Challenges in mechanics of time dependent materials. Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics /: Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics. Volume 2 : (2016)
- Record Type:
- Book
- Title:
- Challenges in mechanics of time dependent materials. Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics /: Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics. Volume 2 : (2016)
- Main Title:
- Challenges in mechanics of time dependent materials. Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics
- Further Information:
- Note: Bonnie Antoun, editor.
- Editors:
- Antoun, Bonnie
- Other Names:
- Annual Conference on Experimental and Applied Mechanics
- Contents:
- Preface; Contents; Chapter 1: Thermal Degradation of Extension Springs; 1.1 Introduction; 1.2 Experimental Procedures; 1.3 Results; 1.4 Summary; Reference; Chapter 2: Effect of Applied Temperature and Strain Rate on Laser Welded Stainless Steel Structures; 2.1 Material; 2.2 Tensile Specimen Geometry; 2.3 Wedge Specimen Geometry; 2.4 Weld Penetration Depth Quantification; 2.5 Experimental Results: Tensile Characterization; 2.6 Experimental Results: Wedge Specimens Loaded in Bending/Shear and Tension; 2.7 Summary; References. Chapter 3: Process Modeling and Experiments for Forging and Welding3.1 Introduction; 3.2 Material Model; 3.3 Experiments and Simulations; 3.3.1 Forging; 3.3.2 Welding; 3.3.3 Measurements of Recrystallized Volume Fraction and Hardness; 3.4 Results; 3.5 Conclusions; References; Chapter 4: Time-Dependent Viscoplastic Model for Dislocation Generation During the Cooling Process in the Silicon Ingot; 4.1 Introduction; 4.2 3 Dimensional Time-Dependent Haasen-Sumino Viscoplastic Model; 4.3 Results and Discussion; 4.4 Conclusions. Chapter 7: Structure-Property Relationships in Bimodal Polyethylene from Indentation Measurements7.1 Introduction; 7.2 Experimental Details ; 7.3 Results and Discussions; 7.4 Conclusion; References; Chapter 8: Prediction Validation of Thermal Aging Performance of Military Composite Bridges; 8.1 Introduction; 8.2 Composite System; 8.3 Analysis Method; 8.4 Test and Simulation Procedures; 8.5 Test Specimens; 8.6 Simulation Models; 8.7 TestPreface; Contents; Chapter 1: Thermal Degradation of Extension Springs; 1.1 Introduction; 1.2 Experimental Procedures; 1.3 Results; 1.4 Summary; Reference; Chapter 2: Effect of Applied Temperature and Strain Rate on Laser Welded Stainless Steel Structures; 2.1 Material; 2.2 Tensile Specimen Geometry; 2.3 Wedge Specimen Geometry; 2.4 Weld Penetration Depth Quantification; 2.5 Experimental Results: Tensile Characterization; 2.6 Experimental Results: Wedge Specimens Loaded in Bending/Shear and Tension; 2.7 Summary; References. Chapter 3: Process Modeling and Experiments for Forging and Welding3.1 Introduction; 3.2 Material Model; 3.3 Experiments and Simulations; 3.3.1 Forging; 3.3.2 Welding; 3.3.3 Measurements of Recrystallized Volume Fraction and Hardness; 3.4 Results; 3.5 Conclusions; References; Chapter 4: Time-Dependent Viscoplastic Model for Dislocation Generation During the Cooling Process in the Silicon Ingot; 4.1 Introduction; 4.2 3 Dimensional Time-Dependent Haasen-Sumino Viscoplastic Model; 4.3 Results and Discussion; 4.4 Conclusions. Chapter 7: Structure-Property Relationships in Bimodal Polyethylene from Indentation Measurements7.1 Introduction; 7.2 Experimental Details ; 7.3 Results and Discussions; 7.4 Conclusion; References; Chapter 8: Prediction Validation of Thermal Aging Performance of Military Composite Bridges; 8.1 Introduction; 8.2 Composite System; 8.3 Analysis Method; 8.4 Test and Simulation Procedures; 8.5 Test Specimens; 8.6 Simulation Models; 8.7 Test and Simulation Results. 8.7.1 Control: Mechanical Properties Prior to Thermal Cycling or UV Exposure8.7.2 No-Load Thermal Cycling and Subsequent Mechanical Loading; No-Load Thermal Cycling (50 Cycles from -27.4 to 159.8 °F); Tension Subsequent to the No-Load Thermal Cycling; Compression Subsequent to the No-Load Thermal Cycling; Mechanical Fatigue Subsequent to the No-Load Thermal Cycling; 8.7.3 Impact and Post Impact Mechanical Properties After 50 No-Load Thermal Cycles; Impact After No-Load Thermal Cycling; Tension Subsequent to the No-Load Thermal Cycling and Impact. … (more)
- Issue Display:
- Volume 2
- Volume:
- 2
- Issue Sort Value:
- 0000-0002-0000-0000
- Publisher Details:
- Cham : Springer
- Publication Date:
- 2016
- Extent:
- 1 online resource
- Subjects:
- 620.5
Engineering
Mechanics, Applied -- Congresses
TECHNOLOGY & ENGINEERING -- Engineering (General)
TECHNOLOGY & ENGINEERING -- Reference
Mechanics, Applied
Engineering
Materials Engineering
Characterization and Evaluation of Materials
Technology & Engineering -- Material Science
Testing of materials
Surfaces (Physics)
Materials science
Electronic books
Conference papers and proceedings - Languages:
- English
- ISBNs:
- 9783319224435
3319224433 - Related ISBNs:
- 9783319224428
3319224425 - Notes:
- Note: ReferencesChapter 5: Interaction of Shock Wave with Granular Materials; 5.1 Introduction; 5.2 Experimental Aspects; 5.3 Results and Discussion; 5.4 Conclusion; References; Chapter 6: Characterisation of Viscoelastic Material Properties During Curing Processes; 6.1 Introduction; 6.2 Method; 6.2.1 Material; 6.2.2 Cure Kinetics; 6.2.3 Viscoelastic Characterisation; 6.3 Results and Analysis; 6.3.1 DSC; 6.3.2 DMTA; 6.4 Discussion and Concluding Remarks; References.
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