Phase transformation mechanism of ferritic stainless steel by nitrogen absorption

被引:0
|
作者
Nakamura, N [1 ]
Tsuchiyama, T [1 ]
Takaki, S [1 ]
机构
[1] Kyushu Univ, Grad Sch Engn, Higashi Ku, Fukuoka 8128581, Japan
来源
TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN | 1998年 / 84卷 / 06期
关键词
ferritic stainless steel; nitrogen absorption; phase transformation; austenite; Kurdjumov-Sachs orientation relationship; coherent boundary;
D O I
暂无
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Fe-Cr binary alloys with 12mass%Cr or more are originally fully ferritic in a high temperature range, but the crystal structure can be changed from bcc(ferrite) to fcc(austenite) by nitrogen absorption in latm N-2 gas atmosphere at 1473K. In this paper, the mechanism of the phase transformation with nitrogen absorption was investigated in association with crystallographical characteristic by means of optical microscopy and scanning electron microscopy. The alloy used is a 27mass% Cr ferritic stainless steel. This steel can absorb a great amount of nitrogen (about 1.4mass% at the maximum) in latm N-2 gas atmosphere at 1473K, so that the austenite formed at the temperature is kept to be stable even at room temperature. Results obtained are as follows: (1)The austenite formed by nitrogen absorption has the Kurdjumov-Sachs orientation relationship with ferritic matrix : (111)(gamma)//(011)(alpha), [<(1)over bar 01>](gamma)//[<(11)over bar 1>](alpha) (2)The austenite grows in rod-like shape toward one of four [111](alpha) directions, and the side faces of rod-like austenite is confirmed to be constructed with two kinds of gamma/alpha interfaces which have a good coherency in the Kurdjumov-Sachs orientation relationship.
引用
收藏
页码:441 / 445
页数:5
相关论文
共 50 条
  • [1] Microstructural change with nitrogen absorption in ferritic stainless steel powder compacts
    Nakahara, T
    Nakamura, N
    Goto, H
    Takaki, S
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1996, 82 (04): : 338 - 343
  • [2] Phase Field Simulation Analysis of Nitrogen Absorption-Phase Transformation Behavior in the High Temperature Stable Ferritic Stainless Steel
    Mitsui, Hajime
    Koshiba, Keiko
    Ohnuma, Takashi
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 2015, 101 (06): : 22 - 28
  • [3] In Situ Observation of Phase Transformation and Structure Evolution of a 12 pct Cr Ferritic Stainless Steel
    Changjiang Song
    Yuanyi Guo
    Kefeng Li
    Fengmei Sun
    Qingyou Han
    Qijie Zhai
    Metallurgical and Materials Transactions B, 2012, 43 : 1127 - 1137
  • [4] Structural control of stainless steel by nitrogen absorption in solid state
    Nakamura, N
    Takaki, S
    ISIJ INTERNATIONAL, 1996, 36 (07) : 922 - 926
  • [5] Dissimilar spot welding of dual phase steel/ferritic stainless steel: phase transformations
    Jaber, H. L.
    Pouranvari, M.
    Marashi, S. P. H.
    Alizadeh-Sh, M.
    Salim, R. K.
    Hashim, F. A.
    SCIENCE AND TECHNOLOGY OF WELDING AND JOINING, 2014, 19 (07) : 565 - 571
  • [6] Phase transformations in a super ferritic stainless steel containing 28% Cr after nitrogen ion implantation
    A. M. Kliauga
    M. Pohl
    C. Cordier-Robert
    J. Foct
    Journal of Materials Science, 1999, 34 : 4065 - 4073
  • [7] New Ferritic Stainless Steel for Service Temperatures up to 1050 °C Utilizing Intermetallic Phase Transformation
    Juuti, Timo
    Manninen, Timo
    Uusikallio, Sampo
    Komi, Jukka
    Porter, David
    METALS, 2019, 9 (06)
  • [8] Phase transformation behavior of Grade 91 ferritic steel
    Tokunaga, T.
    Hasegawa, K.
    Masuyama, F.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2009, 510-11 : 158 - 161
  • [9] Study on Failure Mechanism and Phase Transformation of 304 Stainless Steel during Erosion Wear
    Ye, Youjun
    Li, Jing
    Lv, Xingxing
    Liu, Lin
    METALS, 2020, 10 (11) : 1 - 15
  • [10] Phase transformation and microstructure study of nano-structured austenitic and ferritic stainless steel powders prepared by planetary milling
    Shashanka, R.
    Chaira, D.
    POWDER TECHNOLOGY, 2014, 259 : 125 - 136