introduction to dislocations


Dislocations are defects in the crystal structure of important engineering materials, such as metals, ceramics and semi-conductors, that strongly influence the properties of these materials. "The authors have taken an already exemplary textbook and ensured that it is both up-to-date and manageable. Electronic Device Failure Analysis Society, Parker Hannifin Powder Characterization Lab, Journal of Materials Engineering & Performance, ASM Materials Platform for Data Science API, Magnesium AZ31B-H24 Alloy Sheet: Tensile Test Data, P91 Steel: Creep-Fatigue Crack Growth Measurements, Skutterudites and Half-Heusler Alloys: Mechanical and Thermal Properties, Tool Steels: Standard Designations and Compositions (ASM Alloy Center), Introduction to Dislocations, 5th Edition, Author: Derek Hull and D. J. Bacon|Softcover|Product code: 75033G|ISBN: 9780080966724, Classified as: Computational Materials Engineering Electronics more, IN STOCK Information about shipping / delivery. Also, in the event that your company has a corporate shipping account with UPS or FedEx, we are happy to use your account number for delivery of your products. Most of this package assumes no prior knowledge. Domestic shipments typically are received within 3-5 business days; international shipments take approximately 2-4 weeks depending on your specific location. Includes initial monthly payment and selected options. --, Kevin J. Hemker, Professor and Chair of Mechanical Engineering, Johns Hopkins University, "One of the most striking advantages of the book is the concise and lucid textThere are many books dealing with dislocations but only one up-to-date introduction. However, some of the more detailed explanations use the following: It should be possible to make use of the package even without knowledge of these concepts. No other book on the topic is as credible and, with this new edition, as up-to-date. : No other book on the topic is as credible and, with this new edition, as up-to-date. The carefully chosen bibliography sections at the end of every chapter are invaluable. has become established as a key resource for students, graduates and researchers. Dislocations are defects in the crystal structure of important engineering materials, such as metals, ceramics and semi-conductors, that strongly influence the properties of these materials. Customer Reviews, including Product Star Ratings help customers to learn more about the product and decide whether it is the right product for them. Nanoindentation studies of Dislocation-Grain Boundary Interactions, Evolution of dislocation patterns in fcc metals, Plastic deformation of minerals at high pressure, Dislocation and twin substructure evolution during strain hardening of an Fe22 wt.% Mn0.6 wt.% C TWIP steel observed by electron channeling contrast imaging, Multistage strain hardening through dislocation substructure and twinning in a high strength and ductile weight-reduced FeMnAlC steel, Structure-property relations in nonferrous metals, Revealing the strain-hardening behavior of twinning-induced plasticity steels: Theory, simulations, experiments, The effect of grain size and grain orientation on deformation twinning in a Fe22 wt.% Mn0.6 wt.% C TWIP steel, Interaction Between Basal Slip and a Mg17Al12 Precipitate in Magnesium, Atom probe informed simulations of dislocationprecipitate interactions reveal the importance of local interface curvature, Design of a novel Mn-based 1 GPa duplex stainless TRIP steel with 60% ductility by a reduction of austenite stability, Dislocation density measurement by electron channeling contrast imaging in a scanning electron microscope, Growth and collapse of nanovoids in tantalum monocrystals, Effect of strain path and texture on microstructure in Fe22 wt.% Mn0.6 wt.% C TWIP steel, Hardening and softening during plastic deformation of hexagonal metals, Mechanical metallurgy - Dieter_ George Ellwood.pdf, Rapid alloy prototyping: Compositional and thermo-mechanical high throughput bulk combinatorial design of structural materials based on the example of 30Mn1.2 C< i> x Al triplex steels, Slip systems and plastic shear anisotropy in Mg2SiO4 ringwoodite: insights from numerical modelling, Strain-hardening behavior of twinning-induced plasticity steels, Strain-hardening behavior of twinning-induced plasticity steels: Theory, simulations, experiments, Revealing the strain-hardening mechanism of advanced high-Mn steels by multi-scale microstructure characterization, Strain-hardening of twinning-induced plasticity steels, Size and orientation effects in partial dislocation-mediated deformation of twinning-induced plasticity steel micro-pillars, Mixed Atomistic-Continuum Models of Material Behavior: The Art of Trascending Atomistics and Informing Continua, 45 Fundamentals of interface phenomena in advanced bulk nanoscale materials FUNDAMENTALS OF INTERFACE PHENOMENA IN ADVANCED BULK NANOSCALE MATERIALS, Detwinning mechanisms