文档介绍:王起江,[J].宝钢技术,2008(5):44-53.
王起江,[J].发电设备,2005 (1):43-47.
Fujio and martensitic creep-resistant steels[J].Solid State and Materials Science,2004,8:305-311.
[J].电力建设,2006,27(11):79-80.
[J].广东电力,2008,21(8):67-69.
[J].钢铁,1998,33(1):33-36.
P J Ennis,A Czyrska- advances in creep-resistant steels for power plant applications [J].Sādhanā,2003,28:709–730.
刘立民,朱洪,、P91钢管性能评定[J].电站系统工程,2002,18(1):63-64.
[J].宝钢技术,1997,6:48-50.
. Furtado,. de Almeida,I. Le in 9Cr–1Mo steel after creep deformation[J].Materials Characterization,2007,58:72–77.
蒯春光,-1200℃区间各相元素的分配特征及相稳定性[J].金属学报,2008,44(8):897-900.
孙智,董小文,张绪平,-1Mo-V-Nb钢组织与性能的影响[J].金属热处理,2001,26(8):12-14.
刘靖,周立新,傅晨光,[J].钢管,2002,31(5):9-11.
彭孙鸿,尤夙志,姜明娟,[J].特殊钢,2001,22(2):10-12.
崔光珠,朱伏先,高德福,[J].塑性工程学报,1999,6(2):13-16.
余勇,周晓岚,赵志毅,[J].宝钢技术,2006(3):31-34.
Polcik P,Sailer T,Blum W,et the microstructural development of the tempered martensitic Cr-steel P91 during long-term creep[J].Materials Science and Engineering,1999,260:252-259.
Orlová A,Buršík J,Kucharová K,et development during high temperature creep of 9% Cr steel[J].Materi