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首页> 外文期刊>International Journal of Plasticity >Simulation of damage evolution in ductile metals undergoing dynamic loading conditions
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Simulation of damage evolution in ductile metals undergoing dynamic loading conditions

机译:动态载荷条件下韧性金属损伤演化的模拟

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A set of constitutive equations for large rate-dependent elastic-plastic-damage materials at elevated temperatures is presented to be able to analyze adiabatic high strain rate deformation processes for a wide range of stress triaxialities. The model is based on the concepts of continuum damage mechanics. Since the material macroscopic thermo-mechanical response under large strain and high strain rate deformation loading is governed by different physical mechanisms, a multi-dissipative approach is proposed. It incorporates thermo-mechanical coupling effects as well as internal dissipative mechanisms through rate-dependent constitutive relations with a set of internal variables. In addition, the effect of stress triaxiality on the onset and evolution of plastic flow, damage and failure is discussed. Furthermore, the algorithm for numerical integration of the coupled constitutive rate equations is presented. It relies on operator split methodology resulting in an inelastic predictor-elastic corrector technique. The explicit finite element program LS-DYNA augmented by an user-defined material subroutine is used to approximate boundary-value problems under dynamic loading conditions. Numerical simulations of dynamic experiments with different specimens are performed and good correlation of numerical results and published experimental data is achieved. Based on numerical studies modified specimens geometries are proposed to be able to detect complex damage and failure mechanisms in Hopkinson-Bar experiments.
机译:提出了一组在高温下依赖于速率的较大的弹塑性损伤材料的本构方程,从而能够分析绝热的高应变速率变形过程,适用于各种应力三轴性。该模型基于连续损伤机制的概念。由于材料在大应变和高应变率变形载荷下的宏观热力学响应受不同的物理机制支配,因此提出了一种多耗散的方法。它通过与速率相关的本构关系和一组内部变量,结合了热力耦合效应和内部耗散机制。此外,还讨论了应力三轴性对塑性流动,破坏和破坏的发生和演变的影响。此外,提出了耦合本构速率方程数值积分的算法。它依赖于运算符拆分方法,从而产生无弹性的预测器-弹性校正器技术。由用户定义的材料子例程扩展的显式有限元程序LS-DYNA用于近似动态载荷条件下的边值问题。进行了具有不同样本的动态实验的数值模拟,并且数值结果与已发布的实验数据具有良好的相关性。基于数值研究,提出了修改后的标本几何形状,以便能够在Hopkinson-Bar实验中检测复杂的破坏和破坏机制。

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