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Laser remelting of plasma sprayed zirconia thermal barrier coatings

机译:等离子喷涂氧化锆热障涂层的激光重熔

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摘要

Coatings of partially stabilised zirconia are currently used as thermal barrier coatings in gas turbines and diesel engines. Zirconia coatings are usually processed via plasma spraying a well-established and relatively cheap technique. Thermal barrier coatings consist of 0.5 to 1 mm of porous ceramic bonded to the metallic substrate by a bond-coat. High porosity in the ceramic coating assure a good thermal behaviour but increases the chances for corrosion or chemical attack of the bond-coat and coating detach by delamination processes. The as sprayed surface is rough and sensitive to erosion. In the present work we obtained the processing conditions for laser remelting of Y-PSZ coatings deposited by atmospheric plasma spraying technique on Ni- alloys. A simple model accounts for the onset melting energy and its dependence with the processing speed. The remelted film is dense and with smooth surface and well bonded to the underlying porous coat.
机译:目前,部分稳定的氧化锆涂层在燃气轮机和柴油发动机中用作隔热涂层。氧化锆涂料通常是通过等离子喷涂技术来加工的,这种技术已经确立并且相对便宜。隔热涂层由0.5到1 mm的多孔陶瓷组成,这些陶瓷通过粘结涂层粘结到金属基材上。陶瓷涂层中的高孔隙率可确保良好的热性能,但会增加粘结涂层的腐蚀或化学侵蚀的机会,并且涂层会因分层过程而脱落。喷涂表面粗糙且对腐蚀敏感。在本工作中,我们获得了通过大气等离子喷涂技术在Ni合金上沉积的Y-PSZ涂层进行激光重熔的工艺条件。一个简单的模型考虑了起始熔化能及其对加工速度的依赖性。重熔的薄膜致密且表面光滑,并与下面的多孔涂层良好粘合。

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