纤维的强度可以用双峰的威布尔分布函数来描述。 (C)2001 Kluwer学术出版社。 [参考:5]

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