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Application of a Microstructure-Based ISV Plasticity Damage Model to Study Penetration Mechanics of Metals and Validation through Penetration Study of Aluminum

机译:基于微结构的ISV塑性损伤模型在金属渗透力学研究中的应用及铝的渗透研究验证

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摘要

A developed microstructure-based internal state variable (ISV) plasticity damage model is for the first time used for simulating penetration mechanics of aluminum to find out its penetration properties. The ISV damage model tries to explain the interplay between physics at different length scales that governs the failure and damage mechanisms of materials by linking the macroscopic failure and damage behavior of the materials with their micromechanical performance, such as void nucleation, growth, and coalescence. Within the continuum modeling framework, microstructural features of materials are represented using a set of ISVs, and rate equations are employed to depict damage history and evolution of the materials. For experimental calibration of this damage model, compression, tension, and torsion straining conditions are considered to distinguish damage evolutions under different stress states. To demonstrate the reliability of the presented ISV model, that model is applied for studying penetration mechanics of aluminum and the numerical results are validated by comparing with simulation results yielded from the Johnson-Cook model as well as analytical results calculated from an existing theoretical model.
机译:一种基于微观结构的内部状态变量(ISV)可塑性损伤模型已首次用于模拟铝的渗透机理,以了解铝的渗透性能。 ISV破坏模型试图通过将材料的宏观破坏和破坏行为与它们的微机械性能(例如空核,生长和聚结)联系起来,来解释不同长度尺度上的物理之间的相互作用,这些相互作用决定了材料的破坏和破坏机理。在连续模型框架内,使用一组ISV来表示材料的微观结构特征,并使用速率方程来描述材料的破坏历史和演变。为了对该损伤模型进行实验校准,考虑了压缩,拉伸和扭转应变条件以区分不同应力状态下的损伤演变。为了证明所提出的ISV模型的可靠性,将该模型用于研究铝的渗透力学,并通过与Johnson-Cook模型产生的模拟结果以及现有理论模型计算的分析结果进行比较,验证了数值结果。

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  • 来源
    《Modelling and simulation in engineering》 |2017年第2017期|6189168.1-6189168.10|共10页
  • 作者单位

    Department of Mechanical Engineering, Mississippi State University, Mississippi State, MS 39762, USA;

    Department of Mechanical Engineering, Mississippi State University, Mississippi State, MS 39762, USA;

    Center of Advanced Vehicular Systems, Mississippi State University, Mississippi State, MS 39762, USA;

    Center of Advanced Vehicular Systems, Mississippi State University, Mississippi State, MS 39762, USA;

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