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Multi-Enhanced-Phonon Scattering Modes in Ln-Me-A Sites co-substituted LnMeA11O19 Ceramics

机译:Ln-Me-A位置共取代的LnMeA11O19陶瓷中的多增强声子散射模式

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摘要

Authors reported an effective path to decrease the thermal conductivity while to increase the coefficient of thermal expansion, thus enhancing the thermo-physical properties of the LnMeA11O19-type magnetoplumbite LaMgAl11O19 by simultaneously substituting La3+, Mg2+ and Al3+ ions with large ionic radius Ba2+, Zn2+ and Ti4+, respectively. The mechanism behind the lowered thermal conductivity was mainly due to the multi-enhanced-phonon scattering modes in Ln-Me-A sites co-substituted LnMeA11O19 ceramics. These modes involve the following four aspects, namely, point defect mechanism, the intrinsic scattering in the complex crystal cell and materials with stepped surface to localize phonon vibrational modes, as well as nano-platelet-like structure to incorporate additional grain boundary scattering. This study provides novel thoughts for promising candidate materials of even lower thermal conductivity for the next generation thermal barrier coatings.
机译:作者报告了一条有效的途径,既可以降低热导率,又可以提高热膨胀系数,从而通过同时取代La 3 + ,Mg 2 + ,Zn 2 + 和Ti 4的> 2 + 和Al 3 + 离子+ 。降低热导率的机理主要是由于在Ln-Me-A位被共取代的LnMeA11O19陶瓷中的多重增强声子散射模式所致。这些模式涉及以下四个方面,即点缺陷机理,复杂晶体单元和具有阶梯表面以定位声子振动模式的材料中的固有散射,以及结合了额外晶界散射的纳米片状结构。这项研究为下一代热障涂层具有更低导热系数的有前途的候选材料提供了新的思路。

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