In Situ Observation of Deformation with High Energy X-ray Diffraction Microscopy

In Situ Observation of Deformation with High Energy X-ray Diffraction Microscopy PDF Author: Shiu Fai Li
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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In Situ Observation of Deformation with High Energy X-ray Diffraction Microscopy

In Situ Observation of Deformation with High Energy X-ray Diffraction Microscopy PDF Author: Shiu Fai Li
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Materials Discovery and Design

Materials Discovery and Design PDF Author: Turab Lookman
Publisher: Springer
ISBN: 3319994654
Category : Science
Languages : en
Pages : 266

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Book Description
This book addresses the current status, challenges and future directions of data-driven materials discovery and design. It presents the analysis and learning from data as a key theme in many science and cyber related applications. The challenging open questions as well as future directions in the application of data science to materials problems are sketched. Computational and experimental facilities today generate vast amounts of data at an unprecedented rate. The book gives guidance to discover new knowledge that enables materials innovation to address grand challenges in energy, environment and security, the clearer link needed between the data from these facilities and the theory and underlying science. The role of inference and optimization methods in distilling the data and constraining predictions using insights and results from theory is key to achieving the desired goals of real time analysis and feedback. Thus, the importance of this book lies in emphasizing that the full value of knowledge driven discovery using data can only be realized by integrating statistical and information sciences with materials science, which is increasingly dependent on high throughput and large scale computational and experimental data gathering efforts. This is especially the case as we enter a new era of big data in materials science with the planning of future experimental facilities such as the Linac Coherent Light Source at Stanford (LCLS-II), the European X-ray Free Electron Laser (EXFEL) and MaRIE (Matter Radiation in Extremes), the signature concept facility from Los Alamos National Laboratory. These facilities are expected to generate hundreds of terabytes to several petabytes of in situ spatially and temporally resolved data per sample. The questions that then arise include how we can learn from the data to accelerate the processing and analysis of reconstructed microstructure, rapidly map spatially resolved properties from high throughput data, devise diagnostics for pattern detection, and guide experiments towards desired targeted properties. The authors are an interdisciplinary group of leading experts who bring the excitement of the nascent and rapidly emerging field of materials informatics to the reader.

The Measurement of Strain Fields by X-Ray Topographic Contour Mapping

The Measurement of Strain Fields by X-Ray Topographic Contour Mapping PDF Author: S. R. Stock
Publisher:
ISBN:
Category :
Languages : en
Pages : 37

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Book Description
X-ray diffraction topography offers unique advantages for imaging dislocations and accumulated plastic deformation in single crystals. X-ray diffraction is much more sensitive to strains and samples larger volumes of material than does electron microscopy. Also, topography can be used non-destructively to examine a single specimen many times during the course of an experiment. With the advent of synchrotron radiation sources and of rapid imaging systems for laboratory sources, the emphasis in applying x-ray topography is shifting from characterization studies to dynamic, in-situ observation of experiments. One such application is observation of plastic deformation during tensile or bending tests. An x-ray topographic method is described for measuring the magnitude of the components of the strain tensor as a function of position in single crystal specimens. Several variants of the technique are described for use with monochromatic or white x-radiation. Results are reported for some components of the deformation field surrounding a precipitate of beta-NbH. Possible applications of contour mapping are discussed.

X-ray Diffraction at Elevated Temperatures

X-ray Diffraction at Elevated Temperatures PDF Author: Deborah D. L. Chung
Publisher: Wiley-VCH
ISBN:
Category : X-rays
Languages : en
Pages : 288

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Book Description
A textbook for a graduate or undergraduate course in programs such as x-ray diffraction, materials characterization, and thermal analysis. Introduces the principles and instrumentation of x-ray diffraction at elevated temperatures, and its application to crystallography, materials science, chemical and electrical engineering, and other fields. Focusing on intense sources and position-sensitive detectors, describes in-situ phase identification, texture analysis, and grain-size measurement. Annotation copyright by Book News, Inc., Portland, OR

In-situ Studies with Photons, Neutrons and Electrons Scattering II

In-situ Studies with Photons, Neutrons and Electrons Scattering II PDF Author: Thomas Kannengiesser
Publisher: Springer
ISBN: 3319061453
Category : Technology & Engineering
Languages : en
Pages : 260

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Book Description
This book provides an insight into current research topics, focusing special attention exactly on welding issues. The presented research work demonstrates that application of synchrotron and neutron radiation in combination with other techniques enables the basic understanding of material-related processes to be extended appreciably. It also shows ways of how to improve new materials and their use in industry. Following on from the 1st workshop in 2009 at BAM Berlin, a 2nd workshop dealing with this subject matter was held in 28-30 November, 2012 in Osaka/Japan with international participation of scientists from sixteen countries. The book includes selected contributions from the various subject blocks, precisely covering issues of practical and immediately implementable benefit to industrial enterprises. Therefore, peer-reviewed papers dealing with the following topics are contained as well: - Phase transformation during welding, metallurgy and material development - Evolution and significance of residual stresses - Investigations into laser and electron beam welding

Fundamentals of Radiation Materials Science

Fundamentals of Radiation Materials Science PDF Author: GARY S. WAS
Publisher: Springer
ISBN: 1493934384
Category : Technology & Engineering
Languages : en
Pages : 1014

