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Method for bonding thermal barrier coatings to superalloy substrates

机译:将隔热涂层粘结到高温合金基底上的方法

摘要

A method is provided for bonding a ceramic thermal barrier coating to a nickel or cobalt based superalloy substrate for use in high temperature applications such as gas turbine engines. The method comprises roughening the superalloy substrate itself to produce a surface roughness, preferably from 100 to 350 microinches Roughness Average (RA). The roughened surface of the substrate is treated with a diffusion coating, preferably aluminide or platinum-aluminide to provide oxidation and hot corrosion resistance, while substantially preserving the micro- topography of the roughened surface. A ceramic thermal barrier coating is applied directly to the diffusion treated surface, preferably using an air plasma spray. The surface roughness, which is left substantially undisturbed by the diffusion coating treatment, is altered by the air plasma sprayed ceramic to form a series of interlocking microstructures that firmly attach the ceramic thermal barrier coating to the diffusion treated superalloy substrate. The method creates an inexorable bond between the ceramic thermal barrier coating and the substrate without the need for costly Low Pressure Plasma Sprayed MCrAlY bond coats or costly Electron Beam Physical Vapor Deposited ceramic.
机译:提供了一种用于将陶瓷热障涂层粘结到镍基或钴基超合金基底上的方法,以用于高温应用,例如燃气轮机。该方法包括使超级合金基底自身粗糙化以产生表面粗糙度,优选地从100至350微英寸的平均粗糙度(RA)。用扩散涂层,优选铝化物或铝化铂对基材的粗糙表面进行处理,以提供抗氧化性和耐热腐蚀性,同时基本上保留粗糙表面的微观形貌。陶瓷隔热涂层直接涂在扩散处理过的表面上,最好使用空气等离子喷涂。通过空气等离子喷涂的陶瓷改变了表面粗糙度,该表面粗糙度基本上不会受到扩散涂层处理的干扰,从而形成了一系列互锁的微结构,这些结构将陶瓷隔热涂层牢固地附着到了扩散处理的高温合金基材上。该方法无需昂贵的低压等离子喷涂MCrAlY粘结层或昂贵的电子束物理气相沉积陶瓷,即可在陶瓷隔热层和基材之间形成不可阻挡的粘结。

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