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  4. MD simulation of HMX rupture under tensile stress
 
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2018
Conference Paper
Title

MD simulation of HMX rupture under tensile stress

Abstract
In this contribution, preliminary results of tensile tests on beta-HMX performed in a molecular dynamics simulation are presented. From experimental structure data, an atomistic model is created and a stress versus strain curve is measured during the gradual deformation of a crystalline rod (in the nano-scale) along the crystallographic b-axis. In concordance with experimental findings, the linear elastic deformation of the crystallographic b axis of beta-HMX shows a slope in modulus of roughly 14.4 GPa, until a stress maximum of 0.3 GPa is reached at a strain of 2%. Further strain results in a stress plateau at 0.3 GPa, where molecular rearrangement occurs within a plane perpendicular to the b-axis, at the outer region of a rod-shaped specimen, which corresponds to plastic deformation. At a strain of 0.28, the peel-like rupture is completed.
Author(s)
Nardai, Michael M.
Fraunhofer-Institut für Chemische Technologie ICT  
Bohn, Manfred A.
Fraunhofer-Institut für Chemische Technologie ICT  
Mainwork
21th Seminar on New Trends in Research of Energetic Materials, NTREM 2018. Proceedings. Pt.3  
Conference
Seminar on New Trends in Research of Energetic Materials (NTREM) 2018  
Language
English
Fraunhofer-Institut für Chemische Technologie ICT  
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