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論文

Quantitative analysis of microstructure evolution, stress partitioning and thermodynamics in the dynamic transformation of Fe-14Ni alloy

Li, L.*; 宮本 吾郎*; Zhang, Y.*; Li, M.*; 諸岡 聡; 及川 勝成*; 友田 陽*; 古原 忠*

Journal of Materials Science & Technology, 184, p.221 - 234, 2024/06

 被引用回数:0 パーセンタイル:0(Materials Science, Multidisciplinary)

Dynamic transformation (DT) of austenite ($$gamma$$) to ferrite ($$alpha$$) in the hot deformation of various carbon steels was widely investigated. However, the nature of DT remains unclear due to the lack of quantitative analysis of stress partitioning between two phases and the uncertainty of local distribution of substitutional elements at the interface in multi-component carbon steels used in the previous studies. Therefore, in the present study, a binary Fe-Ni alloy with $$alpha$$+$$gamma$$ duplex microstructure in equilibrium was prepared and isothermally compressed in $$alpha$$+$$gamma$$ two-phase region to achieve quantitative analysis of microstructure evolution, stress partitioning and thermodynamics during DT. $$gamma$$ to $$alpha$$ DT during isothermal compression and $$alpha$$ to $$gamma$$ reverse transformation on isothermal annealing under unloaded condition after deformation were accompanied by Ni partitioning. The lattice strains during thermomechanical processing were obtained via in-situ neutron diffraction measurement, based on which the stress partitioning behavior between $$gamma$$ and $$alpha$$ was discussed by using the generalized Hooke's law. A thermodynamic framework for the isothermal deformation in solids was established based on the basic laws of thermodynamics, and it was shown that the total Helmholtz free energy change in the deformable material during the isothermal process should be smaller than the work done to the deformable material. Under the present thermodynamic framework, the microstructure evolution in the isothermal compression of Fe-14Ni alloy was well explained by considering the changes in chemical free energy, plastic and elastic energies and the work done to the material. In addition, the stabilization of the soft $$alpha$$ phase in Fe-14Ni alloy by deformation was rationalized since the $$gamma$$ to $$alpha$$ transformation decreased the total Helmholtz free energy by decreasing the elastic and dislocation energies.

論文

Fundamental research on melting of radioactive metal materials

中村 寿; 金沢 勝雄; 佐藤 孝幸; 山手 一記; 藤木 和男

Proc., SPECTRUM 94,Nuclear and Hazardous Waste Management Int. Topical Meeting,Vol. 1, 0, p.206 - 210, 1994/00

金属廃棄物の合理的な処理・処分として再利用が考えられている。この再利用プロセスとして、溶融処理は必要かつ重要なプロセスである。このため、金属廃棄物に含まれる放射性核種の溶融・造塊時の挙動を把握することを目的に、JPDRの金属廃棄物及びRIによる模擬廃棄物を用いて溶融試験を行った。この結果、Mn-54、Co-60、Zn-65の大部分は鋼塊中に残留するが、Sr-85及びCs-135はスラグあるいは排ガス中へ移行することが分かった。これらの核種の分配割合は、各々の核種の酸化あるいは蒸発のし易さを考慮することで定性的に説明できる。溶融処理により得られた鋼塊中の放射能濃度はほぼ均一で、模擬廃棄物とJPDRの廃棄物の溶融結果とはCo-60に関してよい一致を示した。本報告は、金属廃棄物を溶融した場合の放射性核種の移行挙動に関し、基礎的な研究結果を述べたものである。

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