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Original Articles

Microscopic Simulation of Rheology: Molecular Dynamics Computations and Percolation theory

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Pages 281-300 | Received 01 Jan 1988, Published online: 23 Sep 2006

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Read on this site (6)

Fellipe C. de Oliveira, Shaghayegh Khani, João M. Maia & Frederico W. Tavares. (2020) Modified clustering algorithm for molecular simulation. Molecular Simulation 46:18, pages 1453-1466.
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T. Edvinsson, P.J. Råsmark & C. Elvingson. (1999) Cluster Identification and Percolation Analysis Using a Recursive Algorithm. Molecular Simulation 23:3, pages 169-190.
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D.M. Heyes & A.C. Branka. (1993) Brownian Dynamics Simulations of Model Near-Hard-Sphere Suspensions. Physics and Chemistry of Liquids 26:3, pages 153-160.
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DavidM. Heyes. (1992) Percolation of three-dimensional square-well fluid mixtures. Molecular Physics 77:1, pages 29-44.
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D.M. Heyes & J.R. Melrose. (1990) Continuum Percolation of 2D and 3D Simple Fluids. Molecular Simulation 5:5, pages 329-343.
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D.M. Heyes & J.R. Melrose. (1989) Continuum percolation of 2D Lennard-Jones and square-well phases. Molecular Physics 68:2, pages 359-379.
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Articles from other publishers (14)

Muhammad Rizwanur Rahman, Li Shen, James P. Ewen, Daniele Dini & E. R. Smith. (2022) The Intrinsic Fragility of the Liquid–Vapor Interface: A Stress Network Perspective. Langmuir 38:15, pages 4669-4679.
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Katsumi Hagita. (2019) Two-dimensional scattering patterns of coarse-grained molecular dynamics model of filled polymer gels during uniaxial expansion. Polymer 166, pages 155-168.
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Katsumi Hagita, Yasuyuki Shudo & Mitsuhiro Shibayama. (2018) Two-dimensional scattering patterns and stress-strain relation of elongated clay nano composite gels: Molecular dynamics simulation analysis. Polymer 154, pages 62-79.
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M. D. Wetzel & G. A. Campbell. (2018) A Study of Concentrated Suspensions in Polyethylene Melts and the Impact on Viscosity and Polymer Processing Operations. International Polymer Processing 33:4, pages 574-587.
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Gregory A. Campbell, Michael E. Zak & Jayaprakash S. Radhakrishnan. (2018) Development of a predictive power law relationship for polymer composites based on newtonial carrier concentrated slurries. Polymer Composites 39:4, pages 1172-1191.
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Gregory A. Campbell, Michael E. Zak & Mark D. Wetzel. (2018) Newtonian, power law, and infinite shear flow characteristics of concentrated slurries using percolation theory concepts. Rheologica Acta 57:3, pages 197-216.
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Mark D. Wetzel & Gregory A. Campbell. (2017) Characterizing the flow of slurries using percolation theory-based functions. Polymer Engineering & Science 57:4, pages 403-416.
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Natasha Kamerlin & Christer Elvingson. (2016) Collapse Dynamics of Core–Shell Nanogels. Macromolecules 49:15, pages 5740-5749.
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Leslie V. Woodcock. (2013) Gibbs Density Surface of Fluid Argon: Revised Critical Parameters. International Journal of Thermophysics 35:9-10, pages 1770-1784.
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David M. Heyes & Leslie V. Woodcock. (2013) Critical and supercritical properties of Lennard–Jones fluids. Fluid Phase Equilibria 356, pages 301-308.
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Leslie V. Woodcock. (2013) Fluid phases of argon: A debate on the absence of van der Waals’ “critical point”. Natural Science 05:02, pages 194-206.
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B. Ahlström & J. Bergenholtz. (2011) Equilibration of fluid-phase coexistence in polydisperse particle systems with short- and moderate-range depletion attractions. Fluid Phase Equilibria 305:1, pages 9-18.
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M. W. Evans & D. M. Heyes. 1990. Microscopic Simulations of Complex Flows. Microscopic Simulations of Complex Flows 85 98 .
N Cooper, A Tedder & D M Heyes. (1989) Percolation cluster statistics of 2D Lennard-Jones phases. Journal of Physics: Condensed Matter 1:35, pages 6217-6230.
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