Effects of Deformation Mode on Resistivity Curve Used for Estimating Martensite Induced in Stainless Steel

Author:

Date Hidefumi1

Affiliation:

1. Tohoku Gakuin University

Abstract

The martensite induced in three types of austenitic stainless steel, which indicate the different stability of the austenitic phase (γ), were estimated by the resistivity measured during the tensile deformation or compressive deformation at the temperatures 77, 187 and 293 K. The resistivity curves were strongly dependent on the deformation mode. The volume fraction of the martensite (α’) was also affected by the deformation mode. The ε phase, which is the precursor of the martensite and is induced from the commencement of the deformation, decreased the resistivity. However, lots of defects generated by the deformation-induced martensite increased the resistivity. The experimental facts and the results shown by the modified parallelepiped model suggested a complicated transformation process depending on each deformation mode. The results shown by the model also suggested a linear relation between the resistivity and the martensite volume at the region of the martensite formation. The fact denoted that the resistivity is mostly not controlled by the austenite, ε phase and martensite, but by the defects induced due to the deformation-induced martensite.

Publisher

Trans Tech Publications, Ltd.

Subject

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

Reference8 articles.

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4. S. Komatsu, T. Hata, T. Sugimoto, K. Akamatsu and K. Kamei: Resistivity Change of Age-Hardening Aluminum Alloys by Low Temperature Deformation, The Japan Institute of Metals, Vol. 42(1978), p.763.

5. Y. Shugo, K. Sakazume, S. Kato and T. Honma : Studies on the Martensitic Transformation in Fe-Mn and Fe-Mn-C Alloys, Bulletin of the Research Institute of Mineral, Dressing and Metallurgy, Tohoku University, Vol. 32 (1976), p.109.

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