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Extensional and Shear Rheology of Dilute Particle Suspensions in Viscoelastic Liquids

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Release : 2022
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Book Synopsis Extensional and Shear Rheology of Dilute Particle Suspensions in Viscoelastic Liquids by : Arjun Sharma

Download or read book Extensional and Shear Rheology of Dilute Particle Suspensions in Viscoelastic Liquids written by Arjun Sharma. This book was released on 2022. Available in PDF, EPUB and Kindle. Book excerpt: Particle suspensions in viscoelastic or polymeric liquids undergo uniaxial extensional and/ or simple shear flows in several industrial and manufacturing processes such as hydraulic fracturing, extrusion molding, or fiber spinning. The resulting interaction of particles and polymers can lead to drastic changes in the suspension rheology, ultimately impacting the process efficiency. This thesis characterizes the fundamental mechanisms of particle-polymer interactions within the two flows mentioned above. It develops methods to study the flows of particle-filled viscoelastic fluids and evaluate the rheology of a dilute suspension in any weakly non-Newtonian fluid. In a uniaxial extensional flow, spherical particles and polymers interact to either increase or decrease the suspension stress due to the regions of highly stretched or collapsed polymers (relative to the polymers undisturbed by the velocity perturbations due to the particle), respectively, in the fluid around the particles. If the polymer relaxation time is large, as is often the case in applications, the polymer collapse happens more rapidly and persists for long times. The magnitude of reduction in suspension stress increases with the polymer relaxation time, the imposed extensional rate, and particle concentration. Therefore, adding only a small amount of particles to a viscoelastic fluid can reduce its extensional viscosity and improve the efficiency of the industrial process. Fibers are added to impart mechanical, electrical, or thermal anisotropy to the final cured product. In a Newtonian fluid, the fibers rotate in degenerate periodic orbits dependent on their initial orientations, making it challenging to obtain aligned particles necessary for obtaining an anisotropic material. Viscoelasticity can, however, break this degeneracy and allow better particle alignment. A theory is developed for slender prolate spheroids rotating in a simple shear flow of low concentration polymeric solution. It is the first theoretical prediction of a wide range of particle orientation behaviors observed in the experiments. Large aspect ratio particles rotating in fluids with a small polymer relaxation time migrate towards a specific small periodic orbit close to the vorticity axis. A stable orientation close to the imposed simple shear flow's flow direction is obtained for a large polymer relaxation time. The theoretical findings lead to a phase diagram of different particle orientation behavior depending on the fluid properties and particle aspect ratio. This can be instrumental in guiding the right choice of parameters in future experiments and in applications to obtain the desired anisotropy. One of the methods used to investigate the extensional rheology at low polymer concentrations is generalized to encompass the characterization of the rheology of any weakly non-Newtonian fluid. It is foreseen that this computationally inexpensive semi-analytical method can be used to guide the design of new fluids for achieving desired rheological properties. The second method is a sophisticated numerical tool that solves the flow of fully viscoelastic fluids around a prolate spheroidal particle, thus covering a range of shapes from a sphere to high aspect ratio fiber in an unbounded fluid. It helps test slender body theories, study a range of linear flows of viscoelastic fluids around an isolated particle and determine various rheologies of dilute particle suspensions.

Understanding Viscoelasticity

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Author :
Release : 2017-07-27
Genre : Science
Kind : eBook
Book Rating : 002/5 ( reviews)

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Book Synopsis Understanding Viscoelasticity by : Nhan Phan-Thien

Download or read book Understanding Viscoelasticity written by Nhan Phan-Thien. This book was released on 2017-07-27. Available in PDF, EPUB and Kindle. Book excerpt: This book presents an introduction to viscoelasticity, in particular, to the theories of dilute polymer solutions and dilute suspensions of rigid particles in viscous and incompressible fluids. These theories are important, not just because they apply to practical problems of industrial interest, but because they form a solid theoretical base upon which mathematical techniques can be built, from which more complex theories can be constructed, to better mimic material behaviour. The emphasis of this book is not on the voluminous current topical research, but on the necessary tools to understand viscoelasticity. This is a compact book for a first year graduate course in viscoelasticity and modelling of viscoelastic multiphase fluids. The Dissipative Particle Dynamics (DPD) is introduced as a particle-based method, relevant in modelling of complex-structured fluids. All the basic ideas in DPD are reviewed. The third edition has been updated and expanded with new results in the meso-scale modelling, links between the fluid modelling to its physical parameters and new matlab programs illustrating the modelling. Particle-based modelling techniques for complex-structure fluids are added together with some sample programs. A solution manual to the problems is included.

Shear and Extensional Rheology of Particle-laden Viscoelastic Suspensions

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Release : 2021
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Book Synopsis Shear and Extensional Rheology of Particle-laden Viscoelastic Suspensions by : Anika Jain

Download or read book Shear and Extensional Rheology of Particle-laden Viscoelastic Suspensions written by Anika Jain. This book was released on 2021. Available in PDF, EPUB and Kindle. Book excerpt:

Rheology of Non-spherical Particle Suspensions

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Release : 2015-10-06
Genre : Science
Kind : eBook
Book Rating : 120/5 ( reviews)

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Book Synopsis Rheology of Non-spherical Particle Suspensions by : Francisco Chinesta

Download or read book Rheology of Non-spherical Particle Suspensions written by Francisco Chinesta. This book was released on 2015-10-06. Available in PDF, EPUB and Kindle. Book excerpt: 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

Dilute Non-Newtonian Particle Suspension Rheology and Microstructure

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Release : 2010
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Book Synopsis Dilute Non-Newtonian Particle Suspension Rheology and Microstructure by : Eric F. Lee

Download or read book Dilute Non-Newtonian Particle Suspension Rheology and Microstructure written by Eric F. Lee. This book was released on 2010. Available in PDF, EPUB and Kindle. Book excerpt: The study of polymeric particle suspensions has been the subject of a number of past experimental and theoretical studies. However, fundamental questions about suspension rheology and shear flow-induced microstructural effects remain. First, a quasi-analytical study is presented that gives the first theory-based predictions on the effects of finite polymer relaxation time on rheological properties. In a constant viscosity, low polymer concentration fluid, the addition of particles is found to have a strong shear thickening effect on the first normal stress difference coefficient and the shear viscosity. In contrast, the second normal stress difference coefficient is shear thickening at low shear but shear thinning at higher shear. Next, an analytical and computational study is presented that sheds light on the widely studied phenomenon of cross-streamline particle migration in Poiseuille flow. Particles are found to experience a cross-stream force toward the channel center when they are freely suspended in the fluid, while they experience a crossstream force toward the wall when they are fixed in place.

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