Rheology of Non-spherical Particle Suspensions
Editat de Francisco Chinesta, Gilles Ausiasen Limba Engleză Hardback – 17 sep 2015
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
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Specificații
ISBN-13: 9781785480362
ISBN-10: 1785480367
Pagini: 396
Ilustrații: black & white illustrations
Dimensiuni: 152 x 229 x 22 mm
Greutate: 0.7 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 1785480367
Pagini: 396
Ilustrații: black & white illustrations
Dimensiuni: 152 x 229 x 22 mm
Greutate: 0.7 kg
Editura: ELSEVIER SCIENCE
Public țintă
Students of material science, chemical engineering, chemistry, biology, medicine; Scientists in polymer, plastics, pharmaceutical, construction, coatings industries and medicineCuprins
Preface
1. Introduction to suspension rheology
2. Rheological characterization of fiber suspensions and nanocomposites
3. Rheology of carbon nanoparticle suspensions and nanocomposites
4. Rheological modeling of non-dilute rod suspensions
5. Rheology of highly concentrated fiber suspensions
6. Towards a kinetic theory description of electrical conduction in perfectly dispersed CNT nanocomposites
7. Stick-slip instabilities in magnetorheological fluids
8. Numerical simulations of viscoelastic suspension fluid dynamics
9. Brownian dynamics simulation for spheroid particle suspensions in polymer solution
10. Multiscale mechanics and thermodynamics of suspensions
1. Introduction to suspension rheology
2. Rheological characterization of fiber suspensions and nanocomposites
3. Rheology of carbon nanoparticle suspensions and nanocomposites
4. Rheological modeling of non-dilute rod suspensions
5. Rheology of highly concentrated fiber suspensions
6. Towards a kinetic theory description of electrical conduction in perfectly dispersed CNT nanocomposites
7. Stick-slip instabilities in magnetorheological fluids
8. Numerical simulations of viscoelastic suspension fluid dynamics
9. Brownian dynamics simulation for spheroid particle suspensions in polymer solution
10. Multiscale mechanics and thermodynamics of suspensions