Authors
Yukinori Yamamoto, Michael P Brady, Zhao Ping Lu, Philip J Maziasz, Chain T Liu, Bruce A Pint, Karren Leslie More, HM Meyer, E Andrew Payzant
Publication date
2007/4/20
Journal
Science
Volume
316
Issue
5823
Pages
433-436
Publisher
American Association for the Advancement of Science
Description
A family of inexpensive, Al2O3-forming, high–creep strength austenitic stainless steels has been developed. The alloys are based on Fe-20Ni-14Cr-2.5Al weight percent, with strengthening achieved through nanodispersions of NbC. These alloys offer the potential to substantially increase the operating temperatures of structural components and can be used under the aggressive oxidizing conditions encountered in energy-conversion systems. Protective Al2O3 scale formation was achieved with smaller amounts of aluminum in austenitic alloys than previously used, provided that the titanium and vanadium alloying additions frequently used for strengthening were eliminated. The smaller amounts of aluminum permitted stabilization of the austenitic matrix structure and made it possible to obtain excellent creep resistance. Creep-rupture lifetime exceeding 2000 hours at 750°C and 100 megapascals in air, and …
Total citations
20072008200920102011201220132014201520162017201820192020202120222023202471113141418161433342925243352384826
Scholar articles
Y Yamamoto, MP Brady, ZP Lu, PJ Maziasz, CT Liu… - Science, 2007