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Repair and manufacturing of single crystal Ni-based superalloys components by laser powder deposition-A review

机译:通过激光粉末沉积修复和制造单晶Ni基超合金组分 - 评论

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摘要

Laser powder deposition is one of the most promising methods for the repairing of the single crystal Ni-based superalloys components used in the hot-section of gas turbine engines in order to extend their lifetime and reduce their overall cost. The microstructure of Ni-based superalloys deposited on single crystal substrates of similar materials depends mainly on the materials involved, on the orientation of the deposited tracks in relation to the substrate and on the deposition parameters. In the present paper these relations are discussed and illustrated for the case of single and multiple layer depositions of NiCrAlY and Rene N4 on (100) single crystal substrates of SRR99 and CMSX-4 Ni-based superalloys. On the other hand, when the aging treatment is applied directly to the solidification microstructure resulting from laser deposition, abnormal gamma/gamma' microstructures may result, due to the inhomogeneity created by alloying elements partition during solidification. Performing a homogenization annealing before aging circumvents this difficulty. The homogenizing annealing also eliminates undesirable brittle phases present in the solidification microstructure, such as carbides and topologically close-packed compounds. (C) 2014 Laser Institute of America.
机译:激光粉末沉积是修复在燃气涡轮发动机的热部分中使用的单晶Ni的超合金组分的最有希望的方法之一,以便延长其寿命并降低其总体成本。沉积在类似材料的单晶基板上的Ni的高温合金的微观结构主要取决于所涉及的材料,在沉积的轨道上关于基板和沉积参数的沉积轨道的取向。在本文中,讨论这些关系,并针对SRR99和CMSX-4 Ni基超合金的(100)单晶基板上的单一和多层沉积的单层和多层沉积的情况。另一方面,当衰老处理直接施加到由激光沉积引起的凝固微观结构上时,可能导致异常的γ/γ'微观结构,因为通过在凝固过程中通过合金化元件分配产生的不均匀性。在老化避免这种困难之前进行均质化退火。均化退火还消除了凝固微观结构中存在的不希望的脆性相,例如碳化物和拓扑封闭的化合物。 (c)2014年激光研究所。

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