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Aluminizing process for plasma-sprayed bond coat of a thermal barrier coating system

机译:热障涂层系统的等离子喷涂粘结涂层的渗铝工艺

摘要

A thermal barrier coating system and a method for forming the coating system on an article designed for use in a hostile thermal environment. The method is particularly directed to a coating system that includes a plasma-sprayed MCrAlY bond coat on which a thermal-insulating APS ceramic layer is deposited, in which the oxidation resistance of the bond coat and the spallation resistance of the ceramic layer are substantially increased by vapor phase aluminizing the bond coat. The bond coat is deposited to have a surface area ratio of at least 1.4 and a surface roughness of at least 300 &mgr;inch Ra in order to promote the adhesion of the ceramic layer. The bond coat is then overcoat aluminized using a vapor phase process that does not alter the surface area ratio of the bond coat. This process is carried out at relatively low temperatures that promote inward diffusion of aluminum relative to outward diffusion of the bond coat constituents, particularly nickel and other refractory elements. The process conditions also provide sufficient vapor phase activity at the surface of the bond coat that promote aluminum atomic movement through the bond coat.
机译:隔热涂层系统和用于在设计用于恶劣的热环境中的制品上形成涂层系统的方法。该方法特别针对一种涂层系统,该涂层系统包括等离子体喷涂的MCrAlY粘合涂层,在该涂层上沉积了隔热的APS陶瓷层,该粘合涂层的抗氧化性和陶瓷层的抗剥落性大大提高了。通过气相镀铝使粘结层镀铝。沉积粘结涂层以具有至少1.4的表面积比和至少300μgRa的表面粗糙度,以促进陶瓷层的粘附。然后使用不改变粘合涂层的表面积比的气相方法对粘合涂层进行铝化。该过程在相对较低的温度下进行,该温度相对于粘结涂层成分,特别是镍和其他耐火元素的向外扩散,促进了铝向内扩散。工艺条件还在粘结涂层的表面上提供了足够的气相活性,从而促进了铝原子运动通过粘结涂层。

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