Temperature Dependence of Austenite Nucleation Site on Reversion of Lath Martensite

Author:

Nakada Nobuo1,Tsuchiyama Toshihiro1,Takaki Setsuo1,Miyano Naoki2

Affiliation:

1. Kyushu University

2. Kyoto University

Abstract

The temperature dependence of austenite nucleation behavior within lath martensitic structure was investigated in an ultralow carbon 13%Cr-6%Ni martensitic stainless steel partially reversed at (austenite + ferrite) two phase region. The shape and nucleation site of the reversed austenite grains were varied depending on the reversion temperature; fine acicular austenite grains frequently formed along the lath boundaries at a temperature lower than 915 K, while the granular ones tended to nucleate mainly on the prior austenite grain boundaries at a higher temperature. In order to explain the temperature dependence of nucleation site transition, the difference in energetics of austenite nucleation between the lath boundary and the prior austenite grain boundary was discussed on the basis of the classical nucleation theory and FEM analysis. The calculation of the changes in interfacial energy and elastic strain for austenite nucleation suggested that the lath boundary acts as more preferential nucleation sites for austenite rather than the prior austenite grain boundary to reduce the increment of elastic strain when the reversion temperature is low.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference11 articles.

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3. V. D. Sadovskii and B. K. Sokolov : Problems of physical metallurgy and heat treatment, Moscow, (1960), p.5.

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5. S. Matsuda and Y. Okamura : Tetsu-to-Hagane, 60 (1974), p.226.

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