首页> 外文期刊>International Journal for Multiscale Computational Engineering >ON THE STRENGTH RELIABILITY OF STATISTICALLY HETEROGENEOUS MATERIALS WITH MICROSTRUCTURE AT DIVERSE SCALES
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ON THE STRENGTH RELIABILITY OF STATISTICALLY HETEROGENEOUS MATERIALS WITH MICROSTRUCTURE AT DIVERSE SCALES

机译:尺度下具有微观结构的统计非均质材料的强度可靠性

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The paper examines the effects of microstructure realized at diverse scales on the overall strength reliability of the material. Reliability, or more precisely indirect reliability evaluated herein through the spatial fluctuations of strength, is shown to depend strongly on the scale-wise distribution of heterogeneity as well as on the size of a specimen or structure. In particular, for a polycrystalline material with pores, the overall (indirect) strength reliability increases as (a) the average grain size decreases relevant to the that of the pores, (b) the variance of the grain size decreases relevant to that of the pores, and (c) the size of a specimen or structure or material building block decreases. Under certain conditions, it is possible to reach near-zero or even zero variance, implying perfect reliability. The major conclusion is that scales interact with each other and that affects the overall fluctuations in material properties, thus providing renewed opportunities for tailoring the reliability of materials. The major conclusion is amenable to experimental investigation and verification for different heterogeneity scenarios.
机译:本文研究了在不同尺度下实现的微观结构对材料整体强度可靠性的影响。可靠性,或更确切地说是通过强度的空间波动评估的间接可靠性,在很大程度上取决于异质性的按比例分布以及样本或结构的尺寸。特别是,对于具有孔的多晶材料,总体(间接)强度可靠性随着(a)与孔的平均粒径相关的平均晶粒尺寸的减小,(b)与孔的粒径相关的晶粒尺寸的差异的减小而增加。 (c)样品或结构或材料构件的尺寸减小。在某些条件下,有可能达到接近零甚至零的方差,这意味着完美的可靠性。主要结论是,秤彼此相互作用并且影响材料性能的整体波动,从而为调整材料的可靠性提供了新的机会。主要结论适合不同异质性场景的实验研究和验证。

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