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单晶高温合金NiCoCrAlYTa涂层高温氧化行为研究 被引量:5
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作者 李佩 云海涛 +1 位作者 姜嫄嫄 刘建明 《热喷涂技术》 2020年第2期36-40,16,共6页
飞机发动机及燃气轮机的发展要求更高的燃气进口温度,从而获得更高的推重比或功率输出,抗氧化MCrAlY涂层在其中发挥至关重要的作用。本文采用含有Ta元素的Amdry997粉末进行超音速火焰喷涂,研究涂层的高温氧化行为,并重点关注Al和Ta元素... 飞机发动机及燃气轮机的发展要求更高的燃气进口温度,从而获得更高的推重比或功率输出,抗氧化MCrAlY涂层在其中发挥至关重要的作用。本文采用含有Ta元素的Amdry997粉末进行超音速火焰喷涂,研究涂层的高温氧化行为,并重点关注Al和Ta元素在涂层内不同相中的分布,及其对涂层与基体元素互扩散行为的影响。研究表明,Ta元素对提高γ'-Ni3(Al,Ta)相稳定性起到重要作用。 展开更多
关键词 MCRALY 高温氧化 互扩散
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Ta含量对MCrAlY抗氧化性的影响 被引量:4
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作者 苗小锋 云海涛 郑兆然 《热喷涂技术》 2020年第2期47-51,共5页
β相影响着MCrAlY涂层的抗氧化性,改善涂层中β相含量可以通过添加特定元素实现。Ta被认为是可以用来改善涂层抗氧化性的重要元素之一。本研究模拟考察了不同Ta含量对MCrAlY涂层相组分的影响,并在此基础上,开展了1000℃恒温氧化实验。... β相影响着MCrAlY涂层的抗氧化性,改善涂层中β相含量可以通过添加特定元素实现。Ta被认为是可以用来改善涂层抗氧化性的重要元素之一。本研究模拟考察了不同Ta含量对MCrAlY涂层相组分的影响,并在此基础上,开展了1000℃恒温氧化实验。研究结果表明,随着Ta含量的增加,涂层的贫铝区厚度减小,剩余的β含量增加,其分布也更靠近涂层表面;但较高的Ta含量加剧了Ta元素在涂层中的偏析。综合考虑,3%Ta含量的MCrAlY涂层抗氧化性最好。另外,本文还着重研究了优选Ta含量的MCrAlY的氧化过程。 展开更多
关键词 MCRALY 抗氧化性 β相稳定性
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High-entropy ferroelastic(10RE_(0.1))TaO_(4) ceramics with oxygen vacancies and improved thermophysical properties 被引量:9
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作者 Jun Wang Xiaoyu Chong +4 位作者 Liang Lv yuncheng Wang Xiaolan Ji haitao yun Jing Feng 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第26期98-106,共9页
The primary purpose of this work is to optimize the thermophysical properties of rare-earth tan-talate ceramics using the high-entropy effect.Here,the high-entropy rare-earth tantalate ceramic(Y_(0.1)Nd_(0.1)Sm_(0.1)G... The primary purpose of this work is to optimize the thermophysical properties of rare-earth tan-talate ceramics using the high-entropy effect.Here,the high-entropy rare-earth tantalate ceramic(Y_(0.1)Nd_(0.1)Sm_(0.1)Gd_(0.1)Dy_(0.1)Ho_(0.1)Er_(0.1)Tm_(0.1)Yb_(0.1)Lu_(0.1))TaO_(4)((10RE_(0.1))TaO_(4))is synthesized successfully.The lat-tice distortion and oxygen vacancy concentration are characterized firstly in the rare-earth tantalates.Notably,compared with single rare-earth tantalates,the thermal conductivity of(10RE_(0.1))TaO_(4) is reduced by 16%-45%at 100℃ and 22%-45%at 800℃,and it also presents lower phonon thermal conductivity in the entire temperature range from 100 to 1200℃.The phonon thermal conductivity(1.0-2.2 W m^(-1) K^(-1),100-1200℃)of(10RE_(0.1))TaO_(4) is lower than that of the currently reported high-entropy four-,five-and six-component rare-earth tantalates.This is the result of scattering by the ferroelastic domain,lattice distortion associated with size and mass disorder,and point defects,which target low-,mid-and high-frequency phonons.Furthermore,(10RE_(0.1))TaO_(4),as an improved candidate for thermal barrier coatings materials(TBCs),has a higher thermal expansion coefficient(10.5×10^(-6)K^(-1) at 1400℃),lower Young’s modulus(123 GPa)and better high-temperature phase stability than that of single rare-earth tantalates. 展开更多
关键词 High-entropy rare-earth tantalate ceramic Ferroelastic domain Lattice distortion Oxygen vacancy Thermal conductivity Thermal barrier coatings materials
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Low thermal conductivity and anisotropic thermal expansion of ferroelastic(Gd_(1−x)Y_(x))TaO_(4) ceramics 被引量:4
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作者 Chenkai QU Lin CHEN +5 位作者 Liang LV yuncheng WANG Xiaolan JI haitao yun Chaoqun SU Jing FENG 《Journal of Advanced Ceramics》 SCIE EI CAS CSCD 2022年第11期1696-1713,共18页
In this paper,(Gd_(1−x)Y_(x))TaO_(4) ceramics have been fabricated by solid-phase synthesis reaction.Each sample was found to crystallize in a monoclinic phase by X-ray diffraction(XRD).The properties of(Gd_(1−x)Y_(x)... In this paper,(Gd_(1−x)Y_(x))TaO_(4) ceramics have been fabricated by solid-phase synthesis reaction.Each sample was found to crystallize in a monoclinic phase by X-ray diffraction(XRD).The properties of(Gd_(1−x)Y_(x))TaO_(4) were optimized by adjusting the ratio of Gd/Y.(Gd_(1−x)Y_(x))TaO_(4) had a low high-temperature thermal conductivity(1.37–2.05 W·m^(−1)·K^(−1)),which was regulated by lattice imperfections.The phase transition temperature of the(Gd_(1−x)Y_(x))TaO_(4) ceramics was higher than 1500℃.Moreover,the linear thermal expansion coefficients(TECs)were 10.5×10^(−6) K^(−1)(1200℃),which was not inferior to yttria-stabilized zirconia(YSZ)(11×10^(−6) K^(−1),1200℃).(Gd_(1−x)Y_(x))TaO_(4) had anisotropic thermal expansion.Therefore,controlling preferred orientation could minimize the TEC mismatch when(Gd_(1−x)Y_(x))TaO_(4) coatings were deposited on different substrates as thermal barrier coatings(TBCs).Based on their excellent properties,it is believed that the(Gd_(1−x)Y_(x))TaO_(4) ceramics will become the next generation of high-temperature thermal protective coatings. 展开更多
关键词 thermal barrier coatings(TBCs) thermal conductivity high-temperature phase stability high-temperature X-ray diffraction(XRD) anisotropic thermal expansion
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