Influence of silicon on high-temperature cyclic oxidation behaviour of titanium

被引:34
|
作者
Vojtech, D
Cízová, H
Jurek, K
Maixner, J
机构
[1] Inst Chem Technol, Dept Met & Corros Engn, CR-16628 Prague, Czech Republic
[2] Acad Sci Czech Republ, Inst Phys, CR-16000 Prague, Czech Republic
[3] Inst Chem Technol, Lab Xray Diffract, CR-16628 Prague, Czech Republic
关键词
titanium; titanium-silicon alloys; cyclic oxidation; silicide; scales;
D O I
10.1016/j.jallcom.2004.11.019
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The paper compares the high-temperature cyclic oxidation behaviour of TiSi2 and TiSi8 with that of pure titanium. One experimental cycle consisted of heating at a temperature of 850 degrees C or 1050 degrees C for 12h, followed by rapid cooling to the room temperature. Each experiment comprised six cycles. The cyclic oxidation kinetics as well as the structure, properties and composition of scales were investigated. The experiments clearly proved the positive effect of silicon on the cyclic oxidation resistance of titanium. The influence of silicon was shown to be more pronounced at a lower temperature of the cyclic oxidation (850 degrees C). At a higher oxidation temperature (1050 degrees C), its influence was still evident but less significant. In contrast to the Ti-Si alloys oxidised at 850 degrees C, the scales formed after cyclic oxidation at 1050 degrees C were much more porous and cracked due to stresses induced upon rapid cooling. A higher fraction of coarse silicide particles in the case of the TiSi8 alloy resulted in an increased cracking and porosity of the scales. The structure of the scales formed after oxidation at 1050 degrees C was complex. The scales were composed of at least two sub-layers, one containing a negligible concentration of silicon and the other, inner one, containing an increased amount of silicon. The nitride layer occurring beneath the scales was thicker for the TiSi8 alloy, due to a higher fraction of the scale porosity. (c) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:240 / 249
页数:10
相关论文
共 50 条
  • [41] High temperature oxidation of titanium-silicon alloys
    Vojtech, D
    Bártová, B
    Kubatík, T
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2003, 361 (1-2): : 50 - 57
  • [42] LIQUID CORROSION AND HIGH-TEMPERATURE OXIDATION EFFECTS ON SILICON-CARBIDE TITANIUM DIBORIDE COMPOSITES
    SESHADRI, SG
    SRINIVASAN, M
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1988, 71 (02) : C72 - C74
  • [43] The influence of high-temperature oxidation resistant titanium aluminide coating on low-cycle fatigue behaviour of titanium alloy IMI 834 at 600°C
    Sahu, J. K.
    Sahu, K. K.
    Ray, A. K.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART L-JOURNAL OF MATERIALS-DESIGN AND APPLICATIONS, 2012, 226 (L1) : 34 - 41
  • [44] Influence of constitution on the high-temperature creep behaviour
    ElMagd, E
    Dunnwald, J
    Pantelakis, S
    METALL, 1996, 50 (06): : 411 - 414
  • [45] High-Temperature Oxidation and Pickling Behaviour of HSLA Steels
    J. L. Gutierrez-Platas
    A. Artigas
    A. Monsalve
    N. A. García-Gómez
    O. García-Rincón
    M. De la Garza-Garza
    F. A. Pérez-González
    R. Colás
    N. F. Garza-Montes-de-Oca
    Oxidation of Metals, 2018, 89 : 33 - 48
  • [46] High-Temperature Oxidation and Pickling Behaviour of HSLA Steels
    Gutierrez-Platas, J. L.
    Artigas, A.
    Monsalve, A.
    Garcia-Gomez, N. A.
    Garcia-Rincon, O.
    De la Garza-Garza, M.
    Perez-Gonzalez, F. A.
    Colas, R.
    Garza-Montes-de-Oca, N. F.
    OXIDATION OF METALS, 2018, 89 (1-2): : 33 - 48
  • [47] High-temperature oxidation behaviour of AlTiSiN and AlCrSiN coatings
    Liu, Yan
    Liu, Hui dong
    Wan, Qiang
    Cai, Yao
    Chen, Hao
    Chen, Yan ming
    Guo, Jia lin
    Yang, Bing
    SURFACE ENGINEERING, 2019, 35 (08) : 652 - 660
  • [48] High-temperature degradation mechanism of aluminide coatings on titanium alloys under cyclic oxidation at 750°C
    Wang, Chaur Jeng
    Koech, Pius Kibet
    Lin, Xuan Zheng
    JOURNAL OF THE CHINESE INSTITUTE OF ENGINEERS, 2019, 42 (03) : 244 - 253
  • [49] Influence of high-temperature processes on multicrystalline silicon
    Schultz, O
    Riepe, S
    Glunz, SW
    GETTERING AND DEFECT ENGINEERING IN SEMICONDUCTOR TECHNOLOGY, 2004, 95-96 : 235 - 240
  • [50] Influence of molybdenum silicide additions on high-temperature oxidation resistance of silicon nitride materials
    Klemm, H
    Tangermann, K
    Schubert, C
    Hermel, W
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1996, 79 (09) : 2429 - 2435