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Materials Processing and Texture


Materials Processing and Texture


Ceramic Transactions Series, Band 200 1. Aufl.

von: A. D. Rollett

154,99 €

Verlag: Wiley
Format: PDF
Veröffentl.: 05.12.2008
ISBN/EAN: 9780470444184
Sprache: englisch
Anzahl Seiten: 848

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Beschreibungen

This volume contains papers presented at The 15th International Conference on the Texture of Materials from June 1-5th, 2008 in Pittsburgh, PA. Chapters include: <ul> <li>Friction Stir Welding and Processing</li> <li>Texture and Anisotropy in Steels</li> <li>Effects of Magnetic Fields</li> <li>Hexagonal Metals</li> <li>Texture in Materials Design</li> </ul> View information on <a href="http://www.wiley.com/remtitle.cgi?isbn=0470408359"><i>Applications of Texture Analysis: Ceramic Transactions, Volume 201</i></a>.
<p>Preface xv</p> <p>Acknowledgments XVII</p> <p><b>Friction Stir Welding and Processing</b></p> <p>Texture Evolution during Friction Stir Welding of Stainless Steel 3<br /> <i>Jaehyung Cho</i></p> <p>Texture Development in Aluminum Friction Stir Welds 17<br /> <i>Richard W. Fonda, Keith E. Knipling, John F. Bingert, Anthony P. Reynolds, Wei Tang, Kevin J. Colligan, and John A. Wert</i><br /> <br /> Microstructural Studies of a Friction-Stir-Welded AA5052 29<br /> <i>N. T. Kumbhar, Santosh. K. Sahoo, R. Tewari, G. K. Dey, I. Samajdar, and K. Bhanumurthy</i></p> <p>Effect of Microstructure on Mechanical Properties of Friction-Welded Joints between Aluminum Alloys (6061, 5052) and 304 Stainless Steel 35<br /> <i>Í. T. Kumbhar, A. Laik, G. K. Dey, Ê. Bhanumurthy, J. Krishnan, D. J. Derose, R. L. Suthar, S. K. Sahoo, and I. Samajdar</i></p> <p>Effect of Texture on Fracture Limit Strain in Friction Stir Processed AZ31F3Mg Alloy 43<br /> <i>Yutaka S. Sato, Akihiro Sugimoto, Hiroyuki Kokawa, and Chang-Woo Lee</i></p> <p>Microstructure and Texture Analysis of Friction Stir Welds of Copper 53<br /> <i>T. Saukkonen., K. Savolainen, J. Mononen, and H. Hänninen</i></p> <p><b>Texture and Anisotropy In Steels</b></p> <p>The Effects of Texture on the Corrosion Resistance of SS304 Stainless Steel 63<br /> <i>M. Azzi and J. A. Szpunar</i></p> <p>Microstructural Characterization of Dual Phase Steels by Means of Electron Microscopy 71<br /> <i>Liesbeth Barbé and Kim Verbeken</i></p> <p>Grain Size Effect on the Tensile Behavior of a FeMnC TWIP Steel in Relation with the Microstructure and Texture Evolutions 79<br /> <i>David Barbier, Nathalie Gey, Alain Sébastien, and Michel Humbert</i></p> <p>Combination of Two X-Ray Diffraction Settings for Determining the Texture of Small Sheared Samples 87<br /> <i>D. Barbier, Â. Bolle, J. J. Fundenberger, C. Laruelle, and A. Tidu</i></p> <p>Texture of Non-Oriented Rolled Steels by X-Ray and Electron Diffraction 95<br /> <i>Martin Öernik, Milos Predmersky, Andrej Lesko, and Erik Hilinski</i></p> <p>Effect of Coating Texture on Powdering Behavior of Industrially Produced Galvannealed Coating on IF, IFHS and HSQ Grade Steels 103<br /> <i>A. Chakraborty, R.K. Ray, and D. Bhattacharjee</i></p> <p>Including Elastical Anisotropy Due to Texture in a Finite Element Model for the Prediction of Residual Stresses in Welds 115<br /> <i>Koen Decroos, Carsten Ohms, and Yvan Houbaert</i></p> <p>Texture and Microstructure Evolution in a Fe-Si CGO Sheet during the Processing Route before Secondary Recrystallization 123<br /> <i>Francisco Cruz-Gandarilla, Richard Penelle, Thierry Baudin, Hector Mendoza Leon, and