[1] 魏晓东,侯国梁,赵 荻,等.氧化物掺杂YSZ热障涂层的最新研究进展[J].表面技术,2020,49(6):92-103. WEI X D, HOU G L, ZHAO D, et al. Recent research progress on oxide doped YSZ thermal barrier coatings[J]. Surface Technology, 2020, 49(6): 92-103(in Chinese). [2] 刘 光,张啸寒,贾 利,等.等离子喷涂Mo/8YSZ功能梯度热障涂层结构优化与热力耦合模拟计算[J].表面技术,2020,49(3):213-223. LIU G, ZHANG X H, JIA L, et al. Structural optimization and thermo-mechanical coupling simulation of plasma sprayed Mo/8YSZ functionally graded thermal barrier coating[J]. Surface Technology, 2020, 49(3): 213-223(in Chinese). [3] 周飞飞,刘 敏,邓春明,等.等离子喷涂超高温热障涂层用纳米结构La2(Zr0.75Ce0.25)2O7球形喂料的研究[J].表面技术,2020,49(4):98-103+112. ZHOU F F, LIU M, DENG C M, et al. Nanostructured La2(Zr0.75Ce0.25)2O7 spherical feedstocks for plasma sprayed ultra-high temperature thermal barrier coatings[J]. Surface Technology, 2020, 49(4): 98-103+112(in Chinese). [4] CAO X Q, VASSEN R, STOEVER D. Ceramic materials for thermal barrier coatings[J]. Journal of the European Ceramic Society, 2004, 24(1): 1-10. [5] DEHKHARGHANI A M F, RAHIMIPOUR M R, ZAKERI M. Improving the thermal shock resistance and fracture toughness of synthesized La2Ce2O7 thermal barrier coatings through formation of La2Ce2O7/YSZ composite coating via air plasma spraying[J]. Surface and Coatings Technology, 2020, 399: 126174. [6] LIU Y, BAI Y, LI E B, et al. Preparation and characterization of SrZrO3-La2Ce2O7 composite ceramics as a thermal barrier coating material[J]. Materials Chemistry and Physics, 2020, 247: 122904. [7] ZHANG H, SUN J B, DUO S W, et al. Thermal and mechanical properties of Ta2O5 doped La2Ce2O7 thermal barrier coatings prepared by atmospheric plasma spraying[J]. Journal of the European Ceramic Society, 2019, 39(7): 2379-2388. [8] LIU K, TANG J J, BAI Y, et al. Particle in-flight behavior and its influence on the microstructure and mechanical property of plasma sprayed La2Ce2O7 thermal barrier coatings[J]. Materials Science and Engineering: A, 2015, 625: 177-185. [9] ZHANG H S, YAN S Q, CHEN X G. Preparation and thermophysical properties of fluorite-type samarium-dysprosium-cerium oxides[J]. Journal of the European Ceramic Society, 2014, 34(1): 55-61. [10] SU S J, DING Y, SHU X Y, et al. Nd and Ce simultaneous substitution driven structure modifications in Gd2-xNdxZr2-yCeyO7[J]. Journal of the European Ceramic Society, 2015, 35(6): 1847-1853. [11] DAI H, ZHONG X H, LI J Y, et al. Neodymium-cerium oxide as new thermal barrier coating material[J]. Surface and Coatings Technology, 2006, 201(6): 2527-2533. [12] SUBRAMANIAN M A, ARAVAMUDAN G, SUBBA RAO G V. Oxide pyrochlores—a review[J]. Progress in Solid State Chemistry, 1983, 15(2): 55-143. [13] HESS N J, BEGG B D, CONRADSON S D, et al. Spectroscopic investigations of the structural phase transition in Gd2(Ti1-yZry)2O7Pyrochlores[J]. The Journal of Physical Chemistry B, 2002, 106(18): 4663-4677. [14] KLEMENS P G. Phonon scattering by oxygen vacancies in ceramics[J]. Physica B: Condensed Matter, 1999, 263/264: 102-104. [15] CLARKE D R. Materials selection guidelines for low thermal conductivity thermal barrier coatings[J]. Surface and Coatings Technology, 2003, 163/164: 67-74. |