首页> 外文期刊>Journal of Wuhan University of Technology. Materials Science edition >Microstructures and Mechanical Properties of Ceramic/Metal Gradient Thermal Barrier Coatings
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Microstructures and Mechanical Properties of Ceramic/Metal Gradient Thermal Barrier Coatings

机译:陶瓷/金属梯度热障涂层的组织和力学性能

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摘要

The ceramic/metal gradient thermal barrier coatings (CMGTBCs) which combined the conceptions of thermal barrier coatings (TBCs) and functional gradient materials (FGMs) are investigated. The structure model studied in this paper is a general model which includes four different layers: pure ceramic layer, ceramic/metal gradient layer, pure metal layer, and substrate layer. The microstructures of gradient layer have different ceramics and metal volume fraction profile along with the direction of thickness. The profile function used to describe the gradient microstructures can be expressed in power-law or polynomial expression. The mechanical properties of CMGTBCs are obtained by means of microscopic mechanics. As special cases, the interactive solutions are given by Mori-Tanaka method, and the non-interactive solutions by dilute solution. The Young's modulus calculated by these methods are compared with those by other methods, e g, the rule of mixtures.
机译:研究了结合了热障涂层(TBC)和功能梯度材料(FGM)概念的陶瓷/金属梯度热障涂层(CMGTBC)。本文研究的结构模型是一个通用模型,包括四个不同的层:纯陶瓷层,陶瓷/金属梯度层,纯金属层和衬底层。梯度层的微观结构沿厚度方向具有不同的陶瓷和金属体积分数分布。用于描述梯度微结构的轮廓函数可以幂律或多项式表示。 CMGTBCs的机械性能是通过微观力学获得的。作为特殊情况,交互式解决方案通过Mori-Tanaka方法给出,非交互式解决方案通过稀溶液给出。将通过这些方法计算出的杨氏模量与通过其他方法(例如,混合法则)进行比较。

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