J. G. Cabanas-Moreno</i></p> <p>TEM Study of the Inhibition Layer of Commercial Hot-Dip Galvanized Steels 131<br /> <i>Jack Elia, Å. Petit, J -S Lecomte, B. Gay, and V. Pitchon</i></p> <p>Measurement of the Texture Sharpness in Grain-Oriented Electrical Steels 143<br /> <i>M. Frommert, C. Zobrist, D. Raabe, S. Zaefferer, and L. Lahn, Á. Böttcher</i></p> <p>Effects of Composition and Coiling Temperature on Precipitation and Texture Formation in a Few Interstitial Free High Strength Steels 151<br /> <i>Pampa Ghosh and R Ê Ray</i></p> <p>Microstructure and Texture Development in Warm Rolled High Strength IF Steels Containing Cu, Ñ and  161<br /> <i>Arunansu Haldar and Chiradeep Ghosh</i></p> <p>Effect of Tin on the Texture of Nonoriented Electrical Steels 173<br /> <i>Chun-Kan Hou, Tong- Han Lee, and Chun-Chih Liao</i></p> <p>Effect of Cold Rolled Reduction on the Texture and Plastic Strain Ratio of 2205 Duplex Stainless Steel 183<br /> <i>Chun-Kan Hou and Chang-Chia Liu</i></p> <p>Importance of Dislocation Substructures in Texture Control of Low Carbon Steel 193<br /> <i>Hirosuke Inagaki</i></p> <p>Texture Control in Manufacturing Current and Future Grades of Low-Carbon Steel Sheet 207<br /> <i>Leo A.I. Kestens and Roumen Petrov</i></p> <p>Relative Preference for Strain Localizations in Ultra Low Carbon Steel 217<br /> <i>R. Khatirkar, L.A.I. Kestens, R. Petrov, and I. Samajdar</i></p> <p>Influence of Texture on Surface-Roughening during Press Forming in Ti Added High Purity Ferritic Stainless Steel Sheets 223<br /> <i>Ken Kimura, Masaharu Hatano, and Akihiko Takahashi</i></p> <p>Effect of Tin on the Recrystallization Behavior and Texture of Grain Oriented Electrical Steels 231<br /> <i>Chun-Chih Liao, Chun-Kan Hou</i></p> <p>EBSD Investigation of Phase Transformation in Low Carbon Steels 243<br /> Sophie Lubin, Anne-Françoise Gourgues-Lorenzon, Hélène Regle, Frank Montheillet, and Brigitte Bacroix</p> <p>A Monte-Carlo Algorithm for the Zener Drag Effect in the Fe-3%Si Magnetic Alloys 251<br /> <i>N. Maazi, R. Penelle, A. L. Etter, and T. Baudin</i></p> <p>Effect of Strain and Strain Path on Deformation Twinning and Strain Induced Martensite in AISI 316L and 304L Austenitic Stainless Steel 257<br /> <i>S. K. Mishra, P. Pant, K. Narasimhan and I. Samajdar</i></p> <p>Analysis of the Formation and Growth of Recrystallizing Grains in IF Steels by In-Situ EBSP 265<br /> <i>H. Nakamichi and F. J. Humphreys</i></p> <p>Stability of Secondary Recrystallization in Grain-Oriented Silicon Steel 275<br /> <i>Eiichi Namba, Satoshi Arai, Hotaka Homma, and Yoshiyuki Ushigami</i></p> <p>A Practical Investigation into Identifying and Differentiating Phases in Steel using Electron Backscatter Diffraction 285<br /> <i>Matthew M. Nowell, Stuart I. Wright, and John O. Carpenter</i></p> <p>Influence of Precipitate Distribution on Normal Grain Growth Simulation at the Beginning of the Secondary Recrystallization Annealing in a Fe-3%Si Electrical Steel HiB - Role of the MnS and AIN Precipitates 293<br /> <i>C. Sekkak, N. Rouag, and R. Penelle</i></p> <p>Microstructure and Texture Development during Cold Ring Rolling of 100Cr6 301<br /> <i>K. Ryttberg, M. Knutson Wedel, L. Nyborg, and P. Dahlman</i></p> <p>Development of Texture, Microstructure and Grain Boundary Character Distribution after Heavy Cold Rolling and Annealing in a Boron Added Interstitial Free (IF) Steel 311<br /> <i>Rajib Sana and R. K. Ray</i></p> <p>Texture of Nb-Containing Ferritic Stainless Steel after Secondary Recrystallization 317<br /> <i>Rodrigo