The Rheology of Bimodal Suspensions of Hydrodynamically Interacting Spherical Particles

The Rheology of Bimodal Suspensions of Hydrodynamically Interacting Spherical Particles
Title The Rheology of Bimodal Suspensions of Hydrodynamically Interacting Spherical Particles PDF eBook
Author Chingyi Chang
Publisher
Pages 558
Release 1993
Genre
ISBN

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Rheology of Non-spherical Particle Suspensions

Rheology of Non-spherical Particle Suspensions
Title Rheology of Non-spherical Particle Suspensions PDF eBook
Author Francisco Chinesta
Publisher Elsevier
Pages 398
Release 2015-10-06
Genre Science
ISBN 0081008120

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This book provides a review of the current understanding of the behavior of non-spherical particle suspensions providing experimental results, rheological models and numerical modeling. In recent years, new models have been developed for suspension rheology and as a result applications for nanocomposites have increased. The authors tackle issues within experimental, model and numerical simulations of the behavior of particle suspensions. Applications of non-spherical particle suspension rheology are widespread and can be found in organic matrix composites, nanocomposites, biocomposites, fiber-filled fresh concrete flow, blood and biologic fluids. Understand how to model and predict the final microstructure and properties of particle suspensions Explores nano, micro, meso and macro scales Rheology, thermomechanical and electromagnetic physics are discussed

Colloidal Suspension Rheology

Colloidal Suspension Rheology
Title Colloidal Suspension Rheology PDF eBook
Author Jan Mewis
Publisher Cambridge University Press
Pages 417
Release 2012
Genre Science
ISBN 0521515998

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Presented in an accessible and introductory manner, this is the first book devoted to the comprehensive study of colloidal suspensions.

Spherically Confined Colloidal Suspensions of Hydrodynamically Interacting Particles

Spherically Confined Colloidal Suspensions of Hydrodynamically Interacting Particles
Title Spherically Confined Colloidal Suspensions of Hydrodynamically Interacting Particles PDF eBook
Author Christian Alberto Aponte Rivera
Publisher
Pages 488
Release 2017
Genre
ISBN

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The diffusion in and rheology of hydrodynamically interacting colloids confined by a spherical cavity via dynamic simulation is studied as a model for intracellular and other confined biophysical transport. The modeling of transport and rheology in such confined inhomogeneous soft materials requires an accurate description of the microscopic forces driving particle motion, such as entropic and hydrodynamic forces, and of particle interactions with nearby boundaries. Previous models of such micro-confined transport behavior had been limited primarily to a single particle inside a spherical cavity. Although attempts had been made prior to this work to extend such models to more than one confined particle, none had yet successfully accounted for the effects of hydrodynamics, owing to the difficulties of modeling many-body long-ranged interactions. To accurately model spherically confined suspensions, new far-field mobility functions are derived and, together with the appropriate near-field resistance functions, implemented in a Stokesian-dynamics like approach. The method fully accounts for all many-body far-field interactions and near-field interactions both between the particles themselves and between particles and the enclosing cavity. Utilizing the newly developed method, we study short- and long- time self-diffusion at equilibrium, with a focus on the dependence of the former on particle positions relative to the cavity, and of both on volume fraction and size ratio. It is found that the cavity exerts qualitative changes in transport behavior, such as a position dependent and anisotropic short-time self-diffusivity and anisotropic long-time transport behavior. Such qualitative changes suggest that careful interpretation of experimental measurements in 3D confined suspensions requires accounting for such confinement induced behaviors. To elucidate the effects of confinement on inter-particle hydrodynamic interactions, the method is utilized to determine the concentrated mobility of particles in the spherically confined domain. Confinement is found to induce qualitative changes in the functional dependence of particle entrainment with inter-particle separation. For widely separated particles, the functional dependence on inter-particle separation can be predicted via a Green's function. How this behavior can be utilized to develop a more accurate framework for two-point microrheology measurements near confining boundaries is discussed.

Journal of Rheology

Journal of Rheology
Title Journal of Rheology PDF eBook
Author
Publisher
Pages 624
Release 2007
Genre Rheology
ISBN

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Applied Mechanics Reviews

Applied Mechanics Reviews
Title Applied Mechanics Reviews PDF eBook
Author
Publisher
Pages 348
Release 1992
Genre Mechanics, Applied
ISBN

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Theory and Applications of Colloidal Suspension Rheology

Theory and Applications of Colloidal Suspension Rheology
Title Theory and Applications of Colloidal Suspension Rheology PDF eBook
Author Norman J. Wagner
Publisher Cambridge University Press
Pages 438
Release 2021-04-15
Genre Technology & Engineering
ISBN 1108503624

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An essential text on practical application, theory and simulation, written by an international coalition of experts in the field and edited by the authors of Colloidal Suspension Rheology. This up-to-date work builds upon the prior work as a valuable guide to formulation and processing, as well as fundamental rheology of colloidal suspensions. Thematically, theory and simulation are connected to industrial application by consideration of colloidal interactions, particle properties, and suspension microstructure. Important classes of model suspensions including gels, glasses and soft particles are covered so as to develop a deeper understanding of industrial systems ranging from carbon black slurries, paints and coatings, asphalt, cement, and mine tailings, to natural suspensions such as biocolloids, protein solutions, and blood. Systematically presenting the established facts in this multidisciplinary field, this book is the perfect aid for academic researchers, graduate students, and industrial practitioners alike.