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Fracture criterion for brittle materials based on finite statistical cells

机译:基于有限统计单元的脆性材料断裂准则

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摘要

An analytical consideration of the Weibull Statistical Analysis of brittle materials established the necessity of including one additional material constant for a more comprehensive description of the failure behaviour. The Weibull analysis is restricted to infinitesimal volume elements in consequence of the differential calculus applied. It was found that infinitesimally small elements are in conflict with the basic statistical assumption and that the differential calculus is not needed in fact since nowadays most of the stress analyses are based on finite element calculations, and these are most suitable for a subsequent statistical analysis of strength. The size of a finite statistical cell has been introduced as the third material parameter. It should represent the minimum volume containing all statistical features of the material such as distribution of pores, flaws and grains. The new approach also contains a unique treatment of failure under multiaxial stresses. The quantity responsible for failure under multiaxial stresses is introduced as a modified strain energy. Sixteen different tensile specimens including CT-specimens have been investigated experimentally and analyzed with the probabilistic fracture criterion. As a result it can be stated that the failure rates of all types of specimens made from three different grades of graphite are predictable. The accuracy of the.prediction is one standard deviation.
机译:对脆性材料进行威布尔统计分析的分析考虑确定了必须包括一个附加的材料常数,以便更全面地描述破坏行为。由于应用了微积分,Weibull分析仅限于无穷小体积元素。结果发现,无限小的元素与基本的统计假设相抵触,实际上不需要微分运算,因为当今大多数应力分析都是基于有限元计算的,并且这些最适合于后续的统计分析。强度。有限统计单元的大小已被引入作为第三材料参数。它应代表包含材料的所有统计特征(例如孔,缺陷和晶粒的分布)的最小体积。新方法还包含在多轴应力下失效的独特处理方法。引入多轴应力下破坏的量作为改进的应变能。实验研究了16种不同的拉伸试样,包括CT试样,并根据概率断裂准则进行了分析。结果可以证明,由三种不同等级的石墨制成的所有类型样品的失效率是可以预测的。预测的准确性是一个标准偏差。

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