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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Fishnet model with order statistics for tail probability of failure of nacreous biomimetic materials with softening interlaminar links
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Fishnet model with order statistics for tail probability of failure of nacreous biomimetic materials with softening interlaminar links

机译:具有网状软化层间链接的仿生珍珠质材料尾部失效概率的具有顺序统计量的鱼网模型

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摘要

The staggered (or imbricated) lamellar "brick-and-mortar" nanostructure of nacre endows nacre with strength and fracture toughness values exceeding by an order of magnitude those of the constituents, and inspires the advent of new robust biomimetic materials. While many deterministic studies clarified these advantageous features in the mean sense, a closed-form statistical model is indispensable for determining the tail probability of failure in the range of 1 in a million, which is what is demanded for most engineering applications. In the authors' preceding study, the so-called 'fishnet' statistics, exemplified by a diagonally pulled fishnet, was conceived to describe the probability distribution. The fishnet links, representing interlaminar bonds, were considered to be elastic perfectly-brittle. However, the links may often be quasibrittle or almost ductile, exhibiting gradual post peak softening in their stress-strain relation. This paper extends the fishnet statistics to links with post-peak softening slope of arbitrary steepness. Probabilistic analysis is enabled by assuming the postpeak softening of a link to occur as a series of finite drops of stress and stiffness. The maximum load of the structure is approximated by the strength of the kth weakest link (k = 1), and the distribution of structure strength is expressed as a weighted sum of the distributions of order statistics. The analytically obtained probabilities are compared and verified by histograms of strength data obtained by millions of Monte Carlo simulations for each of many nacreous bodies with different link softening steepness and with various overall shapes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:珍珠质的交错的(或成薄片的)层状“砖和砂浆”纳米结构赋予珍珠质以强度和断裂韧性值超过构成成分的数量级的数量级,并激发了新的坚固的仿生材料的出现。尽管许多确定性研究从平均意义上阐明了这些优势,但闭合形式的统计模型对于确定百万分之1的故障尾部概率是必不可少的,这是大多数工程应用所需要的。在作者的先前研究中,以对角拉动的渔网为例,即所谓的“渔网”统计数据被用来描述概率分布。代表层间键的鱼网链接被认为是弹性的完美脆性。但是,这些连接通常可能是准脆性的或几乎是延性的,在其应力-应变关系中表现出逐渐的峰后软化。本文将鱼网统计数据扩展到与任意陡峭度的峰后软化斜率相关的链接。通过假设链接的峰后软化以一系列有限的应力和刚度下降发生,从而可以进行概率分析。结构的最大载荷由第k条最弱连接的强度(k> = 1)近似,结构强度的分布表示为阶次统计量分布的加权和。通过数百万个蒙特卡洛模拟获得的强度数据的直方图,比较并分析了所获得的概率,这些强度数据是针对具有不同链节软化陡度且具有各种总体形状的许多珠体的每一个。 (C)2018 Elsevier Ltd.保留所有权利。

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