A platform for research: civil engineering, architecture and urbanism
Hold-time effects on elevated-temperature low-cycle-fatigue and crack-propagation behaviors of HAYNES® 188 superalloy
Hold-time effects on elevated-temperature low-cycle-fatigue and crack-propagation behaviors of HAYNES® 188 superalloy
Hold-time effects on elevated-temperature low-cycle-fatigue and crack-propagation behaviors of HAYNES® 188 superalloy
Lee, S. Y. (author) / Lu, Y. L. (author) / Liaw, P. K. (author) / Chen, L. J. (author) / Thompson, S. A. (author) / Blust, J. W. (author) / Browning, P. F. (author) / Bhattacharya, A. K. (author) / Aurrecoechea, J. M. (author) / Klarstrom, D. L. (author)
JOURNAL OF MATERIALS SCIENCE ; 44 ; 2945-2956
2009-01-01
12 pages
Article (Journal)
English
DDC:
620.11
© Metadata Copyright the British Library Board and other contributors. All rights reserved.
Elevated-Temperature Creep-Fatigue Crack-Growth Behavior of HAYNES®188 Superalloy
British Library Online Contents | 2007
|Hold time effects on low cycle fatigue behavior of HAYNES 230 superalloy at high temperatures
British Library Online Contents | 2005
|Effects of temperature and hold time on creep-fatigue crack-growth behavior of HAYNES 230 alloy
British Library Online Contents | 2006
|Time- and cycle-dependent crack propagation in Haynes 282
British Library Online Contents | 2016
|The effect of hold-time on fatigue crack growth behaviors of WASPALOY alloy at elevated temperature
British Library Online Contents | 2003
|