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Book Description
The revised second edition of this established text offers readers a significantly expanded introduction to the effects of radiation on metals and alloys. It describes the various processes that occur when energetic particles strike a solid, inducing changes to the physical and mechanical properties of the material. Specifically it covers particle interaction with the metals and alloys used in nuclear reactor cores and hence subject to intense radiation fields. It describes the basics of particle-atom interaction for a range of particle types, the amount and spatial extent of the resulting radiation damage, the physical effects of irradiation and the changes in mechanical behavior of irradiated metals and alloys. Updated throughout, some major enhancements for the new edition include improved treatment of low- and intermediate-energy elastic collisions and stopping power, expanded sections on molecular dynamics and kinetic Monte Carlo methodologies describing collision cascade evolution, new treatment of the multi-frequency model of diffusion, numerous examples of RIS in austenitic and ferritic-martensitic alloys, expanded treatment of in-cascade defect clustering, cluster evolution, and cluster mobility, new discussion of void behavior near grain boundaries, a new section on ion beam assisted deposition, and reorganization of hardening, creep and fracture of irradiated materials (Chaps 12-14) to provide a smoother and more integrated transition between the topics. The book also contains two new chapters. Chapter 15 focuses on the fundamentals of corrosion and stress corrosion cracking, covering forms of corrosion, corrosion thermodynamics, corrosion kinetics, polarization theory, passivity, crevice corrosion, and stress corrosion cracking. Chapter 16 extends this treatment and considers the effects of irradiation on corrosion and environmentally assisted corrosion, including the effects of irradiation on water chemistry and the mechanisms of irradiation-induced stress corrosion cracking. The book maintains the previous style, concepts are developed systematically and quantitatively, supported by worked examples, references for further reading and end-of-chapter problem sets. Aimed primarily at students of materials sciences and nuclear engineering, the book will also provide a valuable resource for academic and industrial research professionals. Reviews of the first edition: "...nomenclature, problems and separate bibliography at the end of each chapter allow to the reader to reach a straightforward understanding of the subject, part by part. ... this book is very pleasant to read, well documented and can be seen as a very good introduction to the effects of irradiation on matter, or as a good references compilation for experimented readers." - Pauly Nicolas, Physicalia Magazine, Vol. 30 (1), 2008 “The text provides enough fundamental material to explain the science and theory behind radiation effects in solids, but is also written at a high enough level to be useful for professional scientists. Its organization suits a graduate level materials or nuclear science course... the text was written by a noted expert and active researcher in the field of radiation effects in metals, the selection and organization of the material is excellent... may well become a necessary reference for graduate students and researchers in radiation materials science.” - L.M. Dougherty, 07/11/2008, JOM, the Member Journal of The Minerals, Metals and Materials Society.

Proceedings of the 13th World Conference on Titanium

Proceedings of the 13th World Conference on Titanium PDF Author: Vasisht Venkatesh
Publisher: John Wiley & Sons
ISBN: 1119296099
Category : Technology & Engineering
Languages : en
Pages : 2004

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Book Description
This book contains the Proceedings of the 13th World Conference on Titanium.

X-Ray Diffraction Topography

X-Ray Diffraction Topography PDF Author: B. K. Tanner
Publisher: Elsevier
ISBN: 1483187683
Category : Science
Languages : en
Pages : 189

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Book Description
X-Ray Diffraction Topography presents an elementary treatment of X-ray topography which is comprehensible to the non-specialist. It discusses the development of the principles and application of the subject matter. X-ray topography is the study of crystals which use x-ray diffraction. Some of the topics covered in the book are the basic dynamical x-ray diffraction theory, the Berg-Barrett method, Lang's method, double crystal methods, the contrast on x-ray topography, and the analysis of crystal defects and distortions. The crystals grown from solution are covered. The naturally occurring crystals are discussed. The text defines the meaning of melt, solid state and vapour growth. An analysis of the properties of inorganic crystals is presented. A chapter of the volume is devoted to the characteristics of metals. Another section of the book focuses on the production of ice crystals and the utilization of oxides as laser materials. The book will provide useful information to chemists, scientists, students and researchers.

X-Ray Diffraction Studies on the Deformation and Fracture of Solids

X-Ray Diffraction Studies on the Deformation and Fracture of Solids PDF Author: Kazuyoshi Tanaka
Publisher: Elsevier
ISBN: 1483290387
Category : Technology & Engineering
Languages : en
Pages : 338

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Book Description
This volume covers current research findings and engineering applications of X–ray methods by the Japanese X–ray group members. The first part of the volume deals with fundamental problems in the methods for X–ray stress measurement. Phase stresses in the constituent phases of ceramic composites and ceramic-fiber reinforced metal-matrix composites are separately measured by X–rays, while three-dimensional stresses and thermal stresses in composites measured by X–rays are compared with the theoretical and numerical analyses. This work will therfore provide significant information for designing high-performance composites. Other topics covered include synchrotron X–ray radiation and the analysis of X–ray data by the Guassian curve method. Part two is devoted to the application of X–ray diffraction methods for various engineering purposes, the residual stress and half-value breadth (the full width at half the maximum) of the diffraction profiles being the two main X–ray parameters utilized in those applications. Chapters are included on X–ray fractography, a powerful technique for failure analysis, which is applied to the brittle fracture of ceramics and to the fatigue fracture of steels under various service conditions.

The Direct Observation of Dislocations

The Direct Observation of Dislocations PDF Author: Severin Amelinckx
Publisher:
ISBN:
Category : Dislocations in crystals
Languages : en
Pages : 508

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Book Description