P. Siqueira, Hugo R. Z. Sandim, and Tarcisio R. Oliveira</i></p> <p>Quantitative Prediction of Transformation Texture in Hot-Rolled Steel Sheets by Multiple KS Relation 325<br /> <i>Toshiro Tomida, Masayuki Wakita, Mitsuru Yoshida, and Norio Imai</i></p> <p>Crystallographic Characterization of a Phosphorus Added TRIP Steel 333<br /> <i>Kim Verbeken, Liesbeth Barbé, and Dierk Raabe</i></p> <p>Microstructural and Textural Evolutions in a Cold Rolled High Mn TWIP Steel 341<br /> <i>Kim Verbeken, Lieven Bracke, Leo Kestens, and Jan Penning</i></p> <p>Stored Energy Evolution in a Cold-Rolled IF Steel 349<br /> <i>A. Wauthier, B. Bacroix, T. Chauveau, O. Castelnau, and H. Réglé</i></p> <p>A Comparison of Texture Measurements Via EBSD and X-RAY 357<br /> <i>Stuart I. Wright and Matthew M. Nowell</i></p> <p>The Measurement Approach of X-Ray Residual Stress in Fe-Ni Alloy with Different Textures 365<br /> <i>Qiulin Wu, Xiaojun Hu, Zuming Fu, Haiyan Zhao, Bing Zhang, Yong Wang, Wei Fang, and Limin Li</i></p> <p>Influence of Grain Orientation on Magnetic Aging Behavior of a Non-Oriented Silicon Steel Sheet 371<br /> <i>L. Xu, W. Mao, P. Yang, and H. Feng</i></p> <p><b>Effects of Magnetic Fields</b></p> <p>Eutectoid Point Shift and Orientation Relationships between Ferrite and Cementite in Pearlite in a High Magnetic Field 381<br /> <i>Y. D. Zhang, C. Esling, H. Klein, X. Zhao, and L. Zuo</i></p> <p>Characteristics of Recrystallization Texture of Cold-Rolled IF Steel Sheet Annealed with a Magnetic Field in the Transverse Direction 389<br /> <i>Yan Wu , Changshu He, Yudong Zhang, Xiang Zhao, Liang Zuo, and Claude Esling</i></p> <p>Crystallographic Features during Martensitic Transformation in Ni-Mn-Ga Ferromagnetic Shape Memory Alloys 397<br /> <i>D. Y. Cong, Y. D. Zhang, C. Esling, Y. D. Wang, X. Zhao, and L. Zuo</i></p> <p>Grain Boundary Misorientation and CSL in Magnetically Annealed Fe-0.75%Si 405<br /> <i>C.M.B. Bacaltchuk, G.A. Castello-Branco, and H. Garmestani</i></p> <p>The Effect of Ultra-High Magnetic Fields on Grain Growth and Recrystallization in Metals 413<br /> <i>A.D. Sheikh-Ali and H. Garmestani</i></p> <p>New Approach to Texturing and Grain Boundary Engineering by Magnetic Field Application 421<br /> <i>Tadao Watanabe, Sadahiro Tsurekawa, Yudong Zhang, Xiang Zhao, Liang Zuo, and Claude Esling</i></p> <p>Effects of Magnetic Field Direction on Texture Evolution in a Cold-Rolled IF Steel Sheet during High Magnetic Field Annealing 435<br /> <i>Yan Wu, Changshu He, Xiang Zhao, and Liang Zuo</i></p> <p><b>Hexagonal Metals</b></p> <p>Electrochemical Behavior of (001), (100) and (110) Ti Single Crystals under Simulated Body Fluid Condition 443<br /> <i>M. Azzi, S. Faghihi, M. Tabrizian, and J. A. Szpunar</i></p> <p>Identification and Rationalization of Secondary Twin Variants in a Magnesium Alloy 451<br /> <i>M. R. Barnett and P. Cizek</i></p> <p>Textures in HCP Titanium and Zirconium: Influence of Twinning 461<br /> <i>Nathalie Bozzolo and Francis Wagner</i></p> <p>Texture and Microstructure Evolution during Asymmetric Rolling of Mg Alloys 473<br /> <i>Jaehyung Cho, Hyung-Wuk Kim, and Suk-Bong Kang</i></p> <p>Prediction of Anisotropic Properties in Mg Alloy Sheets Using the Crystal Plasticity Finite Element Method 483<br /> <i>S.