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Design considerations for high temperature bolting
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Use of generalized regression models for the analysis of stress-rupture data
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ASME, NY, NY
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ASME, NY, NY
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High temperature bolts for steam power plant
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Institute of Mechanical Engineers, London, UK
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0031639084
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Prediction of cyclic stress relaxation for 1CrMoVTiB
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ASME, NY, NY
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Ellis, F.V.1
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8
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0031631984
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Guidelines for life assessment of high temperature bolting
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ASME, NY, NY
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Ellis, F. V., Sielski, D. R. and Viswanathan, R., 1998, "Guidelines for Life Assessment of High Temperature Bolting," Fitness-for-Service Evaluations in Petroleum and Fossil Power Plants, ASME, NY, NY, pp. 119-127.
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(1998)
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Ellis, F.V.1
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9
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0033356209
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Calculation of stress relaxation properties for type 422 stainless steel
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ASME, NY, NY
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Ellis, F. V. and Tordonato, S., 1999, "Calculation of Stress Relaxation Properties for Type 422 Stainless Steel," Fracture Mechanics: Design and Analysis of Pressure Vessels, Heat Exchangers, and Piping: and Fitness-for-Service, ASME, NY, NY, pp. 395-403.
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10
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0040499277
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Application of creep swelling data in life assessment of high temperature piping
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ASM International, Materials Park, OH
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12
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0041093392
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Testing of the relaxation strength of bolted joints
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The Institute of Materials, London
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Konig, H. and Mayer, K. H., 1995, "Testing of the Relaxation Strength of Bolted Joints," Performance of Bolting Materials in High Temperature Plant Applications, The Institute of Materials, London, pp. 54-69.
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13
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0018961171
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Operating experience and life span of heat resistant bolted joints in steam turbines of fossil fired power stations
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Sheffield, UK, Paper C221/80
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Mayer, K. H. and Keienburg, K. H., 1980, "Operating Experience and Life Span of Heat Resistant Bolted Joints in Steam Turbines of Fossil Fired Power Stations," International Conference on Engineering Aspects of Creep, Sheffield, UK, Paper C221/80.
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Mayer, K. H. and Konig, H., 1992, "New Materials for Advanced Steam Turbines; Volume 4: Testing of Superalloy Bolt Materials for Advanced Power Plants," EPRI TR-100979, Volume 4, RP1403-15 Final Report, EPRI, PaIo Alto, CA.
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15
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Operational characteristics of 10-12%CRMoV bolt steels for steam turbines
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The Institute of Materials, London
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Mayer, K. H and Konig, H., 1995, "Operational Characteristics of 10-12%CRMoV Bolt Steels for Steam Turbines," Performance of Bolting Materials in High Temperature Plant Applications, The Institute of Materials, London, pp. 150-162.
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16
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0040190076
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Data sheets on the elevated-temperature stress relaxation properties of 1Cr-0.5Mo-0.25V steel and 12Cr-1Mo-1W-0.25v steel bolting materials for high temperature service
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National Research Institute for Metals, Tokyo, Japan
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NRIM, 1997, "Data Sheets on The Elevated-Temperature Stress Relaxation Properties of 1Cr-0.5Mo-0.25V Steel and 12Cr-1Mo-1W-0.25V Steel Bolting Materials for High Temperature Service," NRIM Creep Data Sheet No. 44, National Research Institute for Metals, Tokyo, Japan.
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(1997)
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17
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0040910400
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Data sheets on the elevated-temperature properties of 12cr-1mo-1W-0.3V stainless steel bars for turbine blades (SUH 616-B)
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National Research Institute for Metals, Tokyo, Japan
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NRIM, 1979, "Data Sheets on The Elevated-Temperature Properties of 12Cr-1Mo-1W-0.3V Stainless Steel Bars for Turbine Blades (SUH 616-B)," NRIM Creep Data Sheet No. 10A, National Research Institute for Metals, Tokyo, Japan.
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(1979)
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Multi-axial creep rupture of a model structure using a two parameter material model
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The behaviour of high temperature fasteners in electricity generating plants
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Pineridge Press, Swansea, UK
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A comprehensive method of rupture data analysis with simplified models
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ASME, NY, NY
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0021392704
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Analysis of reloading stress relaxation behavior with specified reloading time intervals for high temperature bolting steels
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Tokyo, Japan
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24
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0024915441
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The stress relaxation behavior of SUS 304 stainless steel
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ASME, NY, NY
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Collection and Uses for Relaxation Data in Design
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Yamashita, M.1
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