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基于辐照的机械抗性微观结构设计,通过多尺度相场建模进行调整。

Irradiation-based design of mechanically resistant microstructures tuned via multiscale phase-field modeling.

作者信息

Demange Gilles, Dépinoy Sylvain, Lunéville Laurence, Simeone David, Pontikis Vassilis

机构信息

GPM, UMR CNRS 6643, University of Rouen, 76575, Saint Étienne du Rouvray, France.

4MAT, Materials Engineering, Characterization, Processing and Recycling, Université Libre de Bruxelles, 50 Avenue FD Roosevelt, CP194/03, B-1050, Brussels, Belgium.

出版信息

Sci Rep. 2018 Jul 6;8(1):10237. doi: 10.1038/s41598-018-28685-3.

Abstract

We present a multi-scale phase field modeling of stationary microstructures produced under 1 MeV krypton ion irradiation in a phase separating concentrated solid solution of silver and copper. We show that the mixture reaches ultimately a stationary micro-structural state made of phase domains with composition and size distribution mapped to the values of the incident flux of particles and of the temperature, variables that help defining a non equilibrium phase-diagram for the irradiated alloy. The modeling predicts the formation of diverse microstructures likely connected to spinodal hardening, thus opening the perspective of the on-purpose tuning of mechanically resistant microstructures and the preparation of metastable alloys with mechanical properties improved by comparison to counterparts obtained via classical thermo-mechanical treatments.

摘要

我们展示了在银和铜的相分离浓固溶体中,1 MeV氪离子辐照下产生的静态微观结构的多尺度相场建模。我们表明,该混合物最终达到由相域组成的静态微观结构状态,其成分和尺寸分布映射到粒子入射通量和温度的值,这些变量有助于定义辐照合金的非平衡相图。该建模预测了可能与旋节线硬化相关的多种微观结构的形成,从而开启了有目的地调整机械抗性微观结构以及制备与通过经典热机械处理获得的对应物相比机械性能得到改善的亚稳合金的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ce9/6035249/ad85a770a85d/41598_2018_28685_Fig1_HTML.jpg

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