Two-D Analysis of the Thermo-Mechanical Properties of ZrO2-Based Composites

S. Salehi, V. Ryukhtin, P. Lukas, O. Biest, J. Vleugels
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引用次数: 6

Abstract

In this paper, a fast and efficient tool for predicting a set of physical and mechanical composite properties such as thermal expansion coefficients, thermal and electrical conductivity, stiffness, and thermal residual stress is developed based on the analysis of a representative volume of ZrO2-based composite. Such an analysis allows an engineer to assess the mechanical and physical properties to design an optimum composite composition in terms of advantageous mechanical properties and at the same time a good electrical discharge machining performance. Thermal residual stresses in the constituent phases and thermal and electrical conductivity of ZrO2-based composites are assessed by a Finite Element (FE) model using 2 dimensional SEM micrographs. The FE models are verified by comparing numerically calculated results with experimentally measured data.
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zro2基复合材料热力学性能的二维分析
本文通过对具有代表性体积的zro2基复合材料的分析,开发了一种快速有效的预测复合材料物理和机械性能的工具,如热膨胀系数、导热系数和导电性、刚度和热残余应力。这样的分析使工程师能够评估机械和物理性能,从而设计出具有有利机械性能的最佳复合材料,同时具有良好的电火花加工性能。采用二维扫描电镜(SEM)对zro2基复合材料的组成相热残余应力、导热性和导电性进行了有限元分析。通过数值计算结果与实验实测数据的比较,验证了有限元模型的正确性。
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