Material Behavior Under High Stress and Ultrahigh Loading Rates [E-Book] / edited by John Mescall, Volker Weiss.
The Army Materials and Mechanics Research Center in coopera tion with the Materials Science Group of the Department of Chemical Engineering and Materials Science of Syracuse University has been conducting the Annual Sagamore Army Materials Research Conference since 1954. The specific purpose of the...
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Full text |
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Personal Name(s): | Mescall, John, editor |
Weiss, Volker, editor | |
Imprint: |
Boston, MA :
Springer,
1983
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Physical Description: |
326 p. online resource. |
Note: |
englisch |
ISBN: |
9781461337874 |
DOI: |
10.1007/978-1-4613-3787-4 |
Series Title: |
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Sagamore Army Materials Research Conference Proceedings ;
29 |
Subject (LOC): |
- Section I: Dynamic Plasticity
- Dynamic Plastic Response of Metals Under Pressure-Shear Impact
- Strain-Rate History Effects and Dislocation Substructure at High Strain Rates
- Materials Response to Large Plastic Deformation
- Strain-Rate Effects in Metals at Large Shear Strains
- Microstructure and Mechanical Properties of Precipitation Hardened Aluminum Under High Rate Deformation
- Section II: Adiabatic Shear/Localized Deformation
- Adiabatic Shearing - General Nature and Material Aspects
- The Occurrence of Shear Bands in Metalworking
- The Behavior of Metals Under Ballistic Impact at Sub-Ordnance Velocities
- Section III: Dynamic Fracture Mechanics
- Dynamic Fracture Mechanics and its Applications to Material Behavior Under High Stress and Loading Rates
- Energy Release Rates and Path Independent Integrals in Dynamic Fracture
- High Rate Deformation in the Field of a Crack
- Dynamic Crack Curving and Crack Branching
- Crack Propagation and Arrest Under Dynamic Loading Conditions in an Elastic-Plastic Strip
- Optical Determination of the Intensity of Crack Tip Deformation in a Power-Law Hardening Material
- Application of Microstatistical Fracture Mechanics to Dynamic Fracture Problems
- Scaling of Shear Band Fracture Processes
- Application of Gurson Void Growth Model to Dynamic Fracture
- (VOL. II)
- Work In Progress.