-H. Choi, J.K. Choi, H.W. Lee, and D.H. Kim</i></p> <p>Strain Hardening Behaviour of an Initially Textured TI6AL4V Titanium Alloy as a Function of Strain Rate and Compression Direction 491<br /> <i>Frederik Coghe, Luc Rabet, and Paul Van Houtte</i></p> <p>Texture Evolution during the Static Recrystallization of Three Binary Mg-Y Alloys 501<br /> <i>R. Cottam, J. Robson, G. Lorimer, and B. Davis</i></p> <p>Grain Size and Orientation Distribution Function of High Purity á-Titanium 509<br /> <i>Bradley S. Fromm, Brent L. Adams, Sadegh Ahmadi, and Marko Knezevic</i></p> <p>Textures in Titanium Alloys - An Industrial Perspective on Deformation, Transformation and Properties 521<br /> <i>David Rugg, David Furrer, and Nigel Brewitt</i></p> <p>Annealing Related Microstructural Developments in a Two-Phase ZR-2.5 Nb Alloy 533<br /> <i>V.D. Hiwarkar, S.K. Sahoo, I. Samajdar, K. Narasimhan, Ê. V. Mani krishna, G.K. Dey, D. Srivastav, R. Tiwari, and S. Banarjee</i></p> <p>Texture Aspects of Delayed Hydride Cracking in Products from Zr-Based Alloys 539<br /> <i>Margarita Isaenkova and Yuriy Perlovich</i></p> <p>Effect of Twinning on the Strain Hardening Behaviors of Two Mg Alloys Deformed Along Four Different Strain Paths 547<br /> <i>L. Jiang and J.J. Jonas</i></p> <p>EBSD Study of Annealing Rolled Zirconium 555<br /> <i>L. Jiang, M.T. Pérez-Prad, O.A. Ruan, and M.E. Kassner</i></p> <p>Texture Evolution during Multi-Pass Equal Channel Angular Extrusion of Beryllium 563<br /> <i>Saiyi Li, David J. Alexander, Irene J. Beyerlein, and Donald W. Brown</i></p> <p>A Mechanism of Determining the Formability of AZ31 near Room Temperature 571<br /> <i>Hualong Li, Emilie Hsu, and Jerzy Szpunar</i></p> <p>An EBSD Study of the Misorientations Related to Dynamic Recrystallization in Mg AM30 Deformed At High Temperatures 577<br /> <i>Etienne Martin, Stéphane Godet, Lan Jiang, Abdelbaset Elwazri, Pascal J. Jacques, and John J. Jonas</i></p> <p>Texture Evolution in Boron Modified Ti-6AI-4V Alloy 585<br /> <i>Shibayan Roy, Nilesh Gurao, Satyam Suwas, S. Tamirisakandala, R. Srinivasan, and D.B. Miracle</i></p> <p>Heterogeneous Deformation in Single-Phase Zircaloy 2 593<br /> <i>S. Ê. Sahoo, V. D. Hiwarkar, I. Samajdar, P. Pant, D. Srivastav, R. Tewari, G. K. Dey and S. Banerjee</i></p> <p>Texture of Magnesium Alloy Sheets Heavily Rolled by High Speed Warm Rolling 601<br /> <i>Tetsuo Sakai, Satoshi Minamiguchi, Hiroaki Koh, and Hiroshi Utsunomiya</i></p> <p>Microstructure and Texture Gradient in Titanium Severely Strained by Friction Roll Processing and Subsequent Annealing 609<br /> <i>Meiqin Shi, Tomohiro Umetsu, Yoshimasa Takayama, Hajime Kato, and Hideo Watanabe</i></p> <p>Evolution of Transformation Texture in a Metastable ß-Titanium Alloy 617<br /> <i>Satyam Suwas, Nilesh P. Gurao, Ashkar Ali</i></p> <p>Dislocations in Textured Mg-4.5%AI-1 %Zn Alloy: TEM and Statistical Studies 629<br /> <i>V.N. Timofeev, V.N. Serebryany, and Yu A. Zaliznyak</i></p> <p>Microstructure and Micro-Texture Evolution of Compression Twins in Magnesium 637<br /> <i>P. Yang, L. Meng, ×. Li, W. Mao, and L. Chen</i></p> <p><b>Texture In Materials Design</b></p> <p>Accessing the Texture Hull and Properties Closure by Rotation and Lamination: Results in the Primitive Basis of Dilation Functions 647<br /> <i>Brent L. Adams and David T. Fullwood</i></p> <p>Correlation Relationship between Yield Strength and the Elastic Compliance for the Polycrystalline Nickel 201 657<br /> <i>Sadegh Ahmadi, Brent L. Adams, David T. Fullwood, and Bradley S. Fromm</i></p> <p>Modeling Rolling Texture of Twinned Cu Single Crystals 665<br /> <i>Khaled Al-Fadhalah, Armand Beaudoin, and Marek Niewczas</i></p> <p>Multiscale Modeling of Equal Channel Angular Extruded Aluminum with Strain Gradient Crystal Plasticity and Phenomenological Models 671<br /> <i>L. Duchêne, M.G.D. Geers, W.A.M. Brekelmans, E. Chen, B. Verlinden, and A.M. Habraken</i></p> <p>Effect of Deformation Constraints on the Texture Formation in Al-5mass%Mg Solid Solution at High Temperatures 679<br /> <i>Kazuto Okayasu, Masayuki Sakakibara, and Hiroshi Fukutomi</i></p> <p>Spectral Methods in the Statistical Description and Design of Microstructure 687<br /> <i>D.T. Fullwood, B.L. Adams, K.A. Stevens, S.R. Niezgoda, and S.R. Kalidindi</i></p> <p>A Comparison of Deformation Textures and Mechanical Properties Predicted by Different Crystal Plasticity Codes 701<br /> <i>Craig S. Hartley, Paul R. Dawson, Donald E. Boyce, Surya R. Kalidindi, Marko Knezevic, Carlos Tomé, Ricardo Lebensohn, S. Lee Semiatin, Todd J. Turner,</i> <i>and Ayman A. Salem</i></p> <p>Simulation of Texture Development in Pure Aluminum Deformed by Equal Channel Angular Pressing 713<br /> <i>Majid Hoseini, Mahmood Meratian, Hualong Li, and Jerzy Szpunar</i></p> <p>Plastic Heterogeneity Due to Grain Boundaries and Its Influence on Global Deformation Textures 721<br /> <i>Anand Ê Kanjarla, Paul Van Houtte, and Laurent Delannay</i></p> <p>On the Correlation of Surface Texture and Strain Induced Surface Roughness in AA6XXX Aluminum Sheet 731<br /> <i>S. Küsters, M. Seefeldt, and P. Van Houtte</i></p> <p>The Variation Range for the Results of FCC Texture Simulations Based on {111 }<110> Slip 743<br /> <i>Torben Letters</i></p> <p>Development of Low Magnetism and Strongly Cube-Textured Composite Ni-7%W/Ni-10%W Substrate for Coated Superconductor 751<br /> <i>Dan-min Liu, Fei Hao, Jiu-xing Zhang, Yan-cao Hu, Mei-ling Zhou, and Wei-peng Liu</i></p> <p>Two-Point Orientation Coherence Functions: An Orthonormal Series Solution 759<br /> <i>Peter R. Morris</i></p> <p>The Influence of Shear Bands on Microtexture Evolution in Polycrystalline Copper 765<br /> <i>H. Paul and J.H. Driver</i></p> <p>Influence of Dislocation Stress on the Corrosion Behavior of (111) and (123) Surface Plane of Aluminum Single Crystal 775<br /> <i>Dashi Pei, Weimin Mao, and Huiping Feng</i></p> <p>Texture Randomization by Intense Shearing in Layered AI and AI (0.3%Sc) ARB-Processed Sheet 783<br /> <i>M.Z. Quadir, O. Al-Buhamad, L. Bassman, and M. Ferry</i></p> <p>Texture Development of Molybdenum Sheets during Last Step of Heat Treatment 791<br /> <i>C.-G. Oerrel, I. Hünsche, W. Skrotzki, A. Lorich, and W. Knabl</i></p> <p>Solute, Superplasticity and Texture Change in Aluminium Alloys 801<br /> <i>K. Sotoudeh, P.S. Bate, and F.J. Humphreys</i></p> <p>Texture-Based Plastic Potentials in Stress Space 809<br /> <i>Albert Van Bael, Sampath K. Yerra, Paul Van Houtte, and Albert Van Bael</i></p> <p>Hierarchical Multi-Level Modelling of Plastic Anisotropy using Convex Plastic Potentials 817<br /> <i>Paul Van Houtte, Sampath K. Yerra, and Albert Van Bael</i></p> <p>Author Index 827</p>
<b>A.D. Rollett</b> obtained an M.A. in Metallurgy and Materials Science from Cambridge University, England in 1977 and a Ph.D. in Materials Engineering from Drexel University in 1987. He worked for the Los Alamos National Laboratory for sixteen years, rising to be the Deputy Director of the Materials Science & Technology Division in 1994. He then moved to Carnegie Mellon University to be the Department Head in Materials Science & Engineering until 2000. He is active in the Materials Research Science & Engineering Center at CMU and is the Focal Area Point of Contact for Computational Chemistry & Materials for the DoD.

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