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Ceramic turbine blade attachment having high temperature, high stress compliant layers and method of fabrication thereof

机译:具有高温,高应力柔顺层的陶瓷涡轮叶片附件及其制造方法

摘要

A nickel base single crystal compliant layer on a ceramic blade has the capability to sustain high stresses and high operating temperature. Layers of nickel and platinum bonded on a single crystal superalloy over a sputtered gold-chromium layer support the high stress levels at elevated temperature without extrusion of the soft platinum or nickel layer and without destruction of an NiO compliant surface. The compliant layers have survived stress and temperature conditions without failure to the ceramic blade and the system can be stressed/heated and unloaded/cooled repeatedly without damage to the ceramic blades. A single crystal nickel base superalloy (i.e., SC180) has high strength properties at elevated temperature. Thin layers of chromium followed by gold are e-beam evaporated on one side of a polished surface of the alloy. Pure nickel is electroplated over this e-beam gold-chromium layer. Platinum is either electroplated or plated electrolessly over the nickel layer. The structure is annealed in vacuum or inert atmosphere to allow the diffusion of gold-chromium alloy into the superalloy and permit the nickel layer and diffusion of nickel into platinum to form a multilayer structure which is metallurgically bonded. The sheet is oxidized in air to allow diffusion of the nickel layer through the platinum to come to the surface and oxidize forming nickel oxide. This nickel oxide layer acts as the load distribution layer which does not extrude and the structural integrity of the compliant layer is maintained by the high-strength single crystal superalloy.
机译:陶瓷刀片上的镍基单晶柔顺层具有承受高应力和高工作温度的能力。结合在溅射的金铬层上方的单晶高温合金上的镍和铂层在高温下可承受较高的应力水平,而不会挤压软的铂或镍层,也不会破坏符合NiO的表面。顺应层在应力和温度条件下均能承受,而不会损坏陶瓷刀片,并且该系统可反复受力/加热和卸载/冷却,而不会损坏陶瓷刀片。单晶镍基高温合金(即SC180)在高温下具有高强度性能。在合金的抛光表面的一侧,电子束蒸发了铬和铬的薄层。在此电子束金铬层上电镀纯镍。铂可电镀或化学镀在镍层上。该结构在真空或惰性气氛中退火,以使金-铬合金扩散到超合金中,并允许镍层和镍扩散到铂中,形成冶金结合的多层结构。该片在空气中被氧化以使镍层扩散通过铂到达表面并氧化形成氧化镍。该氧化镍层用作不挤出的载荷分布层,并且通过高强度单晶超合金来保持柔顺层的结构完整性。

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