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Effect of Contiguity on the Mechanical Behavior of Co-continuous Ceramic Metal Composites

机译:连续性对共连铸陶瓷复合材料力学行为的影响

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The effect of contiguity of the ceramic phase in co-continuous ceramic metal composites was investigated. To study the contiguity effect, the volume fraction of the ceramic phase in the composite was kept constant while contiguity varied. A new material processing technique was developed to achieve higher contiguities for a constant volume fraction. Uniaxial compression tests were performed to evaluate mechanical properties of the composites. A finite element-based micromechanical approach in conjunction with three-dimensional representative volume element models was employed to model the composite. Thermal residual stresses were estimated based on experimental results and were used in the finite element analyses. The FEA-predicted nonlinear stress-strain curves for copper/alumina and aluminum/alumina composites were compared with experimental data. Fairly good agreements were observed. It was found that, while the Young's modulus of a co-continuous composite is not sensitive to the level of contiguity of the ceramic phase, its nonlinear behavior is highly dependent of the contiguity.
机译:研究了陶瓷相在共连陶瓷金属复合材料中的恒定性的影响。为了研究恒星效应,复合材料中陶瓷相的体积分数保持恒定,而邻近的变化。开发了一种新的材料加工技术,以实现恒定体积分数的更​​高的竞争。进行单轴压缩试验以评估复合材料的机械性能。采用与三维代表体积元件模型结合的有限元的微机械方法来模拟复合材料。基于实验结果估计热残留应力,并用于有限元分析。将FEA预测的铜/氧化铝和铝/氧化铝复合材料的非线性应力 - 应变曲线与实验数据进行比较。观察到相当好的协议。结果发现,虽然共连体复合材料的杨氏模量对陶瓷阶段的邻接水平不敏感,但其非线性行为高度依赖于邻接。

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