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A Dynamic Damage Model for Uniaxial Compressive Response of AD90 Alumina*

机译:AD90氧化铝的单轴压缩响应动态损伤模型*

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The dynamic response of polycrystalline alumina were investigated in the pressure range of 0-13Gpa by planar impact experiments. Manganin gauges were employed to obtain the stress-time histories. From the free surface particle velocity profiles indicate the dispersion of the "plastic" wave for alumina. Using path line principle of Lagrange Analysis the dynamic mechanical behaviors for alumina under impact loading are analyzed, such as nonlinear, strain rate dependence, dispersion and declination of shock wave in the material. A damage model applicable to ceramics subjected to dynamic compressive loading is developed. The model is based on the damage micromechanics and established on wing crack nucleation and growth. The results of the dynamic damage evolution model are compared to the experimental results and a good correlation is obtained.
机译:通过平面冲击实验在0-13GPa的压力范围内研究了多晶氧化铝的动态响应。使用Manganin仪表获得应力时间历史。从自由表面颗粒速度剖面表示“塑料”波用于氧化铝的分散。利用拉格朗日分析的路径线原理分析了冲击载荷下氧化铝的动态力学行为,例如材料中的非线性,应变率依赖性,分散和抗震率。开发了适用于经受动态压缩荷载荷的陶瓷的损伤模型。该模型基于损坏的微机械,并在机翼裂纹成核和生长上建立。将动态损伤演化模型的结果与实验结果进行了比较,获得了良好的相关性。

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