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8744282344
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The influence of welding on the creep rupture strength of 9%-chrom steel P91
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8744256364
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Some effects of the solution heat treatment temperature on the properties of grade P91
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Heat-affected zone and weld metal behavior of modern-9-10% chromium steels
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ASM International, Gatlingurg, Tennessee, USA
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Cerjak, H., Letofsky, E., and Schuster, F., 1996, "Heat-Affected Zone and Weld Metal Behavior of Modern-9-10% Chromium Steels," Proc. 4th Int. Conf. on Trends in Welding Research, ASM International, Gatlingurg, Tennessee, USA, pp. 633-638.
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Cerjak, H.1
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8744264726
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Creep properties of weldments in modified 9Cr-1 Mo steel
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The effects of welding on the properties of advanced 9-12%Cr steels
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Cerjak, H.1
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0343714303
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Effect of fabrication processes on the creep behavior of 9-12% chromium steels
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Damage and Life Assessments, Lake Buena Vista, Florida
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Effects of pre- And post-heating on weld cracking of 9Cr-1Mo-Nb-V steel
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Okabayashi, H., and Kume, R., 1988, "Effects of Pre- and Post-Heating on Weld Cracking of 9Cr-1Mo-Nb-V Steel." Trans. Jpn. Weld, Soc., 19(2), pp. 63-68.
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9
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8744248917
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The effect of secondary precipitation on the creep strength of 9Cr1Mo steel
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University College, Swansea, UK
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Williams, K. R., Fidler, R. S., and Askins, M. C., 1981, "The Effect of Secondary Precipitation on the Creep Strength of 9Cr1Mo Steel," Proc. Int. Conf. on Creep and Fracture of Engineering Materials and Structures, University College, Swansea, UK, pp. 475-487.
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Prunier, V., Gampe, U., Nikbin, K., and Shibli, I. A., 1998, "HIDA Activity on P91 Steel," Materials at High Temperatures, 15(3/4), pp. 159-166.
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8744230626
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Basic aspects of the weldability of advanced creep resistant martensitic 9-10%Cr-steels
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Gansu University of Technoly, Dalian, China
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Cerjak H., and Schuster F., 1994, "Basic Aspects of the Weldability of Advanced Creep Resistant Martensitic 9-10%Cr-Steels," Proc. Int. Conf. on Welding, Joining, Coating and Surface Modification of Advanced Materials, Gansu University of Technoly, Dalian, China, pp. 132-137.
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1542787965
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Description of creep and creep fatigue crack growth in 1% and 9% Cr steels
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0025103115
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Welding, fabrication, and service experience with modified 9Cr-1Mo steel
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ASME, New York, USA
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Ellis, F. V., Henry, J. F., and Roberts, B. W., 1990, "Welding, Fabrication, and Service Experience with Modified 9Cr-1Mo Steel," Pressure Vessels and Piping of ASME, 201, ASME, New York, USA, pp. 55-63.
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Behavior of the 9% chromium steel P91 in short and long term tests, part II: Weldments
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Briihl, F., Cerjak, H., Miisch, H., Niederhoff, K., and Zschau, M., 1989, "Behavior of the 9% Chromium Steel P91 in Short and Long Term Tests, part II: Weldments," VGB Kraftwerkstechnik, 69(12), pp. 1074-1081.
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8744277291
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Multiaxial creep behavior of welded components in high strength ferritic/martensitic creep resistant steels
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Part I, Liège, Belgium
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Coussement, C., and Vereist, L., 1994, "Multiaxial Creep Behavior of Welded Components in High Strength Ferritic/Martensitic Creep Resistant Steels," Proc. Int. Conf. on Materials For Advanced Power Engineering 1994, Part I, Liège, Belgium, pp. 329-340.
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Coussement, C.1
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Cracking in the weld region of shaped components in hot steam lines
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8744227778
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JAPC-USDOE joint study on structural design methods and data for modified 9Cr-1Mo steel
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Oak Ridge National Laboratory, Oak Ridge, TN
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Blass, J. J., Battiste, R. L., Brinkman, C. R., O'Connor, D. G., and Sartory, W. K., 1989, "JAPC-USDOE Joint Study on Structural Design Methods and Data for Modified 9Cr-1Mo Steel," ORNL/9Cr/89-3, Oak Ridge National Laboratory, Oak Ridge, TN.
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8844273903
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Weldability and high temperature behavior of the modified 9%Cr steel grade 91 tube and pipe base materials and weldments
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ECSC Information Day, Ed: J. Orr, Dusseldorf, Germany, Paper 4.3
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Coussement, C., Witte, M., and Backer, T., 1992, "Weldability and High Temperature Behavior of the Modified 9%Cr Steel Grade 91 Tube and Pipe Base Materials and Weldments," Proc. The Manufacture and Properties of Steel 91 for the Power Plant and Process Industries, ECSC Information Day, Ed: J. Orr, Dusseldorf, Germany, Paper 4.3.
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Creep deformation, generation of creep damage and prediction of residual lifetime of three Mo- and CrMo-steels
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Sandström, R., and Kondyr, A., 1982, "Creep Deformation, Generation of Creep Damage and Prediction of Residual Lifetime of Three Mo- and CrMo-Steels," VGB Kraftwerkstechnik 62, Heft 9, pp. 802-813 (In German).
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Creep strain behavior in a 12%CrMoV steel
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Development of the MFC omega method for life assessment in the creep range
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