HIGH TEMPERATURE OXIDATION BEHAVIOR OF AUSTENITIC STAINLESS STEEL WITH HIGH SILICON CONTENT.

被引:0
|
作者
Fukase, Yukishige
Nemoto, Rikio
机构
关键词
IRON AND STEEL METALLOGRAPHY - STEEL - Rare Earth Additions;
D O I
10.2355/tetsutohagane1955.63.5_688
中图分类号
学科分类号
摘要
A new 13Ni-18Cr-3. 5Si austenitic stainless steel has proved in service to have excellent resistance to high temperature oxidation. In the present investigation the mechanism of this resistance was studied in cyclic oxidation tests at 1000 C. No internal oxide was detected by optical microscopy or electron probe microanalysis of sections, while the adherence of the surface oxide was retained. The formation of a very thin amorphous SiO//2 film was observed beneath the innermost oxide Cr//2O//3 by scanning electron microscopy and electron probe microanalysis of the back of the oxide chemically stripped from the alloy. It was assumed that this thin SiO//2 film contributed to the improvement of the resistance to oxidation. Protective and mechanical properties of the SiO//2 film were markedly affected by strong deoxidation during steelmaking with RE additions. The good oxide adherence on the steel is attributed to the improvement in the plasticity of the thin SiO//2 film formed at oxide/alloy interface by rare earth element as an impurity. An optimum combination of Si addition and strong deoxidation was concluded to further improve the resistance to oxidation at high temperatures.
引用
收藏
页码:688 / 699
相关论文
共 50 条
  • [1] Welding of Austenitic Stainless Steel with High Molybdenum Content.
    Liljas, M.
    Ulander, A.
    Holmberg, B.
    Svetsen, 1985, 44 (01): : 6 - 12
  • [2] Insights into the High-Temperature Oxidation Behavior of Austenitic Stainless Steel and Influence of Copper on It
    Juan Li
    Huaying Li
    Guanghui Zhao
    Cunlong Zhou
    Lifeng Ma
    Haitao Liu
    Journal of Materials Engineering and Performance, 2020, 29 : 3661 - 3669
  • [3] Insights into the High-Temperature Oxidation Behavior of Austenitic Stainless Steel and Influence of Copper on It
    Li, Juan
    Li, Huaying
    Zhao, Guanghui
    Zhou, Cunlong
    Ma, Lifeng
    Liu, Haitao
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2020, 29 (06) : 3661 - 3669
  • [4] High temperature oxidation behavior of laser cladding MCrAlY coatings on austenitic stainless steel
    Pereira, J. C.
    Zambrano, J. C.
    Tobar, M. J.
    Yanez, A.
    Amigo, V.
    SURFACE & COATINGS TECHNOLOGY, 2015, 270 : 243 - 248
  • [5] HIGH TEMPERATURE OXIDATION RESISTANCE OF AUSTENITIC STAINLESS STEELS WITH HIGH SILICON.
    Fujikawa, Hisao
    Murayama, Junichiro
    Fujino, Nobukatsu
    Moroishi, Taishi
    Shoji, Yuji
    Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan, 1981, 67 (01): : 159 - 168
  • [6] High temperature oxidation of a high N, high Si, Mn free austenitic stainless steel
    Paúl, A
    Elmrabet, S
    Odriozola, JA
    NITRIDES AND OXYNITRIDES 2, 2002, 383 : 125 - 130
  • [7] HIGH-TEMPERATURE OXIDATION BEHAVIOR OF AUSTENITIC STAINLESS-STEELS
    HALES, R
    WERKSTOFFE UND KORROSION-MATERIALS AND CORROSION, 1978, 29 (06): : 393 - 399
  • [8] Effect of Cr Content on high-temperature oxidation behavior of high-manganese austenitic TWIP steel
    Yuan X.-Y.
    Zhao Y.
    Chen L.-Q.
    Dongbei Daxue Xuebao/Journal of Northeastern University, 2016, 37 (02): : 184 - 188
  • [9] High temperature properties of an austenitic stainless steel
    Nikulin, I.
    Kaibyshev, R.
    Skorobogatykh, V.
    15TH INTERNATIONAL CONFERENCE ON THE STRENGTH OF MATERIALS (ICSMA-15), 2010, 240
  • [10] Effect of Aluminizing on the High-Temperature Oxidation Behavior of an Alumina-Forming Austenitic Stainless Steel
    Rashidi, S.
    Choi, J. P.
    Stevenson, J. W.
    Pandey, A.
    Gupta, R. K.
    JOM, 2019, 71 (01) : 109 - 115