Void Collapse in Shocked ‐HMX Single Crystals: Simulations and Experiments
Author:
Affiliation:
1. School of Mechanical Engineering Purdue University 585 Purdue Mall IN 47907 West Lafayette United States
2. School of Aeronautics and Astronautics Purdue University 585 Purdue Mall IN 47907 West Lafayette United States
Funder
U.S. Department of Defense
Office of Naval Research
Publisher
Wiley
Subject
General Chemical Engineering,General Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/prep.201900251
Reference35 articles.
1. Ultrafast Chemistry under Nonequilibrium Conditions and the Shock to Deflagration Transition at the Nanoscale
2. Collapse of elongated voids in porous energetic materials: Effects of void orientation and aspect ratio on initiation
3. High-resolution simulations of cylindrical void collapse in energetic materials: Effect of primary and secondary collapse on initiation thresholds
4. Void collapse generated meso-scale energy localization in shocked energetic materials: Non-dimensional parameters, regimes, and criticality of hotspots
5. Direct numerical simulation of shear localization and decomposition reactions in shock-loaded HMX crystal
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1. Shock-induced nanoscale pore collapse and hotspot in cyclotetramethylene tetranitramine (HMX);International Journal of Mechanical Sciences;2024-11
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3. Observation of Impact Induced Failure in Slotted HMX Crystals Using X-Ray Phase Contrast Imaging;Journal of Dynamic Behavior of Materials;2023-09-20
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