The Effects of Particle Anisotropy on the Rheology and Microstructure of Concentrated Colloidal Suspensions Through the Shear Thickening Transition

The Effects of Particle Anisotropy on the Rheology and Microstructure of Concentrated Colloidal Suspensions Through the Shear Thickening Transition
Title The Effects of Particle Anisotropy on the Rheology and Microstructure of Concentrated Colloidal Suspensions Through the Shear Thickening Transition PDF eBook
Author
Publisher
Pages
Release 2006
Genre Anisotropy
ISBN 9780542458071

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Though suspensions comprised of anisotropic particles are ubiquitous in industry, little has been done to elucidate the effects of particle anisotropy on concentrated suspension rheology, or the mechanism responsible for the reversible shear thickening observed in these systems. This dissertation explores the rheology and shear-induced microstructure of anisotropic particle suspensions through the shear thickening transition, and provides the first account of anisotropic particle alignment during shear thickening. For this investigation, Poly(ethylene glycol) (PEG)-based suspensions of acicular precipitated calcium carbonate (PCC) particles of varying particle aspect ratio (nominal L/D & sim; 2, 4, 7) are generated that demonstrate both continuous and discontinuous reversible shear thickening with increasing applied shear rate or stress. The critical volume fraction for the onset of discontinuous shear thickening decreases as the average particle aspect ratio is increased. However, the critical stress for shear thickening is found to be independent of particle anisotropy and volume fraction, and can be predicted based on the minor axis dimension of the particles in agreement with the critical stress scaling for hard-sphere suspensions. Small angle neutron scattering during shear flow (Rheo-SANS) demonstrates that long-axis particle alignment with the flow direction is maintained throughout the range of shear stresses investigated, including the shear thickening regimes for both continuous and discontinuous shear thickening PCC/PEG suspensions. Investigations of particle flow alignment following flow cessation provide evidence that the critical volume fraction for shear thickening may be associated with an isotropic-nematic transition within the anisotropic particle suspensions. Rheo-SANS investigations of concentrated kaolin clay suspensions demonstrate that disk-shaped particles exhibit particle alignment with the face surfaces orthogonal to the gradient direction during both continuous and discontinuous shear thickening. The critical stress at the onset of shear thickening for discontinuous shear thickening clay suspensions is observed to scale with the particle thickness dimension. The rheology and Rheo-SANS observations for both the acicular PCC and disk-like kaolin clay suspensions invalidate earlier hypothesis suggesting that shear thickening behavior in anisotropic particle dispersions results from increased particle rotations out of flow alignment potentially leading to particle jamming. Rather, the observations suggest that shear thickening in anisotropic particle suspensions is a consequence of short range hydrodynamic lubrication forces resulting in the formation of hydroclusters at higher shear rates, analogous to the behavior established for spherical particle suspensions. Lastly, anisotropic particle suspensions are used to successfully develop of shear thickening fluid (STF)/ballistic fabric composites. Shape anisotropy imparts the advantage of lower solids loading required to achieve energy dissipative improvements compared to spherical particle STFs. The observed improvements in ballistic and stab resistance response of these composites over that of ballistic fabrics alone suggests that they could potentially be used in the development of personal body armors with improved, multi-threat protective capabilities.

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.

Dissertation Abstracts International

Dissertation Abstracts International
Title Dissertation Abstracts International PDF eBook
Author
Publisher
Pages 884
Release 2006
Genre Dissertations, Academic
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 437
Release 2021-04-15
Genre Science
ISBN 1108423035

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Essential text on the practical application and theory of colloidal suspension rheology, written by an international coalition of experts.

The Effects of Concentration, Interaction, Size Distribution and Shape Anisotropy on Rheology of Colloidal Mixtures

The Effects of Concentration, Interaction, Size Distribution and Shape Anisotropy on Rheology of Colloidal Mixtures
Title The Effects of Concentration, Interaction, Size Distribution and Shape Anisotropy on Rheology of Colloidal Mixtures PDF eBook
Author
Publisher
Pages
Release 2013
Genre
ISBN

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Microstructure and Rheology of Concentrated Colloidal Suspensions with Varying Nanotribological Interactions

Microstructure and Rheology of Concentrated Colloidal Suspensions with Varying Nanotribological Interactions
Title Microstructure and Rheology of Concentrated Colloidal Suspensions with Varying Nanotribological Interactions PDF eBook
Author Yu-Fan Lee
Publisher
Pages 0
Release 2022
Genre
ISBN

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This thesis is divided into two research aims: The first aim, presented in Chapters 3 and 4, is to test the theoretical framework of friction contact models with rheological and nanotribological measurements on model suspensions with controlled surface properties. In Chapter 3, we first present comprehensive experimental tests of a friction contact model based on correlating simulation results against rheological measurements for both model and industrial colloidal dispersions complemented by independent estimates of the particle-scale friction coefficients from literature surveys. The comparisons emphasize the sensitivity of the first normal stress difference can distinguish between states of shear thickening dominated by hydrodynamic friction or contact friction. Based on the findings in Chapter 3, a systematic exploration of nanotribological measurements using lateral force microscopy (LFM) is presented in Chapter 4. Our systematic studies qualitatively agree with the Stribeck relationship regardless of the solvent environment. It is also confirmed that the friction coefficient obtained from the bulk rheology lies in the high Sommerfeld number regime, suggesting that directly applying the friction coefficient obtained from the nanotribological measurements for predicting the rheology using the friction contact model is not quantitative.

Product Design and Engineering

Product Design and Engineering
Title Product Design and Engineering PDF eBook
Author Ulrich Bröckel
Publisher John Wiley & Sons
Pages 367
Release 2013-08-02
Genre Technology & Engineering
ISBN 3527654763

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Covering the whole value chain - from product requirements and properties via process technologies and equipment to real-world applications - this reference represents a comprehensive overview of the topic. The editors and majority of the authors are members of the European Federation of Chemical Engineering, with backgrounds from academia as well as industry. Therefore, this multifaceted area is highlighted from different angles: essential physico-chemical background, latest measurement and prediction techniques, and numerous applications from cosmetic up to food industry. Recommended reading for process, pharma and chemical engineers, chemists in industry, and those working in the pharmaceutical, food, cosmetics, dyes and pigments industries.