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BaZrO₃ 与 Gd₂Zr₂O₇ 用于热障涂层的热学与辐射性能:第一性原理研究
Thermal and radiative properties of BaZrO3 and Gd2Zr2O7 for thermal barrier coating applications: A first-principles study
International Journal of Heat and Mass Transfer
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Elsevier BV
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BaZrO3/Gd2Zr2O7 TBC热导率多通道理论
AI理解
要点 第一性原理计算 BaZrO₃ 与 Gd₂Zr₂O₇ TBC 材料热导率:四声子散射显著降低晶格热导率,高温下相干与辐射贡献显著,多通道框架更准确。
能不能用 TBC 候选材料理论筛选,对热障涂层成分设计有参考价值。理论计算无工艺参数;如需工程应用需结合喷涂验证。
存疑
- 纯理论计算,无实验与工艺数据
- 材料为块体本征性能,未考虑涂层微结构影响
中文摘要
BaZrO₃ 和 Gd₂Zr₂O₇ 因其高温稳定性和低热导率而成为有前景的热障涂层材料。本工作通过结合晶格和辐射传热机制,从第一性原理研究 BaZrO₃ 和 Gd₂Zr₂O₇ 的温度依赖热导率。晶格热导率通过同时考虑类粒子和相干声子输运进行评估,其中类粒子贡献使用温度依赖的原子间力常数计算,并包含三声子和四声子散射过程,相干贡献采用 Wigner 输运形式评估。辐射贡献在 Rosseland 近似下由温度依赖的光学性质评估。四声子散射的纳入显著降低了类粒子晶格热导率,而相干贡献随温度升高而增大,在高温下与 Gd₂Zr₂O₇ 中的类粒子贡献相当。辐射传热在高温下也变得越来越重要,对总热导率有显著贡献。类粒子、相干和辐射输运相结合框架比仅声子计算更准确地描述了实验观测到的高温行为,凸显了这些材料中多传热通道的重要性。
查看英文摘要
BaZrO 3 and Gd 2 Zr 2 O 7 are promising thermal barrier coating materials owing to their high-temperature stability and low thermal conductivity. In this work, the temperature-dependent thermal conductivity of BaZrO 3 and Gd 2 Zr 2 O 7 is investigated from first-principles by combining lattice and radiative heat-transport mechanisms. The lattice thermal conductivity is evaluated by accounting for both particle-like and coherent phonon transport, with the particle-like contribution calculated using temperature-dependent interatomic force constants and including both three- and four-phonon scattering processes, and the coherent contribution evaluated using the Wigner transport formalism. The radiative contribution is evaluated from temperature-dependent optical properties within the Rosseland approximation. Inclusion of four-phonon scattering significantly reduces the particle-like lattice thermal conductivity, while the coherent contribution increases with temperature and becomes comparable to the particle-like contribution in Gd 2 Zr 2 O 7 at elevated temperatures. Radiative heat transport also becomes increasingly significant at high temperatures, contributing substantially to the overall thermal conductivity. The combined particle-like, coherent and radiative transport framework provides a more accurate description of the experimentally observed high-temperature behavior than phonon-only calculations, highlighting the importance of multiple heat-transport channels in these oxide ceramics.
原文依据
查看原文依据
- BaZrO 3 and Gd 2 Zr 2 O 7 are promising thermal barrier coating materials owing to their high-temperature stability and low thermal conductivity.
- Inclusion of four-phonon scattering significantly reduces the particle-like lattice thermal conductivity, while the coherent contribution increases with temperature and becomes comparable to the particle-like contribution in Gd 2 Zr 2 O 7 at elevated temperatures.
- Radiative heat transport also becomes increasingly significant at high temperatures, contributing substantially to the overall thermal conductivity.
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DOI: 10.1016/j.ijheatmasstransfer.2026.129679