for growth twins in face-centered cubic metals, FUNDAMENTALS OF INTERFACE PHENOMENA IN ADVANCED BULK NANOSCALE MATERIALS, Simulations of stress-induced twinning and de-twinning: A phase field model, Investigation of vacancy formation by a jogged dissociated dislocation with large-scale molecular dynamics and dislocation energetics, Basal and non-basal dislocation slip in MgY, Deformation twinning in nanocrystalline Al by molecular-dynamics simulation, WORK HARDENING IN HETEROGENEOUS ALLOYSA MICROSTRUCTURAL APPROACH BASED ON THREE INTERNAL STATE VARIABLES, FATIGUE BEHAVIOUR OF AISI 316L: Mechanical response, Microstructural evolution, Fatigue crack propagation, & Physically-based constitutive modelling, Dependence of equilibrium stacking fault width in fcc metals on the -surface, In situ investigation of MgO nanocube deformation at room temperature, Transmission electron microscopy study of dislocation motion in icosahedral AlPdMn, Dislocation cross-slip controlled creep in Zircaloy-4 at high stresses, Crystal Plasticity Finite Element Methods, Mechanical properties of undoped GaAs. include a shipping charge that is calculated based on weight and your geographic location. Need to read more time to know if approprite. No other book on the topic is as credible and, with this new edition, as up-to-date. You can also access your purchased document by searching for it and clicking on the "Download" button on the document's product detail page. Audience: Advanced undergraduate and graduate students taking dislocations, mechanical properties, mechanisms of deformation and fracture, and properties of materials courses as part of broader mechanical engineering and materials science curricula; Industry and academic researchers in the subjects listed above. You can download the paper by clicking the button above. The book provides students and practitioners with the fundamental principles required to understand dislocations. This update brings the book's coverage, references and context in line with the latest developments to ensure it remains a core reference for all those studying and working in the field today. Access codes and supplements are not guaranteed with used items. Read instantly on your browser with Kindle Cloud Reader. --Steel Times, THE classic introduction to dislocations and the role they play in the properties of crystalline solids as clear and easy to understand as ever, now fully updated with the latest developments and references. is widely recognized to provide the essential knowledge base required for further study, research and technological application in the field. , Butterworth-Heinemann; 5th edition (April 18, 2011), Language Unable to add item to List. ASM International does receive a discount from UPS because of the volume of shipping we do and this discount is passed along to you directly. Chapters 3 to 5 discuss the behavior of dislocations and explain how changes in the structure and arrangement of atoms can affect the behavior of dislocations. is available now and can be read on any device with the free Kindle app. Reviewed in the United States on December 26, 2019. . By incorporating later developments in subsequent editions whilst retaining a concise, accessible style. Accessibility StatementFor more information contact us atinfo@libretexts.orgor check out our status page at https://status.libretexts.org. ASM International is the world's largest association of materials-centric engineers and scientists. ASM World Headquarters 9639 Kinsman Road Materials Park, OH 44073-0002. Returns must be undamaged and in resalable condition. This update brings the book's coverage, references and context in line with the latest developments to ensure it remains a core reference for all those studying and working in the field today. --Materials World Magazine, October 2012, "This book fits a very much needed slot as it is written at a level that is much easier to understand than the classic old texts on dislocationsand is, for that reason, ideal for both undergraduates and beginning or interdisciplinary graduate students." We dont share your credit card details with third-party sellers, and we dont sell your information to others. Introduction to Dislocati has been added to your Cart. Returns are made at the expense of the customer. This was my test in Grad School - only better with the subsequent revisions. All items are shipped using UPS Ground Service for domestic service and UPS International for all other shipments. 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Introduction to Dislocations is widely recognized to provide the essential knowledge base required for further study, research and technological application in the field. Legal. It shows that atomic arrangement has a significant effect on the formation of dislocations and thereby on the properties of solids. This item can be returned in its original condition for a full refund or replacement within 30 days of receipt.