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Proceedings of the 3rd World Congress on Integrated Computational Materials Engineering (ICME)
Poole, Warren
Christensen, Steve
Kalidindi, Surya
Luo, Alan A.
Madison, Jonathan
Raabe, Dierk
Sun, Xin
This book represents a collection of papers presented at the 3rd World Congress on Integrated Computational Materials Engineering (ICME), a specialty conference organized by The Minerals, Metals & Materials Society (TMS), and held in Colorado Springs, Colorado, May 31 – June 4, 2015. This meeting convened ICME stakeholders to examine topics relevant to the global advancement of ICME as an engineering discipline.The 42 papers presented in these proceedings are divided into six sections: (1) ICME Applications; (2) ICME Building Blocks; (3) ICME Success Stories and Applications (4) Integration of ICME Building Blocks: Multi–scale Modeling; (5) Modeling, Data and Infrastructure Tools, and (6) Process Optimization. The papers represent a cross section of the presentations and discussions from the conference.These papers are intended to further the global implementation of ICME, broaden the variety of applications to which ICME is applied, and ultimately help industry design and produce new materials more efficiently and effectively. INDICE: Preface . xi .Acknowledgments xiii .Conference Editors/Organizers xv .ICME Applications .Importance of Controlling Microstructure Heterogeneity When Designing Steel 3K. Ushioda, H. Sawada, and M. Sugiyama .ICME for Process Scale–Up: Importance of Vertical and Horizontal Integration of Models 11G. Tennyson, R. Shukla, S. Mangal, S. Sachi, and A.K. Singh .Finite Element Model for Plymouth Tube Processing Using Internal State Variables 23H. Cho, M.F. Horstemeyer, Y. Hammi, and D.K. Francis .Ab–Initio Calculation of Solute Effects on Austenite Grain Boundary Properties in Steel 31M. Hoerner, M. Eberhart, and J. Speer .ICME Towards Improved Understanding of Bainite in 100CR6 39W. Song, W. Bleck, and U. Prahl .Steel Ab Initio: Quantum Mechanics Guided Design of New Fe–Based Materials 47W. Song, U. Prahl, and W. Bleck .Experiments and Modeling of Three–Dimensional Dendritic Morphology of Magnesium Alloy 55M. Yang, Z. Guo, and S. Xiong .Phase Field Simulation of Orowan Strengthening by Coherent Precipitate Plates in a Mg–Nd Alloy 63H. Liu, Y. Wang, and J.–F. Nie .Application of Multi–Scale Fatigue Models in Lightweight Metal Castings 73Q. Wang .Experimental Verification for Solid Fraction Measurement in Semi–Solid Silver Metal Processing in Comparison with Theoretical Thermodynamics Model 81P. Wirot, B. Lohwongwattana, and E. Nisaratanaporn .Experimental and Numerical Determination of the Fracture Energy of Pan/Phenolic–Based Carbon/Carbon Composites 89K. Iqbal .ICME Building Blocks .From Integrated Computational Materials Engineering to Integrated Computational Structural Engineering 99R. Dutton, P. Kobryn, D. Ball, J. Castle, M. James, and P. Yavari .Predictive Simulation of Diffusion in Ni–Based Alloys Using Pair Interaction Based Kinetic Monte Carlo Method 107D.R. Alfonso and D.N. Tafen .Yield Strength Model for Undercooled Aluminium Alloys Based on Calorimetric In–Situ Quenching Experiments 115M. Reich, P. Schumacher, B. Milkereit, and O. Kessler .Load Partitioning Mechanisms in Stainless Steel 440C by Crystal Plasticity Based Micromechanical Modeling Approach 123L. Zheng, W. Yuan, and H. Badarinarayan .A Molecular Dynamics Simulation Mechanism with Imprecise Interatomic Potentials 131A.V. Tran and Y. Wang .A Curve Swarm Algorithm for Global Search of State Transition Paths 139L. He and Y. Wang .Modelling the Microstructure of Polycrystalline Austenite–Martensite Steels 147A. Rahnama