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High-Pressure Shock Compression of Solids II : Dynamic Fracture and Fragmentation
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Spallation in Solids Under Shock-Wave Loading: Analysis of Dynamic Flow, Methodology of Measurements, and Constitutive Factors
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Chapter 2
Microstructural Aspects of Dynamic Failure
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Chapter 3
Dynamic Fracture in Metals at High Strain Rate
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Chapter 4
Laser-Induced Spallation and Dynamic Fracture at Ultra High Strain Rate
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Chapter 5
Explosive Fragmentation
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Chapter 6
Radiographic Studies of Impact Fragmentation
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Chapter 7
Pulsed Holography Diagnostics of Impact Fragmentation
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Chapter 8
Initiation and Propagation of Damage Caused by Impact on Brittle Materials
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Chapter 9
Spall and Fragmentation in High-Temperature Metals
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Chapter 10
Disorder, Percolation, and Wave Propagation Effects in Ductile Fracture
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Chapter 11
Maximum Entropy Principles in Fragmentation Data Analysis
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Chapter 12
Experimental and Numerical Studies of High-Velocity Impact Fragmentation
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Chapter 13
Simplified Models of Fracture and Fragmentation
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Chapter 14
A Unified Theory of Flow, Hot Spots, and Fragmentation with an Application to Explosive Sensitivity
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Chapter 15
Constitutive Modelling of Spall Fracture
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Chapter 16
A Thermodynamically Consistent Description of Dynamic Continuum Damage
Overall attention for this book and its chapters
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Mentioned by
syllabi
1
institution with syllabi
Citations
dimensions_citation
61
Dimensions
Readers on
mendeley
25
Mendeley
Book overview
1. Spallation in Solids Under Shock-Wave Loading: Analysis of Dynamic Flow, Methodology of Measurements, and Constitutive Factors
2. Microstructural Aspects of Dynamic Failure
3. Dynamic Fracture in Metals at High Strain Rate
4. Laser-Induced Spallation and Dynamic Fracture at Ultra High Strain Rate
5. Explosive Fragmentation
6. Radiographic Studies of Impact Fragmentation
7. Pulsed Holography Diagnostics of Impact Fragmentation
8. Initiation and Propagation of Damage Caused by Impact on Brittle Materials
9. Spall and Fragmentation in High-Temperature Metals
10. Disorder, Percolation, and Wave Propagation Effects in Ductile Fracture
11. Maximum Entropy Principles in Fragmentation Data Analysis
12. Experimental and Numerical Studies of High-Velocity Impact Fragmentation
13. Simplified Models of Fracture and Fragmentation
14. A Unified Theory of Flow, Hot Spots, and Fragmentation with an Application to Explosive Sensitivity
15. Constitutive Modelling of Spall Fracture
16. A Thermodynamically Consistent Description of Dynamic Continuum Damage
Summary
Syllabi
Dimensions citations
This data is correct as of December 2015 - for more up to date information, please visit
https://opensyllabus.org/
So far, Altmetric has seen this research output assigned in
1
syllabus from an institution on Open Syllabus Project.
Institution
Syllabi count
Course subject areas covered
University of New Mexico-Main Campus
1
Nursing, Art, Biology, Education, Law, Medicine, Public Health