15
Views
22
CrossRef citations to date
0
Altmetric
Articles

Creep resistance of certain alloys of the Ti–AI–Zr–Mo–Si system

Pages 16-23 | Published online: 19 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

H. M. Flower. (1990) Microstructural development in relation to hot working of titanium alloys. Materials Science and Technology 6:11, pages 1082-1092.
Read now

Articles from other publishers (21)

Shintaro Tanii, Osamu Umezawa & Yoko Yamabe-Mitarai. (2020) Microstructural evolution in Ti–10Al–1Zr–1Mo–1Nb alloy under thermomechanical treatment in β-region. Materials Science and Engineering: A 796, pages 140149.
Crossref
Kartik Prasad, S. Amrithapandian, B.K. Panigrahi, Vikas Kumar, K. Bhanu Sankara Rao & M. Sundararaman. (2015) Experimental evidence for segregation of interstitial impurities to defects in a near α titanium alloy during dynamic strain aging using energy filtered transmission electron microscopy. Materials Science and Engineering: A 638, pages 90-96.
Crossref
Nidhi Singh & Vakil Singh. (2008) Effect of temperature on tensile properties of near-α alloy Timetal 834. Materials Science and Engineering: A 485:1-2, pages 130-139.
Crossref
M. Bulanova, Yu. Podrezov & Yu. Fartushna. (2006) Phase composition, structure and mechanical properties of Ti–Dy–Si–Sn alloys. Intermetallics 14:4, pages 435-443.
Crossref
B. Lu, R. Yang, Y. Y. Cui & D. Li. (2000) A comparison study of microstructure and mechanical properties of Ti-24Al-14Nb-3V-0.5Mo with and without Si. Metallurgical and Materials Transactions A 31:9, pages 2205-2217.
Crossref
Partha Ghosal, Rajesh Prasad & C. RamaChandra. (1995) Microstructural stability of the (α + β) Solution-treated and quenched Near- α Titanium Alloy Ti-5.8AI-4Sn-3.5Zr-0.70Nb-0.50Mo-0.35Si-0.06C. Metallurgical and Materials Transactions A 26:10, pages 2751-2755.
Crossref
A. Madsen & H. Ghonem. (1995) Separating the effects of Ti3Al and silicide precipitates on the tensile and crack growth behavior at room temperature and 593 °C in a near-alpha titanium alloy. Journal of Materials Engineering and Performance 4:3, pages 301-307.
Crossref
A. H. Rosenberger, A. Madsen & H. Ghonem. (1995) Aging effects on the creep behavior of the near-alpha titanium alloy Ti-1100. Journal of Materials Engineering and Performance 4:2, pages 182-187.
Crossref
K. Chaudhuri & J. H. Perepezko. (1994) Microstructural study of the titanium alloy Ti-15Mo-2.7Nb-3Al-0.2Si (TIMETAL 21S). Metallurgical and Materials Transactions A 25:6, pages 1109-1118.
Crossref
C. Ramachandra & A. K. Singh. (1993) Age-hardening behavior of titanium alloy Ti-6Al-5Zr-0.5Mo-0.25Si. Metallurgical Transactions A 24:3, pages 763-766.
Crossref
C. Ramachandra & Vakil Singh. (1992) Sllicide phases in some complex titanium alloys. Metallurgical Transactions A 23:2, pages 689-690.
Crossref
A. K. Singh, C. Ramachandra & Vakil Singh. (1992) Orientation relationship between matrix phases and silicide S2 in alloy Ti-6Al-1.6Zr-3.3Mo-0.3Si. Journal of Materials Science Letters 11:4, pages 218-221.
Crossref
G. Sridhar & D. S. Sarma. (1989) Structure and properties of a β solution treated, quenched, and aged si-bearing near-α titanium alloy. Metallurgical Transactions A 20:1, pages 55-62.
Crossref
G. Sridhar, V. V. Kutumbarao & D. S. Sarma. (1987) The influence of heat treatment on the structure and properties of a near-α titanium alloy. Metallurgical Transactions A 18:5, pages 877-891.
Crossref
C. Ramachandra & Vakil Singh. (1985) Orientation relationship between α′ titanium and sulicide S02 in alloy Ti-6Al-5Zr-0.5Mo-0.25Si. Metallurgical Transactions A 16:3, pages 453-455.
Crossref
C. Ramachandra & Vakil Singh. (1985) Effect of silicide precipitation on tensile properties and fracture of alloy Ti-6Al-5Zr-0.5Mo-0.25Si. Metallurgical Transactions A 16:2, pages 227-231.
Crossref
C. Ramachandra & Vakil Singh. (1985) Effect of silicide precipitation on tensile properties and fracture of alloy Ti-6Al-5Zr-0.5Mo-0.25Si. Metallurgical Transactions A 16:1, pages 227-231.
Crossref
D. Eylon, S. Fujishiro, Pamela J. Postans & F. H. Froes. (2013) High-Temperature Titanium Alloys—A Review. JOM 36:11, pages 55-62.
Crossref
Dadras P.J. F. Thomas & J. C. Moosbrugger. (1983) Strain aging of Ti-6242 at hot-working temperatures. Metallurgical Transactions A 14:7, pages 1512-1516.
Crossref
C. Ramachandra & Vakil Singh. (1982) Silicide Precipitation in Alloy Ti-6AI-5Zr-0.5Mo-0.25Si. Metallurgical Transactions A 13:5, pages 771-775.
Crossref
H. M. Flower, K. Lipscombe & D. R. F. West. (1982) The effect of silicon on the structure and mechanical properties of an ?+? titanium alloy. Journal of Materials Science 17:4, pages 1221-1231.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.