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Advanced high pressure turbine blade repair technologies

机译:先进的高压涡轮叶片维修技术

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Components in aircraft engines and gas turbines are exposed to extreme conditions in order to increase performance and efficiency of the overall engine, hence there is an increasing need for cost-effective and time-efficient repair strategies. Presented here are two novel approaches to the repair of Nickel-based components. The hybrid brazing process involves the application of a repair coating, a nickel-based filler material, a NiCoCrAlY and an aluminium layer, by thermal spraying followed by a heat treatment and combined brazing-aluminizing process. This significantly shortens the conventional repair brazing process and yields superior results. Single-crystal additive repair by laser cladding is applied for the repair of small or large defects in single-crystal turbine blades by enabling monocrystalline solidification of the cladded material by use of a temperature gradient, thereby allowing for the regeneration of these expensive components. The novel approach that combines layer-wise addition of material and laser melting enables the formation of highly monocrystalline structures.
机译:为了提高整个发动机的性能和效率,飞机发动机和燃气轮机中的组件暴露于极端条件下,因此,越来越需要成本有效且省时的维修策略。本文介绍了两种新颖的镍基部件修复方法。混合钎焊工艺包括通过热喷涂,热处理和钎焊-铝化工艺的组合来应用修补涂层,镍基填充材料,NiCoCrAlY和铝层。这大大缩短了传统的修补钎焊过程,并产生了优异的结果。通过利用温度梯度使得包层材料能够单晶固化,通过激光熔覆进行的单晶添加剂修复可用于修复单晶涡轮叶片中的小缺陷或大缺陷,从而可以再生这些昂贵的部件。结合了材料的逐层添加和激光熔化的新颖方法,可以形成高度单晶的结构。

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