Thermodynamic, transport and viscoelastic properties of PBX-9501 binder: a molecular dynamics simulation study

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Publication Type Manuscript
School or College College of Engineering
Department Materials Science & Engineering
Program Center for the Simulation of Accidental Fires and Explosions (C-SAFE)
Creator Bedrov, Dmitro; Smith, Grant D.
Other Author Davande, Hemali
Title Thermodynamic, transport and viscoelastic properties of PBX-9501 binder: a molecular dynamics simulation study
Date 2008-04-04
Description Atomistic molecular dynamics simulations were performed on a low molecular weight nitroplasticized Estane® mixture representative of the binder used in PBX-9501. Pressurevolume-temperature (PVT) behavior over a wide range of pressure and temperatures above the order-disorder temperature (ODT) of Estane was determined and represented with the empirical Tait and Sun equations-of-state. The effect of temperature, pressure and plasticization on transport properties of the mixture was also examined. A combination of molecular dynamics simulations and theoretical reptation models was used to predict the shear stress relaxation modulus G(t) of PBX-9501 binder at 473 K and 1 atm pressure. Data obtained from simulations of the model PBX-9501 binder presented here can be utilized to predict the temperature and pressure dependence of the shear stress relaxation modulus for temperatures above the ODT.
Type Text
Publisher Taylor & Francis
Journal Title Journal of Energetic Materials
Volume 26
Issue 2
First Page 115
Last Page 138
DOI 10.1080/07370650701801937
citatation_issn 0737-0652
Subject PBX-9501 binder; Estane; Viscosity; Shear stress relaxation modulus
Subject LCSH Molecular dynamics -- Computer simulation; Explosives
Language eng
Bibliographic Citation Davande, H., Bedrov, D., & Smith, G. D. (2008). Thermodynamic, transport and viscoelastic properties of PBX-9501 binder: a molecular dynamics simulation study. Journal of Energetic Materials, 26(2), 115-38.
Rights Management (c)Taylor & Francis This is an electronic version of an article printed in Journal of Energetic Materials, 26(2), 115-38. Journal of Energetic Materials is available online at http://www.informaworld.com/smpp/ and the final version of this article is available at http://dx.doi.org/10.1080/07370650701801937.
Format Medium application/pdf
Format Extent 911,926 bytes
Identifier ir-main,6792
ARK ark:/87278/s6tb1r6k
Setname ir_uspace
ID 704351
Reference URL https://collections.lib.utah.edu/ark:/87278/s6tb1r6k
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