表面技术
錶麵技術
표면기술
SURFACE TECHNOLOGY
2014年
4期
135-141
,共7页
热障涂层%稀土锆酸盐%涂层结构%涂层性能
熱障塗層%稀土鋯痠鹽%塗層結構%塗層性能
열장도층%희토고산염%도층결구%도층성능
thermal barrier coatings%rare-earth zirconates%coating structure%coating property
综述了国内外稀土锆酸盐热障涂层在制备技术,纳米涂层,涂层结构及涂层的热物理性能、力学性能及热腐蚀性能等方面的研究成果,讨论了稀土锆酸盐热障涂层在每个方面研究存在的不足。指出未来应该进一步改善稀土锆酸盐涂层的制备工艺及后处理工艺,提高涂层的结合强度,延长涂层的服役寿命,改善涂层耐腐蚀、抗烧结等性能;开发新的涂层制备工艺,重点研究各类纳米稀土锆酸盐涂层的性能;进一步提高涂层的隔热效果、服役温度及工作寿命。
綜述瞭國內外稀土鋯痠鹽熱障塗層在製備技術,納米塗層,塗層結構及塗層的熱物理性能、力學性能及熱腐蝕性能等方麵的研究成果,討論瞭稀土鋯痠鹽熱障塗層在每箇方麵研究存在的不足。指齣未來應該進一步改善稀土鋯痠鹽塗層的製備工藝及後處理工藝,提高塗層的結閤彊度,延長塗層的服役壽命,改善塗層耐腐蝕、抗燒結等性能;開髮新的塗層製備工藝,重點研究各類納米稀土鋯痠鹽塗層的性能;進一步提高塗層的隔熱效果、服役溫度及工作壽命。
종술료국내외희토고산염열장도층재제비기술,납미도층,도층결구급도층적열물이성능、역학성능급열부식성능등방면적연구성과,토론료희토고산염열장도층재매개방면연구존재적불족。지출미래응해진일보개선희토고산염도층적제비공예급후처리공예,제고도층적결합강도,연장도층적복역수명,개선도층내부식、항소결등성능;개발신적도층제비공예,중점연구각류납미희토고산염도층적성능;진일보제고도층적격열효과、복역온도급공작수명。
Searching for new ceramic materials is the most feasible method in order to resolve the defects of current thermal barrier coatings. The A2 Zr2 O7-type rare earth zirconates are regarded as the most potential candidate ceramic materials for thermal barrier coatings because of their low thermal conductivities, high thermal expansion coefficients and excellent phase stability at high temperatures. Rare-earth zirconate coatings are one of the key-research directions in thermal barrier coating field. In the current paper, the research progress at home and abroad, such as coating preparing technology, coating structure, coating properties inclu-ding thermophysical properties, mechanics and thermal erosion, were systemically summarized. The development deficiencies of rare-earth zirconate thermal barrier coatings were investigated. In the future, the preparing and post-treatment technology of rare-earth zirconate coatings should be improved. The bonding strength, working lifetime, corrosion and sintering resistance of new ther-mal barrier coatings should also be enhanced. In order to study coating properties of nano-structure thermal barrier coatings, new preparing technology must be developed. The thermal insulation, working temperature and lifetime of new thermal barrier coatings should also be improved.