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Microstructure-level modeling and simulation of the flexural behavior of ceramic tool materials

机译:陶瓷工具材料抗弯性能的微观结构建模与仿真

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摘要

The flexural behavior of ceramic tool materials is investigated by both experiments and numerical simulation. The Voronoi Tessellation hybrid random algorithms are utilized to construct a microstructure model to simulate the flexural behavior of ceramic. The secondary phase volume fraction, the nano-scale particle volume fraction, the grain centroid distribution, and the grain diameter distribution of the materials are considered in the model. The flexural strength of ceramic materials is calculated via the simulation of three-point bending tests. The effects of average grain diameter, nano-scale particle and secondary phase volume fraction on the flexural strength of ceramic materials are systematically studied. The numerical simulation results show good agreement with the experimental results.
机译:通过实验和数值模拟研究了陶瓷工具材料的弯曲行为。利用Voronoi Tessellation混合随机算法来构建微观结构模型,以模拟陶瓷的弯曲行为。模型中考虑了第二相体积分数,纳米级颗粒体积分数,质心分布和粒径分布。陶瓷材料的抗弯强度是通过模拟三点弯曲试验来计算的。系统地研究了平均粒径,纳米级颗粒和第二相体积分数对陶瓷材料抗弯强度的影响。数值模拟结果与实验结果吻合良好。

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