Materials damage prognosis : proceedings of a symposium held during the Materials Science & Technology 2004 Conference, in New Orleans, Louisiana, USA, September 26-30, 2004

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Bibliographic Details
Corporate Author: Minerals, Metals and Materials Society. Structural Materials Division.
Other Authors: Larsen, James M.
Format: eBook
Language: English
Published: Warrendale, Pennsylvania : TMS, ©2005.
Subjects:
ISBN: 9781523111695
1523111690
0873395972
9780873395977
Physical Description: 1 online resource (ix, 357 pages) : illustrations

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Table of contents

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008 110412s2005 paua ob 101 0 eng d
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020 |a 9781523111695  |q (electronic bk.) 
020 |a 1523111690  |q (electronic bk.) 
020 |z 0873395972 
020 |z 9780873395977 
035 |a (OCoLC)712559794  |z (OCoLC)761401470  |z (OCoLC)1024024450  |z (OCoLC)1048665590 
042 |a dlr 
245 0 0 |a Materials damage prognosis :  |b proceedings of a symposium held during the Materials Science & Technology 2004 Conference, in New Orleans, Louisiana, USA, September 26-30, 2004 /  |c sponsored by the Structural Materials Division (SMD) of TMS (the Minerals, Metals & Materials Society) ; edited by James M. Larsen [and others]. 
246 3 |a MS & T '04 
264 1 |a Warrendale, Pennsylvania :  |b TMS,  |c ©2005. 
264 4 |c ©2005 
300 |a 1 online resource (ix, 357 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
500 |a "The proceedings arose from a three-day symposium on Materials Damage Prognosis, which was held as part of the Materials Science and Technology 2004 (MS & T '04) conference in New Orleans, LA, 27-29 September, 2004"--Preface 
504 |a Includes bibliographical references and indexes. 
505 0 0 |g Overview and Applications --  |t Materials Damage Prognosis: A Revolution in Asset Management /  |r L. Christodoulou and J.M. Larsen -- Integrated Prognostic System of Systems Health Management /  |r D. Adams, M. Smith, A. Chaturvedi, M. Rotea, C. Hoffman, B. Craig, V. Venkatasubramanian, H. Mahmassani, D. Pines, S. Meliopoulis, and J. Busemeyer --  |t Engine System Prognosis /  |r J.W. Little Jr. and M.B. Buczec --  |t Structural Prognosis : What Everyone Should Know! /  |r P.C. Hoffman --  |t Damage Detection and Prediction for Composite Plates /  |r C.R. Farrar, G. Park, F.M. Hemez, T.B. Tippetts, H. Sohn, J. Wait, D.W. Allen, and B.R. Nadler --  |t Integrated Systems Health Management : Enabling Technology for Effective Utillization of Air Vehicle Systems /  |r M.M. Derriso, J.R. Calcaterra, and S.E. Olson --  |g Multi-Scale Modeling and Simulation.  |t Cumulative Damage Models for Single Crystal Nickel-Based Superalloy /  |r M. Chati, J. Laflen, and K. Wright --  |t Deterministic Modeling of Alloy 22 Uniform Corrosion : Model Parameter Derivation from Electrochemical Impedance Spectroscopy Data /  |r L.G. McMillion, A. Sun, D.D. Macdonald, and S.A.Namjoshi --  |t Prediction of Scatter in Fatigue Properties Using Discrete Damage Mechanics /  |r A. Rinaldi, P. Peralta, D. Krajcinovic, and Y.-C. Lai --  |t 3D Digital Microstructures for Prognosis Modeling /  |r A. Brahme, D. Saylor, R. Campman, S. Lee, J. Fridy, and A.D. Rollett --  |t Fretting Fatigue of Ti-6A1-4V : A Micromechanical Approach /  |r J. Mayeur, R.W. Neu, and D.L.McDowell --  |t Physics-Based Modeling of Composite Materials /  |r T.O. Williams and T.B. Tippetts --  |g Probablistic, Risk, and Uncertainty Methods.  |t Identifying Sensitive Parameters at Fatigue Crack Nucleation Sites Using Microstructural Simulation Models /  |r R.G. Tyron, A. Dey, G. Krishnan, K.S.R. Chandran, and M. Oja --  |t Fatigue Crack Growth Variability in Waspaloy Under Representative Loading Conditions /  |r M.J. Caton, J.M. Larsen, and A.H. Rosenberger --  |t The Role of Microstructure in Fatigue Life Variability in ß-Processed Ti-Al-4V /  |r A.K. Polasik, S.K. Jha, M.J. Mills, J.M. Larsen, and H.L. Fraser --  |t Multiscale Fatigue Modeling and Life Prediction for 7075-T651 Aluminum Alloy /  |r Y. Xue, B. Jordon, and M.F. Horstemeyer --  |t MicroFaVa : A Micromechanical Code for Predicting Fatigue Life Variability /  |r K.S. Chan, M.P. Enright, and J. Kong --  |t Prediction of the Worst-Case Fatigue Failures in an a⁺ß Titanium Alloy /  |r S. Jha, J.M. Larsen, A.H. Rosenberger, and C. Annis --  |t RFTH, A Random Fatigue Threshold Probalility Density For Ti6246 /  |r C. Annis, J.M. Larsen, A.H. Rosenberger, S.K. Jha, and D.H. Annis --  |t The Influence of Uncertainty in Usage and Fatigue Damage Sensing on Turbine Engine Prognosis /  |r S.J. Hudak, Jr., B.R. Lanning, G.M. Light, J.M. Major, J.A. Moryl, M.P. Enright, R.C. McClung, and H.R. Millwater --  |t An Integrated Bearing Prognosis Approach Using Advanced Health Monitoring and Material-Level Modeling /  |r R. Orsagh, M. Roemer, J. Sheldon, and C.J. Klenke --  |t Resolving Experimental Damage in Carbon Fiber Composites Using Uncertainty Analysis /  |r J.G. Ragsdale, J.R. Jackson, J.A. Schneider, and W.G. Steele --  |t Uncertainty and Confidence in Prognosis /  |r G. Vachtsevanos and B. Wu --  |g Local and Global Methods and Sensors for Interrogation of Materials Damage State.  |t Demonstration of an Advanced Prognostic Health Management Approach for Gas Turbine Engines /  |r J.W. Littles, Jr., R.G. Pettit, J.J. Schirra, B.A. Cowles, R.A. Holmes, S.M. Russ, A.H. Rosenberger, and J.M. Larsen --  |t Simulation of Deformation Modes for Damage Detection in Turbine Engine Disks /  |r R.A. Brockman, M.A. Huelsman, and R. John --  |t Spin-Pit Crack Growth Testing to Evaluate Materials-Based Prognosis Concept /  |r J.L. Williams, D.M. Corbly, R.H. VanStone, B.H. Lawless, A. Kaya, and G. Khan --  |t Low Cycle Fatigue Rotor Burst Prognostic Using Blade Tip Sensors Crack Detection on Aero-Engine Hardware /  |r A. von Flotow, P. Tappert, M. Mercadal, B. Hardman, and M. Drumm --  |t A Precursor for Fatigue Damage on a Nickel-Based Superalloy /  |r E. Burke, N. Ashbaugh, S. Sathish, S. Freed, and A. Rosenberger --  |t Microscopic Laser Ultrasonics for Determining Microstructure Changes Due to Material Degradation /  |r D.H. Hurley, K.L. Telschow, V.A. Deason, Y. Sugawara, and O. Wright --  |t Tracing Fatigue Damage Precursors Using the Laser Scanning Technique (LST) /  |r V.B. Markov, B.D. Buckner, J. Angeles, and J.C. Earthman --  |t Embedded Piezoelectric Wafer Active Sensors for Material Damage Diagnosis and Prognosis /  |r V. Guirgiutiu --  |t Ultrasonic Fatigue of a Nickel-Based Turbine Disk Alloy at Room and Elevated Tempuratures /  |r A. Shyam, C.J. Torbet, C.J. Szczepanski, S.K. Jha, M.J. Caton, J.M. Larsen, T.M. Pollock, and J.W. Jones --  |t Nondestructive Characterization of Thermal Aging Effects on Mechanical and Fracture Properties of 1Cr1Mo0.25V Steel Using Ball Indentation /  |r C.-S. Seok, J.-P. Kim, E.S. Park, and K.L. Murty --  |t AMSN (Arrayed Multiple Sensor Networks) for Material and Structural Prognostics /  |r T. Niblock, H.S. Surangalikar, J. Morse, B.C. Laskowski, J. Moreno, and B. Caldwell --  |t Structural Health Monitoring Studies of a Friction Stir Welded A1-Li Plate for Cryotank Application /  |r S. Sundararaman, D.E. Adams, and K. Jata --  |t Development of Automated Damage Detection Techniques /  |r M.M. Derriso, S.E. Olson, M.P. DeSimio, and B. Sanders --  |t Physically-Based Heatlh Mangement Tool for Improved Prognostics and Diagnostics of Turbine Engines /  |r D.W. Akers, and C.A. Rideout --  |t A Dynamical Systems Engineering Approach to Vehicle Health Monitoring and Nondestructive Inspection System Design /  |r W.G. Frazier, D.L. Parker, and H.E. Rinehart --  |t Method and System for Discovering and Recovering Unused Service Life /  |r S.V. Zaat --  |g Materials Failure and Signature Analysis.  |t Prediction of Crack Paths Based Upon Detailed Microstructure Characterization in a near-y TiA1 Alloy /  |r B.C. Ng, T.R. Bieler, M.A. Crimp, and D.E. Mason --  |t Characterization of the Role of Microstructure on the Fatigue Life of Ti-6A1-2Sn-4Zr-6Mo Using Ultrasonic Fatigue /  |r C.J. Szczepanski, A. Shyam, S.K. Jha, J.M. Larsen, C.J. Torbet, S.J. Johnson, and J.W. Jones --  |t Autonomous Impact Damage Detection, Isolation and Severity Prediction for Aerospace Structures /  |r M.J. Roemer, J. Ge, A. Liberson, G.P. Tandon, and R.Y. Kim --  |t A Model for Ductile Failure Applied to Anisotropic A1 2024 /  |r D. Steglich, D. Paganelli, T. Pardoen, and W. Brocks --  |t Superimposing Mechanisms and Their Effect on the Variability in Fatigue Lives of a Nicke-Based Superalloy /  |r S.K. Jha, M.J. Caton, J.M. Larsen, A.H. Rosenberger, K. Li, and W.J. Porter. 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
590 |a Knovel  |b Knovel (All titles) 
650 0 |a Continuum damage mechanics  |v Congresses. 
650 0 |a Fracture mechanics  |v Congresses. 
650 0 |a Strength of materials  |v Congresses. 
655 7 |a elektronické knihy  |7 fd186907  |2 czenas 
655 9 |a electronic books  |2 eczenas 
700 1 |a Larsen, James M. 
710 2 |a Minerals, Metals and Materials Society.  |b Structural Materials Division. 
776 0 8 |i Print version:  |t Materials damage prognosis.  |d Warrendale, Pa. : TMS, ©2005  |w (DLC) 2005592412  |w (OCoLC)60385082 
856 4 0 |u https://proxy.k.utb.cz/login?url=https://app.knovel.com/hotlink/toc/id:kpMDP00002/materials-damage-prognosis?kpromoter=marc  |y Full text