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Zinc-induced embrittlement in nickel-base superalloys by simulation and experiment

机译:通过模拟和实验,锌诱导镍基超合金中的脆化

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摘要

The high cost of Re has driven interest in processes for recovering Re from scrap superalloy parts. In this work thermodynamic modelling is used to study Zn-induced embrittlement of a superalloy and to direct experiments. Treating superalloy powder with Zn vapour reduces the average particle size after milling from approximately 130 mu m to 0.5-10 mu m, vs. 100 mu m for untreated powder. Simulations predict the required treatment time to increase with temperature. Agreement between predictions and experiments suggests that an embrittling liquid forms in less than an hour of Zn vapour treatment between 950-1000 degrees C and partial pressures of Zn between 14-34 kPa (2-5 psi).
机译:Re的高成本已经引起了从废超合金部件回收重回的过程的兴趣。 在这项工作中,热力学建模用于研究超合金的Zn诱导的脆化和直接实验。 用Zn蒸气处理高温合金粉末,从约130μm至0.5-10μm,与未处理的粉末的铣削后铣削后的平均粒度。 仿真预测温度增加所需的处理时间。 预测和实验之间的一致性表明,在距离Zn蒸气处理的距离较小的Zn蒸气处理中的脆性液体和Zn的部分压力在14-34kPa(2-5psi)之间。

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