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AN EVALUATION OF STRAIN AMPLIFICATION CONCEPTS VIA MONTE CARLO SIMULATIONS OF AN IDEAL COMPOSITE

机译:通过理想复合材料的蒙特卡罗模拟评估应变放大率概念

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In the modeling of carbon-black filled elastomers it is important to have a good estimate of the state of the elastomer itself, since many nonlinear effects originate in the matrix material. A common notion in such estimates is the idea of a ''strain amplification'' factor that relates a macroscopically imposed strain state to the average strain state in the elastomer matrix material. In this paper Mullins and Tobin's interpretation of the Guth-Gold and Smallwood's amplification factor, and a more recent proposal by Govindjee and Simo will be examined. All three theories are compared to the results of a series of Monte Carlo simulations on an ideal composite with a Neo-Hookean matrix and semi-rigid inclusions. Tt is shown that for the idealized material, one can not interpret the Guth-Gold and Smallwood amplification factors as an estimate of the strain state of the matrix material. The theory of Govindjee and Simo, on the other hand, is shown to accurately predict the strain state of the matrix. [References: 23]
机译:在对炭黑填充的弹性体进行建模时,重要的一点是对弹性体本身的状态进行良好的估计,因为许多非线性效应源自基质材料。这种估算中的一个常见概念是“应变放大”因子的概念,该因子将宏观施加的应变状态与弹性体基质材料中的平均应变状态相关联。本文将研究Mullins和Tobin对Guth-Gold和Smallwood的放大因子的解释,以及Govindjee和Simo的最新建议。将这三种理论与一系列理想的复合材料进行的蒙特卡洛模拟的结果进行比较,该复合材料具有新霍克矩阵和半刚性夹杂物。 Tt表明,对于理想化的材料,无法将Guth-Gold和Smallwood放大因子解释为对基质材料应变状态的一种估计。另一方面,Govindjee和Simo的理论可以准确预测矩阵的应变状态。 [参考:23]

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