and R.S. Qin .An Interface to Quantum ESPRESSO 155L. Malakkal, B. Szpunar, J.C. Zuniga, R.K. Siripurapu, and J.A. Szpunar .ICME Success Stories and Applications .Microstructure Modelling in ICME Settings 165G.J. Schmitz, B. Böttger, and M. Apel .Development of an ICME Approach for Aluminum Alloy Corrosion 173K.D. Smith, M. Jaworowski, R. Ranjan, and G.S. Zafiris .ICME Support for Jumbo Vertical Bloom Continuous Caster 181P.I. Anderson, K. Sawamiphakdi, D. Cao, and C.M. Eastman Jr. .ICME Applications in Optimizing Welding and Thermal–Forming Processes 189Y.–P. Yang, H. Kim, B. Mohr, H. Castner, T.D. Huang, and D. Fanguy .Design of Co–Free Cemented Carbides 197M. Walbrühl, J. Ågren, and A. Borgenstam .Integration of ICME Building Blocks: Multi–Scale Modeling .Modeling and Simulation of Directional Solidification of Ni–Based Superalloy Turbine Blades Casting by Liquid Metal Cooling 207Q. Xu, N. Tang, and L. Baicheng .From Melt Pool to Strength – Application of ICME Methods for the Development of Rapid Manufacturing Technologies 215T. Maiwald–Immer, T. Göhler, and A. Fischersworring–Bunk .Calibrated Localization Relationships for Polycrystalline Aggregates by Using Materials Knowledge System 221Y.C. Yabansu and S.R. Kalidindi .Computational Modeling and Experimental Characterization of Martensitic Transformations in NiCoAl for Self–Sensing Materials 229T.A. Wallace, V.I. Yamakov, J.D. Hochhalter, W.P. Leser, J.E. Warner, J.A. Newman, G.P.P. Pun, and Y. Mishin .Mesoscale Modeling of 3–d Voids Evolution in Large Ingot during Multi–Hit Deformation 237F. Chao, C. Zhenshan, S. Xiaoqing, and L. Xinjia .Modeling, Data and Infrastructure Tools .Data Infrastructure Developed for PW–8: Nickel Base Superalloy Residual Stress Foundational Engineering Problem 247T. Wong, V. Venkatesh, and T.J. Turner .Application of Machine Learning Techniques for Inverse Prediction in Manufacturing Process Chains 261S. Shah, S. Reddy, A. Sardeshmukh, B.P. Gautham, G. Shroff, and A. Srinivasan .nanoHUB as a Platform for Implementing ICME Simulations in Research and Education 269T. Faltens, A. Strachan, and G. Klimeck .A Review of Materials Data Infrastructure Projects 277ASM International CMD Network, S.D. Henry, and L.A. Berardinis .An Integrated Collaborative Environment for Materials Research 285M.D. Jacobsen, M.D. Benedict, B.J. Foster, and C.H. Ward .Analysis of Published Cast Iron Experimental Data 293S. Biswas, C. Monroe, and T. Prucha .Process Optimization .A General Simulation Technology for Forging with Considering the Evolution of Voids, Grains and Cracks 307L. Xinjia, S. Xiaoqing, C. Zhenshan, F. Chao, and D. Dingqian .A Method for Determining the Set Points of the Ladle, Tundish and Caster for Manufacturing a High Strength Steel Slab 315R. Shukla, R. Anapagaddi, J.K. Allen, J.H. Panchal, F. Mistree, and A.K. Singh .ICME for the Integrated Design of an Automotive Gear Considering Uncertainty 323B.P. Gautham, N. Kulkarni, P. Zagade, J.K. Allen, F. Mistree, and J. Panchal .An Integrated Surrogate Modeling Approach for Materials and Process Design 331M. SennUncertainty Management in the Integrated Realization of Materials and Components 339J.K. Allen, J. Panchal, F. Mistree, A.K. Singh, and B.P. Gautham .Exploring the Performance–Property–Structure Solution Space in Friction Stir Welding 347C.–H. Goh, A.P. Dachowicz, J.K. Allen, and F. Mistree .Force Modelling for Temperature Field Determination during High Speed End–Milling of Super Alloys 355S.J. Ojolo, O. Agunsoye, and O. Adesina .Author Index 367 .Subject Index 371
- ISBN: 978-1-119-13949-2
- Editorial: John Wiley & Sons
- Encuadernacion: Cartoné
- Páginas: 400
- Fecha Publicación: 08/06/2015
- Nº Volúmenes: 1
- Idioma: Inglés