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A modified secant formulation to predict the overall behavior of elasto-viscoplastic particulate composites

机译:一种改进的割线配方,可预测弹黏塑性颗粒复合材料的整体性能

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To model the mechanical response of rate-dependent elasto-viscoplastic (or equivalently nonlinear viscoelastic) particulate composites, the proposed approach consists in linearizing the (nonlinear) relation between the viscous strain rate and the stress. To obtain a tractable problem, the linearized properties (viscous modulus, stress-free strain rate) are chosen uniform per phase: in each phase, they are computed for reference stresses per phase. Thus, we obtain a fictitious linear viscoelastic solid whose microstructure is the same as the previous one and submitted to additional uniform stress-free strains per phase. For two-phases isotropic particulate composites, this general formulation associated to Hashin-Shtrikman estimates of the above-mentioned fictitious linear viscoelastic solid yields closed-form expressions of the time evolution of the effective behavior as well as phase-averaged mechanical fields expressed as a set of nonlinear first-order differential equations. Since the linearized properties in the matrix phase are based on the second-order moment of the stress field, these estimates coincides with the upper bound (Ponte Castaneda, 1992) in the putely viscoplastic regime. These estimates are also consistent with the one given for non aging linear viscoelastic composites (correspondence principle). Finally, full-field computations are used to asses the quality of these estimates fot various loading conditions varying from a pure shear to a pure differential swelling loading for moderate to highly contrasted behaviors and including non monotonic and non radial effects.
机译:为了对速率依赖的弹粘塑性(或等效的非线性粘弹性)颗粒复合材料的机械响应进行建模,所提出的方法在于线性化粘滞应变速率与应力之间的(非线性)关系。为了解决一个棘手的问题,线性化的属性(粘弹性模量,无应力应变率)在每个阶段均应选择均匀:在每个阶段,均针对每个阶段的参考应力进行计算。因此,我们获得了一种虚拟的线性粘弹性固体,其微观结构与先前的相同,并且每相都要承受额外的均匀无应力应变。对于两相各向同性的颗粒复合材料,该一般公式与上述虚拟线性粘弹性固体的Hashin-Shtrikman估计有关,可表示有效行为的时间演化以及相平均力学场的闭合形式,表示为非线性一阶微分方程组。由于基体相的线性化特性是基于应力场的二阶矩,因此这些估计值与腻子粘塑性状态的上限(Ponte Castaneda,1992)是一致的。这些估算值也与非老化线性粘弹性复合材料的估算值一致(对应原理)。最后,全场计算可用于评估各种载荷条件(从纯剪切载荷到纯差分膨胀载荷)的中等或高度对比行为,包括非单调和非径向影响,这些估计的质量。

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