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Materials Lifetime Science and Engineering.

Publisher: Wiley, 2013.
Edition/Format:   eBook : Document : English

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Genre/Form: Electronic books
Conference papers and proceedings
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
ISBN: 1306533481 9781306533485 9781118788134 1118788133
OCLC Number: 874966373
Description: 1 online resource
Contents: Session ILinkage Between Safe-Life and Crack Growth Approaches forFatigue Life Prediction 3D.G. Harlow and R.P. WeiA Mechanistic Based Study of Fatigue Crack Propagation in theSingle Crystal Nickel Base Superalloy CMSX-2 9S.D. Antolovich and B.F. AntolovichThermographic Detection of Fatigue Damage in Hastelloy (R)C-2000 (R) Superalloy 25T.A. Saleh, B. Yang, P.K. Liaw, R.A. Buchanan and D.L*KlarstromElevated-Temperature Crack-Growth Behavior of Nickel-BaseHastelloy (R) X Alloy 33Y.L. Lu, L.J. Chen, P.K. Liaw, G.Y. Wang, M.L. Benson, S.A.Thompson, J.W. Blust, P.F. Browning, A.K. Bhattacharya, J.M.Aurrecoechea and D.L. KlarstromCreep-Fatigue Life Prediction of Cr-Mo Steel Alloys43T. GoswamiEffect of Microstructure on the Very High Cycle Fatigue of Alloyat Room and Cryogenic Temperatures 51C. Bathias and J. BechetSession IIDetermining Worst-Case Fatigue Thresholds for Grain-BridgingCeramics 61J.J. Kruzic, R. Yuan, R.M. Cannon and R.O. RitchieLocalized Deformation Around Indentations and the Effects ofHydrogen on Dislocation Cross-Slip 69K.A. Nibur and D.F. BahrRotating-Beam Fatigue Properties and Effect of Ni ElementAdditive in Bulk Glassy AEA^,IE,^AE^Alloys 77Y. Yokoyama, K. Fukaura and A. InoueA Mechanism for Fatigue Crack Initiation in Pure Metal 91T. ZhaiAnalysis of Plastic Deformation Behavior During Equal ChannelAngular Pressing 99Y. Liu, Z. Tang, B. Huang and K. ZhouEvaluating the Induced Strain During Equal Channel AngularProcessing 119G.M. Stoica and P.K. LiawSession IIIOn the Development of Life Prediction Methodologies for theFailure of Human Teeth 137R.K. Nalla, V. Imbeni, J.H. Kinney, S.J. Marshall and R.O.RitchiePredicting Material Consumption by Cyclic Oxidation SpallingModels 147J.L. SmialekCorrosion Damage Functions 155R.H. JonesPrediction of High Temperature Cyclic Oxidation Kinetics with aSimple Statistical Spalling Model 165D. Poquillon and D. MonceauInfluence of Environment on Creep Properties of MC2 SingleCrystal Superalloy at 1050 DegreesC and 1150 DegreesC 173S. Dryepondt, E. Andrieu, D. Monceau, F. Crabos and C.VernaultInfluence of Environment on Mechanical Behavior of Alloy 718 at650 DegreesC 181V. Garat, B. Viguier, J.M. Cloue and E. AndrieuSession IVLife Prediction Strategies for Land-Based Gas Turbine Blades191K.S. Chan, N.S. Cheruvu, G.R. Leverant, and R.ViswanathanFatigue Fracture Mechanism and Fatigue Life Assessment ofAluminum Castings 211Q.G. WangFatigue and Fretting Fatigue of Biomaterial, Ti-29Nb-13Ta-4.6Zr,in Air and Simulated Body Environment 223M. Niinomi, T. Akahori and K. IshimizuEffect of Alpha Grain size on Low-Temperature Fatigue Propertiesof Ti-5%Al-2.5%Sn EH Alloy 231Y. Ono, T. Yuri, H. Sumiyoshi, S. Matsuoka and T. OgataAddendumThe Behavior of Hastelloy (R) C-2000 (R) Alloy UnderStrain-Controlled Fatigue Loading 241R.L. McDaniels, L. Chen, R. Steward, P.K. Liaw, R.A. Buchananand D.h. KlarstromSubject Index 255Author Index 259


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