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18篇 您的检索式:作者名="Klarstrom"
    题名 作者 年代 出处 被引量
1PROPERTIES, WELDABILITY AND APPLICATIONS OF ADVANCED WROUGHT SUPERALLOYS FOR GAS TURBINE ENGINES显示文摘Alloy selection and alloy design both require consideration of an array of material attributes, including in-service properties, weldability and fabricability. Critical properties of advanced wrought superaUoys for gas turbine applications include high temperature strength, thermal stability, oxidation resistance and fatigue resistance. In this paper, the properties of twelve wrought solid-solution-strengthened and six age-hardenable superalloys are compared. Weldability is an important attribute and can be a major limiting factor in the use of certain alloys. Weldability test methods are discussed and the resistance of alloys to solidification cracking and strain-age cracking is compared. The use of weldability testing in the development of modern wrought superalloys is discussed with several examples cited. Finally, alloy selection for gas turbine components is outlined, taking into account both alloy properties and fabricability.D.L. Klarstrom V.R. Ishwar M.D. Rowe 2005Acta Metallurgica Sinica(English Letters)2005,18,1:4
2Fatigue-induced phase formation and its deformation behavior in a cobalt-based superalloy显示文摘BENSON M L SALEH T A LIAW P K CHOO H BROWN D W DAYMOND M R WANG X L STOICA A D BUCHANAN R A KLARSTROM D L 2005Powder Diff2005,20,:1
3High-frequency metal fatigue:the high-cycle fatigue behavior of ULTIMET alloy显示文摘JIANG L BROOKS C R LIAW P K WANG H RAWN C J KLARSTROM D L 2001Mat Sci Eng A2001,314,:1
4Phenomenological aspects of the high-cycle fatigue of ULTIMET(R) alloy显示文摘JIANG L BROOKS C R LIAW P K KLARSTROM D L RAWN C J MUENCHEN B 2001Mat Sci Eng A2001,316,:1
5Temperature evolution during low-cycle fatigue of ULTIMET^(R) alloy:experiment and modeling显示文摘JIANG L WANG H LIAW P K BROOKS C R KLARSTROM D L 2004Mechanics of Materials2004,36,:1
6Characterization of the temperature evolution during high-cycle fatigue of the ULTIMET^(R) superalloy:experiment and modeling显示文摘JIANG L WANG H LIAW P K BROOKS C R KLARSTROM D L 2001Met Trans A2001,32,:1
7Low-cycle fatigue behavior of ULTIMET^(R) alloy显示文摘JIANG L BROOKS C R LIAW P K DUNLAP J RAWN C J PEASOE R A KLARSTROM D L 2004Met Trans A2004,35,:1
8Tensile properties of a nickel-base alloy subjected to surface severe plastic deformation显示文摘J.W. Tian K. Dai J.C. Villegas L. Shaw P.K. Liaw D.L. Klarstrom A.L. Ortiz 2007Materials Science & Engineering A2007,,1:1
9A direct comparison in the fatigue resistance enhanced by surface severe plastic deformation and shot peening in a C-2000 superalloy显示文摘Leon L. Shaw Jia-Wan Tian Angel L. Ortiz Kun Dai Juan C. Villegas Peter K. Liaw Ruiming Ren Dwaine L. Klarstrom 2009Materials Science & Engineering A2009,,4:1
10A study of the effect of nanostructured surface layers on the fatigue behaviors of a C-2000 superalloy显示文摘J.W. Tian J.C. Villegas W. Yuan D. Fielden L. Shaw P.K. Liaw D.L. Klarstrom 2006Materials Science & Engineering A2006,,:1
11Oxidation of L-thiazolidine- 4-carboxylate by deltal-pyrroline-5-carboxylate reductase in Esche- richia coli显示文摘Deutch CE Klarstrom JL Link CL 2001Curr Microbiol2001,42,6:1
12A direct comparison in the fatigue resistance enhanced by surface severe plastic deformation and shot peening in a C-2000 superalloy显示文摘Leon L. Shaw Jia-Wan Tian Angel L. Ortiz Kun Dai Juan C. Villegas Peter K. Liaw Ruiming Ren Dwaine L. Klarstrom 2009Materials Science & Engineering A2009,,4:1
13Tensile properties of a nickel-base alloy subjected to surface severe plastic deformation显示文摘J.W. Tian K. Dai J.C. Villegas L. Shaw P.K. Liaw D.L. Klarstrom A.L. Ortiz 2007Materials Science & Engineering A2007,,1:1
14Fracture modes of HAYNES ? 230 ? alloy during fatigue-crack-growth at room and elevated temperatures显示文摘Y.L. Lu P.K. Liaw G.Y. Wang M.L. Benson S.A. Thompson J.W. Blust P.F. Browning A.K. Bhattacharya J.M. Aurrecoechea D.L. Klarstrom 2005Materials Science & Engineering A2005,,1:1
15The strain-controlled fatigue behavior and modeling of Haynes ? HASTELLOY ? C-2000 ? superalloy显示文摘R.L. McDaniels L. Chen R. Steward P.K. Liaw R.A. Buchanan Steve White Kevin Liaw D.L. Klarstrom 2010Materials Science & Engineering A2010,,:1
16Nickel-base alloy solutions for ultrasupercritical steam power plants显示文摘Klarstrom D L Pike L M Ishwar V R 2013Procedia Eng2013,55,:1
17Heat treatment/property relationships for solid-solution strengthened superalloys显示文摘Solid-solution strengthened superalloys are widely used because they possess excellent levels of high temperature strength and environmental resistance in combination with ease of fabrication.This latter factor is of utmost importance since it is a primary economic determinant.From a metal producer’s point of view,it determines the viable range of product forms that can be offered to the marketplace.From a user’s point of view,it determines the viable range of manufacturing processes that can be used to make the final product.For both the producer and user,an alloy’s heat treatment and property response is a central issue for defining fabricability.The areas of interest are typically quite fundamental and include such phenomena as recrystallization and grain growth,critical strain effects,relief of residual stresses,and cooling rate effects.In heat resisting alloys,these phenomena often involve subtle complexities due to the precipitation of carbides and,in some cases,the precipitation of intermetallic phases. This paper will deal with these complexities,providing relevant data and concrete examples wherever possible.The information presented should enable the proper selection of heat treatment practices for solid-solution strengthened superalloys.D L KLARSTROM 2010Baosteel Technical Research2010,4,S1:0
18In-situ loading neutron-diffraction studies of a cobalt-based superalloy显示文摘M. L. BENSON P. K LIAW H. CHOO T. A. SALEH D. W. BROWN M. R. DAYMOND X. L. WANG A. D. STOICA E. C. OLIVER D. L. KLARSTROM 2006中国有色金属学会会刊:英文版2006,16,A02:0
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