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首页> 外文期刊>International Journal of Plasticity >A homogenization scheme for elastoplastic composites using concept of Mori-Tanaka method and average deformation power rate density
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A homogenization scheme for elastoplastic composites using concept of Mori-Tanaka method and average deformation power rate density

机译:利用森达卡法概念和平均变形功率密度概念的弹性复合材料均质化方案

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The conventional mean-field homogenization (MFH) schemes are mainly based on the volume averages of stress and strain (or their rates), which do not seem sufficiently universal. In this paper, we proposed a new scheme for estimating the mechanical properties of elastoplastic composites, which makes use of the concepts the Mori-Tanaka (M-T) scheme and average deformation power rate density that can be expressed as a second-order moment of stress/strain rate. In the proposed scheme, the equality between the average deformation power rate density of a composite and those of its constituents is used as one of the mandatory conditions for the determination of the overall tangent stiffness of the composite, which was found to have Voigt symmetry. For a composite consisting of elastic constituents, the equality between the average deformation power rate density of the composite and those of its constituents are reduced to the equality between the average strain energy density of the composite and those of its constituents, and the resulting overall stiffness of the composites has the same expression as that of elastoplastic composites. To verify the proposed scheme, the elastoplastic behaviors of some particulate composites were predicted and compared with that obtained respectively using the finite element approach, the conventional M-T scheme, and the Hill's self-consistent (S-C) scheme. It showed that the proposed scheme could satisfactorily replicate the elastoplastic responses of composites reinforced with spheroidal particle inclusions of moderate volume fraction and aspect ratios, and in many cases it could give better predictions compared with that obtained using the conventional M-T and S-C schemes.
机译:常规的平均场均质化(MFH)方案主要基于应力和应变(或其速率)的体积平均值,这似乎并不充分通用。在本文中,我们提出了一种估计弹性复合材料的力学性能的新方案,它利用森林田纳卡(MT)方案和平均变形功率密度,可以表达为支力的二阶力矩/应变率。在所提出的方案中,复合材料的平均变形功率密度与其成分的平均值之间的平等用作测定复合材料的整体切线刚度的强制性条件之一,这被发现具有voigt对称性。对于由弹性成分组成的复合材料,复合材料的平均变形功率密度与其成分的平均变形功率密度之间的平等减少到复合材料的平均应变能密度与其成分的平均菌株之间的平等,以及所得的总刚度复合材料的表达与弹塑性复合材料的表达相同。为了验证所提出的方案,预测了一些颗粒复合材料的弹性塑性行为,并与分别使用有限元方法,传统的M-T方案和山的自我一致(S-C)方案相比。结果表明,该方案可以令人满意地复制复合材料的弹性塑料响应,这些组合物与中等体积分数和纵横比的球体颗粒夹杂物,并且在许多情况下,与使用传统的M-T和S-C方案获得的情况相比,它可以提供更好的预测。

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