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首页> 外文期刊>Journal of the European Ceramic Society >Crystal structure, mechanical and thermal properties of Yb4Al2O9: A combination of experimental and theoretical investigations
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Crystal structure, mechanical and thermal properties of Yb4Al2O9: A combination of experimental and theoretical investigations

机译:Yb4Al2O9的晶体结构、力学和热性能:实验和理论研究的结合

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The key requirements for a successful thermal and environmental barrier coating (T/EBC) material include stability in high temperature water vapor, low Young's modulus, close thermal expansion coefficient (TEC) with mullite, low thermal conductivity and weak mechanical anisotropy. The current prime candidates for top coat are ytterbium silicates (Yb2SiO5 and Yb2Si2O2). A major weakness of these two silicates is the severe anisotropy in mechanical properties and thermal expansion that would lead to cracking of the coating. Thus, searching for new materials with weak mechanical and thermal anisotropy is of signification. In this work, the crystal structure, mechanical and thermal properties of a promising T/EBC candidate, Yb4Al2O5, are investigated theoretically and experimentally. Good ductility, low shear deformation resistance, low Young's modulus (151 GPa) and low thermal conductivity (0.78 W m(-1) K-1) is underpinned by heterogeneous bonding characteristic and distortion of the structure. Close TEC (6.27 x 10(-6) K-1) with mullite and weak mechanical anisotropy highlight the suitability of Yb4Al2O5 as a prospective T/EBC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:成功的热阻隔涂层 (T/EBC) 材料的关键要求包括高温水蒸气中的稳定性、低杨氏模量、莫来石的紧密热膨胀系数 (TEC)、低导热性和弱机械各向异性。目前面漆的主要候选物是硅酸镱(Yb2SiO5 和 Yb2Si2O2)。这两种硅酸盐的一个主要弱点是机械性能和热膨胀的严重各向异性,这会导致涂层开裂。因此,寻找机械和热各向异性较弱的新材料具有重要意义。本文从理论和实验上研究了有前途的T/EBC候选物Yb4Al2O5的晶体结构、力学和热性能。良好的延展性、低抗剪切变形性、低杨氏模量(151 GPa)和低导热系数(0.78 W m(-1) K-1)是非均质结合特性和结构变形的基础。具有莫来石和弱机械各向异性的紧密TEC (6.27 x 10(-6) K-1突出了Yb4Al2O5作为预期T/EBC的适用性。(C) 2017 爱思唯尔有限公司保留所有权利。

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