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Dynamic ductile fracture in aluminum round bars: experiments and simulations

机译:铝圆棒的动态延性断裂:实验和模拟

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The application of rate-dependent cohesive elements is validated in simulation of ductile fracture in aluminum round bars under dynamic loading conditions. Smooth and notched round bars made of AA6060-T6 are tested and simulated under quasi-static and dynamic loadings. The smooth round bar is modeled using finite elements that obey Gurson-Tvergaard-Needleman (GTN) formulation as the constitutive equation. Comparing with experimental results, corresponding GTN parameters and rate-dependent plasticity of the alloy are obtained. A single strain rate-dependent GTN element with the obtained parameters is examined under different values of stress triaxiality and loading rates. The resulting stress-elongation curves represent the traction separation law (TSL) for cohesive elements and the variations of the maximum traction and the energy absorbed are investigated. The notched round bars are modeled by axisymmetric continuum and cohesive elements. The undamaged bulk material is elastic-visco plastic and the cohesive elements obey the TSL defined from the single element calculations. The experiments are simulated by these models in which the cohesive elements are rate sensitive and automatically obtain the values of the total strain rate from their adjacent continuum elements to update the values of the cohesive strength during the analysis. The results of the analysis, including maximum load, time of failure and diameter reduction are validated with the experimental results. The effects of element size, rate-dependent plasticity of the material and stress triaxiality are also discussed.
机译:在动态载荷条件下,在铝圆棒的延性断裂模拟中验证了速率依赖的内聚元素的应用。在准静态和动态载荷下测试和模拟了由AA6060-T6制成的光滑且有缺口的圆钢。使用服从Gurson-Tvergaard-Needleman(GTN)公式作为本构方程的有限元建模平滑圆棒。与实验结果比较,获得了合金的相应GTN参数和速率依赖性塑性。在不同的应力三轴性和加载速率下,对具有获得的参数的依赖于应变速率的GTN单元进行检查。所得的应力-伸长率曲线代表了内聚元件的牵引分离定律(TSL),并研究了最大牵引力和吸收的能量的变化。缺口圆棒由轴对称连续体和内聚元素建模。完好无损的散装材料是弹性粘胶塑料,并且粘性元素遵循单元素计算中定义的TSL。通过这些模型对实验进行了仿真,其中内聚元素对速率敏感,并自动从其相邻的连续体元素获取总应变率的值,以在分析过程中更新内聚强度的值。实验结果验证了分析结果,包括最大载荷,失效时间和直径减小。还讨论了元素尺寸,材料的速率依赖性可塑性和应力三轴性的影响。

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