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Mechanical stress evaluation by neutrons and synchrotron radiation VIII : selected, peer reviewed papers from the 8th International Conference on Mechanical Stress Evaluation by Neutrons and Synchrotron Radiation (MECA SENS VIII 2015), September 28-October 02, 2015, Grenoble, France / edited by Thomas Holden [and three others].

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Format:
Book
Contributor:
Holden, Thomas, editor.
Series:
Materials science forum ; Volume 905.
Materials Science Forum ; Volume 905
Language:
English
Subjects (All):
Strains and stresses--Congresses.
Strains and stresses.
Structural analysis (Engineering)--Congresses.
Structural analysis (Engineering).
Materials science--Congresses.
Materials science.
Genre:
Conference papers and proceedings.
Physical Description:
1 online resource (206 pages).
Edition:
1st ed.
Place of Publication:
Zurich, Switzerland : Trans Tech Publications, Limited, 2017.
Summary:
8th MECA SENSSelected, peer reviewed papers from the 8th International Conference on Mechanical Stress Evaluation by Neutrons and Synchrotron Radiation (MECA SENS VIII 2015), September 28 - October 02, 2015, Grenoble, France.
Contents:
Intro
Mechanical Stress Evaluation by Neutrons and Synchrotron Radiation VIII
Preface, Committees, Sponsors
Table of Contents
Chapter 1: Mechanical Properties of Structural Materials
Characterization of Microscopic Stresses in a Polycrystalline Fe-Ga Alloy with Large Elastic Anisotropy
Elastoplastic Deformation and Damage Process in Duplex Steel Studied Using Synchrotron and Neutron Diffraction
Microstructure and Residual Stress in T40 Titanium after Tensile Test
Quantitative Evaluation of Texture and Dislocations during Annealing after Hot Deformation in Austenitic Steel Using Neutron Diffraction
Residual Stress Relief in the Aluminium Alloy 7075
Deformation Heterogeneity Study of a 6061-T6 Aluminum Alloy Processed by Equal Channel Angular Pressing
Unusual Plastic Deformation Behavior in Lath Martensitic Steel Containing High Dislocation Density
Strains in Thermally Growing Cr2O3 Films Measured In Situ Using Synchrotron X-Rays
Dislocation Density of Plastically Deformed Oxygen-Free Copper
Neutron Diffraction Study of Elastoplastic Behaviour of Al/SiCp Metal Matrix Composite
Lattice Strain Pole Figures Analysis in Titanium during Uniaxial Deformation
Chapter 2: Mechanical Properties of Welded Joints
A Comparison of the Constitutive Response of Austenitic and Ferritic Steels under Welding Processes
A Practical Method for Measuring Residual Stress Distribution by XRD after Needle or Hammer Peening: Application to a Simple Case
Evolution of Residual Stresses in Linear Deposition Wire-Based Cladding of Ti-6Al-4V
In Situ EDXRD Study of MAG-Welding Using LTT Weld Filler Materials under Structural Restraint
In Situ Experiment for Laser Beam Welding of Ti Alloys Using High-Energy X-Rays.
Chapter 3: Techniques and Instruments for Measurements and Researching Mechanical Properties of Materials
Designing and Validating Parallel Wire Suspension Bridge Wire Strands for Neutron Diffraction Stress Mapping
Experimental Comparison of In-Depth Residual Stresses Measured with Neutron and X-Ray Diffraction with a Numerical Stress Relaxation Correction Method
In Situ Stress Measurements during Welding Process
Minimizing and Characterizing Uncertainties in Neutron Strain Measurements with Special Attention to Grain Size Effects
New Developments of the Materials Science Diffractometer STRESS-SPEC
Scanning Three-Dimensional X-Ray Diffraction Microscopy with a High-Energy Microbeam at SPring-8
Neutron Through-Thickness Stress Measurements in Coatings with High Spatial Resolution
Residual Stress Depth Distributions for Atmospheric Plasma Sprayed MnCo1.9Fe0.1O4 Spinel Layers on Crofer Steel Substrate
The X-Ray Micro-Tomography Backed by Molecular Dynamics Simulations in the Analysis of Shock-Induced Damage in Ductile Materials
Neutron Diffraction Techniques in Granular Mechanics
Keyword Index
Author Index.
Notes:
Current copyright fee: GBP32.00 50\0.
Description based on online resource; title from PDF title page (EBC, viewed December 16, 2017).
Description based on publisher supplied metadata and other sources.
ISBN:
3-0357-0116-4
OCLC:
1012882208

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