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Residual Stress, Thermomechanics & Infrared Imaging and Inverse Problems, Volume 6


Residual Stress, Thermomechanics & Infrared Imaging and Inverse Problems, Volume 6

Proceedings of the 2019 Annual Conference on Experimental and Applied Mechanics
Conference Proceedings of the Society for Experimental Mechanics Series

von: Antonio Baldi, Sharlotte L. B. Kramer, Fabrice Pierron, John Considine, Sven Bossuyt, Johan Hoefnagels

149,79 €

Verlag: Springer
Format: PDF
Veröffentl.: 22.01.2020
ISBN/EAN: 9783030300982
Sprache: englisch

Dieses eBook enthält ein Wasserzeichen.

Beschreibungen

<p><i>Residual Stress, Thermomechanics & Infrared Imaging and Inverse Problems</i><i>, Volume 6 of the </i><i>Proceedings of the 2019 SEM Annual Conference & Exposition on Experimental and Applied Mechanics</i>, the sixth volume of six from the Conference, brings together contributions to this important area of research and engineering.&nbsp; The collection presents early findings and case studies on a wide range of areas, including:</p>

<p>Test Design and Inverse Method Algorithms</p>

<p>Inverse Problems: Virtual Fields Method</p>

<p>Residual Stresses: Measurement, Uncertainty & Validation</p>

<p>Residual Stresses: Eigenvalues, Modeling, & Crack Growth</p>

<p>Material Characterizations Using Thermography</p>

Fatigue, Damage & Fracture Evaluation Using Infrared Thermography<p></p>

<p>&nbsp;</p>
<div>1. Regularization Uncertainty in Slitting Residual Stress Measurement.-&nbsp;2. Walkthrough and History of the Virtual Fields Method.-&nbsp;3. Low-Cost Thermoelastic Stress Analysis.-&nbsp;4. Keynote: Residual Stresses in Biological Materials.-&nbsp;5. The Effect of Residual Stress on Aluminum Strength using Thermoelatic Stress Analysis.-&nbsp;6. Calibration of Anisotropic Plasticity Models with an Optimized Heterogeneous Test and the Virtual Fields Method.-&nbsp;7. One-Dimensional Heat Source Reconstruction Applied to Phase Transforming Superelastic Ni-Ti Wire.-&nbsp;8. Coupled NIRT/3D-DIC for a FEMU Identification of the Thermo-mechanical Behavior of Zr-4 Claddings under Simulated Reactivity Initiated Accident.-&nbsp;9. Quench-induced Residual Stress in Complex Geometry: Measurement and Modeling by Eigenstrain.-&nbsp;10. Residual Stresses at Critical Locations in Additively-Manufactured Components.-&nbsp;11. Identification of Constitutive Parameters Governing the Hyperelastic Response of Rubber by Using Full-field Measurement and the Virtual Fields Method.-&nbsp;12. Intermethod Comparison and Evaluation of Near Surface Residual Stress in Aluminum Parts Subject to Various Milling Parameters.-&nbsp;13. Inversion of Residual Stresses in Silicon Wafer from Surface Deflection Measurements.-&nbsp;14. Evaluating the Coefficient of Thermal Expansion of Electronic Board Using the Virtual Fields Method.-&nbsp;15. Identification of Constitutive Parameters from Full Thermal and Kinematic Fields: Application to Hyperelasticity.-&nbsp;16. Calorific Analysis of a Granular System made in Shape Memory Alloy.-&nbsp;17. Dynamic VFM to Identify Viscoplastic Parameters. Analysis of Impact Tests on Titanium Alloy.-&nbsp;18. Keynote: Test Design for Identification from Full-field Measurements: A Concise Review.-&nbsp;19. Stress Determination for Granular Materials Using TSA: An Inverse Approach.-&nbsp;20. Evaluation of Fatigue Crack Growth Behavior and Effect of Repair Work Based on Thermoelastic Stress Analysis for Steel Bridge Members.-&nbsp;21. Analysis of Deformations in Crush Tests of Lithium Ion Battery Cells.-&nbsp;22. In-situ thermal monitoring of printed components during rapid prototyping by Fused Deposition Modeling.-&nbsp;23. Development of an Inverse Identification Method for Identifying Hyperelastic Constitutive Parameters by Metaheuristic Optimization Algorithm.-&nbsp;24. MIMO Input Derivations, Optimizing Input Force Against Output Accuracy.-&nbsp;25. Evaluation of Sensitivity-Based Virtual Fields for Non-Linear Parameter Identification Including DIC Filtering Effects.-&nbsp;26. Identification of Inhomogeneous Plastic Constitutive Models of Friction Stir Welded Aluminum Alloy Sheets Using Virtual Fields Method.-&nbsp;27. Accuracy Improvement of Thermoelastic Stress and Dissipation Energy Measurement by Motion Compensation with Optical-Infraredynchronous Measurement.</div>
<p>Antonio Baldi – University of Cagliari, Sardinia, Italy; Xavier Balandraud – Sigma Clermont Engineering School, France; Sharlotte L.B. Kramer – Sandia National Laboratories, Albuquerque, NM, USA; Fabrice Pierron – University of Southampton, Southampton, UK; John Considine - United States Forrest Service, Madison, WI, USA; Sven Bossuyt – Aalto University, Aalto, Finland; Johan Hoefnagels – Eindhoven University of Technology, Eindhoven, Netherlands.</p>
<p><i>Residual Stress, Thermomechanics & Infrared Imaging and Inverse Problems</i><i>, Volume 6 of the </i><i>Proceedings of the 2019 SEM Annual Conference & Exposition on Experimental and Applied Mechanics</i>, the sixth volume of six from the Conference, brings together contributions to this important area of research and engineering.&nbsp; The collection presents early findings and case studies on a wide range of areas, including:</p>

<p>&nbsp;</p>

<p>Test Design and Inverse Method Algorithms</p>

<p>Inverse Problems: Virtual Fields Method</p>

<p>Residual Stresses: Measurement, Uncertainty & Validation</p>

<p>Residual Stresses: Eigenvalues, Modeling, & Crack Growth</p>

<p>Material Characterizations Using Thermography</p>

Fatigue, Damage & Fracture Evaluation Using Infrared Thermography<p></p>

<p>&nbsp;</p>

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