【2h】

An improved computational constitutive model for glass

机译:一种改进的玻璃计算本构模型

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摘要

In 2011, Holmquist and Johnson presented a model for glass subjected to large strains, high strain rates and high pressures. It was later shown that this model produced solutions that were severely mesh dependent, converging to a solution that was much too strong. This article presents an improved model for glass that uses a new approach to represent the interior and surface strength that is significantly less mesh dependent. This new formulation allows for the laboratory data to be accurately represented (including the high tensile strength observed in plate-impact spall experiments) and produces converged solutions that are in good agreement with ballistic data. The model also includes two new features: one that decouples the damage model from the strength model, providing more flexibility in defining the onset of permanent deformation; the other provides for a variable shear modulus that is dependent on the pressure. This article presents a review of the original model, a description of the improved model and a comparison of computed and experimental results for several sets of ballistic data. Of special interest are computed and experimental results for two impacts onto a single target, and the ability to compute the damage velocity in agreement with experiment data.This article is part of the themed issue ‘Experimental testing and modelling of brittle materials at high strain rates’.
机译:在2011年,Holmquist和Johnson提出了一种用于承受大应变,高应变率和高压的玻璃的模型。后来显示,此模型产生的解决方案严重依赖于网格,最终收敛到过于强大的解决方案。本文介绍了一种改进的玻璃模型,该模型使用一种新方法来表示内部和表面强度,而这种依赖关系显着地减少了对网格的依赖性。这种新的配方可以精确地表示实验室数据(包括在板撞击剥落实验中观察到的高抗拉强度),并产生与弹道数据高度吻合的收敛解。该模型还包括两个新功能:一个将损坏模型与强度模型分离,在定义永久变形的开始时提供了更大的灵活性;另一个提供取决于压力的可变剪切模量。本文介绍了原始模型的概述,改进模型的描述以及几组弹道数据的计算结果和实验结果的比较。特别令人感兴趣的是,计算了两个撞击到单个目标上的实验结果,并具有与实验数据相一致的计算破坏速度的能力。 '。

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