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基于随机体积元的各向同性细纤维网络随机本构模型

Stochastic Constitutive Model of Isotropic Thin Fiber Networks Based on Stochastic Volume Elements.

作者信息

Mansour Rami, Kulachenko Artem, Chen Wei, Olsson Mårten

机构信息

Department of Solid Mechanics, Royal Institute of Technology, SE-100 44 Stockholm, Sweden.

Department of Mechanical Engineering, Northwestern University, Evanston, IL 60208, USA.

出版信息

Materials (Basel). 2019 Feb 11;12(3):538. doi: 10.3390/ma12030538.

Abstract

Thin fiber networks are widely represented in nature and can be found in man-made materials such as paper and packaging. The strength of such materials is an intricate subject due to inherited randomness and size-dependencies. Direct fiber-level numerical simulations can provide insights into the role of the constitutive components of such networks, their morphology, and arrangements on the strength of the products made of them. However, direct mechanical simulation of randomly generated large and thin fiber networks is characterized by overwhelming computational costs. Herein, a stochastic constitutive model for predicting the random mechanical response of isotropic thin fiber networks of arbitrary size is presented. The model is based on stochastic volume elements (SVEs) with SVE size-specific deterministic and stochastic constitutive law parameters. The randomness in the network is described by the spatial fields of the uniaxial strain and strength to failure, formulated using multivariate kernel functions and approximate univariate probability density functions. The proposed stochastic continuum approach shows good agreement when compared to direct numerical simulation with respect to mechanical response. Furthermore, strain localization patterns matched the one observed in direct simulations, which suggests an accurate prediction of the failure location. This work demonstrates that the proposed stochastic constitutive model can be used to predict the response of random isotropic fiber networks of arbitrary size.

摘要

细纤维网络在自然界中广泛存在,在纸张和包装等人造材料中也能找到。由于其固有的随机性和尺寸依赖性,此类材料的强度是一个复杂的课题。直接在纤维层面进行数值模拟可以深入了解此类网络的组成成分、形态及其排列对由它们制成的产品强度的作用。然而,对随机生成的大型细纤维网络进行直接力学模拟的计算成本极高。在此,提出了一种用于预测任意尺寸各向同性细纤维网络随机力学响应的随机本构模型。该模型基于具有特定尺寸的确定性和随机本构定律参数的随机体积单元(SVE)。网络中的随机性通过单轴应变和破坏强度的空间场来描述,使用多元核函数和近似单变量概率密度函数来表述。与直接数值模拟相比,所提出的随机连续介质方法在力学响应方面显示出良好的一致性。此外,应变局部化模式与直接模拟中观察到的模式相匹配,这表明对破坏位置的预测是准确的。这项工作表明,所提出的随机本构模型可用于预测任意尺寸的随机各向同性纤维网络的响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/204a/6384688/47c29aba8752/materials-12-00538-g001.jpg

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