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Finite Element Analysis of Sintering Process for Functionally Graded Materials

机译:功能梯度材料烧结过程的有限元分析

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摘要

As a part of the computer aided design of functionally graded materials (FGM), a method of the sintering analysis is proposed to avoid sintering defects in graded powder compacts such as warpage, crack, separation and so on. The sintering behavior of the mixtures composed of a ceramic and a metal powder with various mixing ratios is investigated as a typical component of FGM. Variations in sintering rate due to composition of the different two powders are revealed and a constitutive model for sintering of mixed powder compacts is constructed with the effect of mixture and the interaction between the two powder regions taken into consideration. The constitutive model provides a good fit of the sintering shrinkage-time curves obtained by the experiment. The finite element analysis of the sintering process of graded powder compacts is conducted using the con- stitutive model. The stress generated in the powder compacts during sintering is computed to predict a fracture initiation site among the layers.
机译:作为功​​能梯度材料(FGM)计算机辅助设计的一部分,提出了一种烧结分析方法,以防止烧结后的粉末压块中的翘曲,开裂,分离等缺陷。作为FGM的典型成分,研究了由陶瓷和金属粉末组成的混合比不同的混合物的烧结行为。揭示了由于两种不同粉末的组成而引起的烧结速率的变化,并在混合的影响下构造了混合粉末压块烧结的本构模型,并考虑了两个粉末区域之间的相互作用。本构模型很好地拟合了实验得到的烧结收缩时间曲线。使用本构模型对梯度粉末压块的烧结过程进行了有限元分析。计算在烧结期间在粉末压块中产生的应力以预测各层之间的断裂起始部位。

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