论文标题
预测脆性陶瓷颗粒流量开始时的颗粒状过渡和碎片统计
Predicting high rate granular transition and fragment statistics at the onset of granular flow for brittle ceramics
论文作者
论文摘要
撞击载荷下的脆性材料表现出从破裂的固体到颗粒状培养基的过渡。该过渡向颗粒力学的过渡以及计算模型中最初的初始片段大小和形状分布的适当表示尚不清楚。当前的工作提供了一个数值模型,以分析过渡方案中的竞争性裂纹结合,并洞悉粉碎发作以及随后的颗粒流量的初始条件。使用机翼裂纹生长损伤模型从初始缺陷中获得的裂纹统计数据已被用来在三维中离散地模拟椭圆形裂纹,并且有或没有最小的交点约束。然后,将这些裂缝与附近的裂缝沿着有利的方向合并,并预测了输出片段统计。不断发展的破碎化提供了洞察力的洞察力,以及最终向颗粒力学的过渡以及由此产生的初始碎片统计。已经提出了一个简单的现象学模型,该模型表明了类似于从数值模型获得的过渡标准。
Brittle materials under impact loading exhibit a transition from a cracked solid to a granular medium. Appropriate representation of this transition to granular mechanics and the resulting initial fragment size and shape distribution in computational models is not well understood. The current work provides a numerical model to analyze competitive crack coalescence in the transition regime and provides insight into the onset of comminution and the initial conditions for subsequent granular flow. Crack statistics obtained from initial flaws using a wing crack growth based damage model have been used to discretely model elliptical cracks in three dimensions, with and without a minimal intersection constraint. These cracks are then allowed to coalesce with nearby cracks along favourable directions and the output fragment statistics have been predicted. The evolving fragmentation offers insight into the onset of comminution as well as the final transition to granular mechanics and the resulting initial fragment statistics. A simple phenomenological model has been proposed that suggests a transition criterion resembling the one obtained from the numerical model.