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Finite element simulation of Vickers micro-indentation test of micro-nano-composite ceramic tool materials based on microstructure model

机译:基于微观结构模型的微纳米复合陶瓷刀具材料维氏显微压痕试验的有限元模拟

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摘要

In order to investigate the influence of microstructure on hardness, a finite element method is applied to simulate the Vickers micro-indentation process in micro-nano-composite ceramic tool materials on the basis of a microstructure level model. The microstructure model is constructed based on Voronoi Tessellation hybrid random algorithms. The secondary phase volume fraction, the nano-scale particle volume fraction, the grain centroid distribution, and the grain diameter distribution of the materials are simulated in this model. The hardness of ceramic materials is calculated by the numerical simulation results. The effects of average grain diameter, secondary phase volume fraction and nano-scale particle on the hardness of ceramic materials are investigated. The results of numerical simulation agree with the results of experiment excellently. The quantitative relationship between hardness and microstructure can be used to design the new tool material with improved properties. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了研究显微组织对硬度的影响,在显微组织水平模型的基础上,采用有限元方法模拟了微纳米复合陶瓷刀具材料的维氏显微压痕过程。基于Voronoi Tessellation混合随机算法构建了微结构模型。在该模型中模拟了第二相体积分数,纳米级颗粒体积分数,晶粒质心分布和材料的粒径分布。通过数值模拟结果计算出陶瓷材料的硬度。研究了平均粒径,第二相体积分数和纳米级颗粒对陶瓷材料硬度的影响。数值模拟结果与实验结果非常吻合。硬度和微观结构之间的定量关系可用于设计具有改进性能的新型工具材料。 (C)2016 Elsevier Ltd.保留所有权利。

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