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Computational comparisons of homogeneous and statistical descriptions of AerMetlOO steel subjected to high strain rate loading

机译:高应变速率载荷下AerMetlOO钢的均质和统计描述的计算比较

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In order to simulate the effect of material microstructure a statistically compensated Johnson-Cook (JC) fracture model has been implemented into the Eulerian shock physics code, CTH. This model uses a Weibull function to produce a distribution of initial failure strains within the JC fracture model. A parametric analysis where the Weibull modulus was systematically varied was conducted on two sets of experimental fragmentation data. The first experiment consisted of an explosively loaded cylinder of AerMetlOO. The second was an expanding tube experiment which used a plastic cylinder to load the AerMetlOO and provided a problem at a lower strain rate. In both sets of experiments, the fragments were soft captured for later examination. While CTH does not explicitly track fragments, a post processor written at the Naval Surface Warfare Center Dahlgren Division was used to calculate the mass of each of the fragments in the expanding debris cloud. The results were analyzed and compared back to baseline homogeneous calculations. The use of a statistically compensated JC fracture model substantially improved the fragment mass distribution for the explosively loaded cylinder. However, the lower strain rate expanding tube showed only minimal improvement. A probable reason for this limitation and future analysis are discussed.
机译:为了模拟材料微观结构的影响,已在欧拉冲击物理代码CTH中实现了经统计补偿的Johnson-Cook(JC)断裂模型。该模型使用Weibull函数在JC断裂模型内生成初始破坏应变的分布。对两组实验碎片数据进行了参数化分析,其中韦伯模量有系统地变化。第一个实验由爆炸性加载的AerMetlOO圆柱组成。第二个是膨胀管实验,该实验使用塑料圆柱体加载AerMetlOO,并在较低的应变速率下产生了问题。在两组实验中,片段均被软捕获以供以后检查。尽管CTH并未明确跟踪碎片,但使用了海军水面作战中心达尔格伦分部编写的后处理器来计算扩展的碎片云中每个碎片的质量。分析结果并将其与基准齐次计算进行比较。统计补偿的JC断裂模型的使用大大改善了爆炸载荷圆柱体的碎片质量分布。然而,较低应变率的膨胀管仅显示出最小的改善。讨论了这种限制的可能原因以及未来的分析。

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