Precipitation of γ" In Inconel 718 Alloy From Microstructure to Mechanical Properties

A. Balan, M. Perez, T. Chaise, S. Cazottes, D. Bardel, F. Corpace, F. Pichot, A. Deschamps, F. De Geuser, D. Nélias
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Abstract

This paper presents a coupled approach able to describe γ'' precipitation evolution and associated yield strength after various thermal treatments in inconel 718 alloy. The precipitation state is modeled via the implementation of classical nucleation and growth theories for plate-shaped particles. The precipitation model is validated through small-angle neutron scattering and transmission electron microscopy experiments. The precipitation size distribution serves as an input parameter to model the yield strength using a micromechanical model based on shear and bypass mechanisms accounting for the particular shapes of the precipitates. Results are in good agreement with measured yield stresses for various precipitation states. A complete simulated TTT diagram of the γ'' phase with the associated yield strength is proposed. The coupled model is finally applied to a series of non-isothermal treatments representative of welding (or additive manufacturing) from the peak aged state.
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Inconel 718合金中γ”的析出及其显微组织与力学性能
本文提出了一种能够描述不同热处理后inconel 718合金γ′′析出演变和相关屈服强度的耦合方法。采用经典的板状粒子成核和生长理论对沉淀状态进行了模拟。通过小角中子散射和透射电镜实验验证了该模型的有效性。析出物粒度分布作为输入参数,使用基于剪切和旁路机制的微观力学模型来模拟屈服强度,该模型考虑了析出物的特殊形状。结果与实测的不同降水状态下的屈服应力一致。提出了一个完整的模拟γ”相的TTT图,并给出了相应的屈服强度。最后将该耦合模型应用于具有代表性的峰时效态焊接(或增材制造)的一系列非等温处理。
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