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Investment casting of turbine components -practical implications of emerging concepts and ideas for solidification of Ni based superalloys

机译:涡轮机零件的熔模铸造-新兴概念和想法对镍基高温合金凝固的实践意义

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摘要

This paper presents applications of materials characeterisation methods and computational models in addressing the origins of defects encountered in investment casting of turbine components using Ni based superalloys. Some typical case studies are illustrated. In single crystal seeding, the role of thermal transients arising after mould soak and initial withdrawal has been assessed and shown to account for the nucleation propensity for stray grains and their subsequent competitive growth. In defects pertaining to latter stages of solidification; in the case of hot tears the role of minor alloy chemistry in altering the local freezing kinetics was identified, while the occurrence of non-equilibrium phases in high refractory containing newer generation alloys was studied by understanding the solidification sequence. Applications in the foundry arising from these studies in relation to operating process windows and physically based criteria for assessing alloy chemistry from the view of castability have been briefly discussed.
机译:本文介绍了材料炭化方法和计算模型在解决使用镍基高温合金进行涡轮机零件精铸时遇到的缺陷来源方面的应用。说明了一些典型的案例研究。在单晶晶种中,已经评估了霉菌浸湿和初次抽出后产生的热瞬态的作用,并证明了这些现象可解释杂散晶粒的成核倾向及其随后的竞争性增长。与凝固后期有关的缺陷;在热裂的情况下,确定了次要合金化学作用在改变局部冻结动力学中的作用,同时通过了解凝固顺序研究了含高耐火材料的新一代合金中非平衡相的出现。这些研究在铸造中的应用涉及铸造工艺的观点,这些应用与操作过程窗口和从铸造性角度评估合金化学的基于物理的标准有关。

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