Libros sobre el tema "VISCOELASTIC POLYMER"

Siga este enlace para ver otros tipos de publicaciones sobre el tema: VISCOELASTIC POLYMER.

Crea una cita precisa en los estilos APA, MLA, Chicago, Harvard y otros

Elija tipo de fuente:

Consulte los 23 mejores mejores libros para su investigación sobre el tema "VISCOELASTIC POLYMER".

Junto a cada fuente en la lista de referencias hay un botón "Agregar a la bibliografía". Pulsa este botón, y generaremos automáticamente la referencia bibliográfica para la obra elegida en el estilo de cita que necesites: APA, MLA, Harvard, Vancouver, Chicago, etc.

También puede descargar el texto completo de la publicación académica en formato pdf y leer en línea su resumen siempre que esté disponible en los metadatos.

Explore libros sobre una amplia variedad de disciplinas y organice su bibliografía correctamente.

1

Sadeghy-Dalivand, Kayvan. Viscoelastic behaviour of associative polymer solutions. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1996.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
2

Nijenhuis, K. te. Thermoreversible networks: Viscoelastic properties and structure of gels. Berlin: Springer, 1997.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
3

Nijenhuis, K. te. Thermoreversible networks: Viscoelastic properties and structure of gels. Berlin: Springer, 1996.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
4

Leonov, A. I. y A. N. Prokunin. Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids. Dordrecht: Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-1258-1.

Texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
5

Leonov, A. I. Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids. Dordrecht: Springer Netherlands, 1994.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
6

Leonov, A. I. Nonlinear phenomena in flows of viscoelastic polymer fluids. London: Chapman & Hall, 1994.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
7

Djunisbekov, T. M. Stress relaxation in viscoelastic materials. Enfield, NH: Science Publishers, 2003.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
8

Tervoort, Theodorus Anthonius. Constitutive modelling of polymer glasses: Finite, nonlinear viscoelastic behaviour of polycarbonate. Eindhoven: Eindhoven University of Technology, 1996.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
9

C, Malarik Diane, Robaidek Jerrold O y United States. National Aeronautics and Space Administration., eds. Viscoelastic properties of addition-cured polyimides used in high temperature polymer matrix composites. [Washington, DC]: National Aeronautics and Space Administration, 1991.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
10

Viscoelastic behavior of rubbery materials. Oxford: Oxford University Press, 2011.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
11

Drozdov, Aleksey D. Mechanics of viscoelastic solids. Chichester: John Wiley Sons, 1998.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
12

Lin, Ruocheng. Viscoelastic and elastic-viscoelastic-elastoplastic constitutive characterizations of polymers at finite strains: Theoretical and numerical aspects. Hamburg: Univ.-Prof. Ing. U. Schomburg, 2002.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
13

Viscoelastic structures: Mechanics of growth and aging. San Diego, Calif: Academic Press, 1998.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
14

Tschoegl, Nicholas W. The Phenomenological Theory of Linear Viscoelastic Behavior: An Introduction. Berlin, Heidelberg: Springer Berlin Heidelberg, 1989.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
15

Dijksman, J. F. IUTAM Symposium on Numerical Simulation of Non-Isothermal Flow of Viscoelastic Liquids: Proceedings of an IUTAM Symposium held in Kerkrade, The Netherlands, 1-3 November 1993. Dordrecht: Springer Netherlands, 1995.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
16

Leonov, A. I. y A. N. Prokunin. Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids. Springer Netherlands, 2012.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
17

Leonov, A. I. y A. N. Prokunin. Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids. Springer, 1994.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
18

Leonov, A. I. Nonlinear viscoelastic effects in flows of polymer melts and concentrated polymer solutions. Elsevier Science Publishers, 1993.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
19

Junisbekov, T. M., V. N. Kestelman y N. I. Malinin. Stress Relaxation in Viscoelastic Materials. Science Publishers, 2002.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
20

A nonlinear viscoelastic approach to durability predictions for polymer based composite structures. [Washington, D.C: National Aeronautics and Space Administration, 1990.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
21

Drozdov, Aleksey D. Mechanics of Viscoelastic Solids. Wiley & Sons, Incorporated, John, 2000.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
22

Drozdov, Aleksey D. Viscoelastic Structures: Mechanics of Growth and Aging. Elsevier Science & Technology Books, 1998.

Buscar texto completo
Los estilos APA, Harvard, Vancouver, ISO, etc.
23

Furst, Eric M. y Todd M. Squires. Microrheology. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199655205.001.0001.

Texto completo
Resumen
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical aspects of its implementation, and current applications to rheological studies in academic and industrial laboratories. Key methods and techniques are examined, including important considerations to be made with respect to the materials most amenable to microrheological characterization and pitfalls to avoid in measurements and analysis. The fundamental principles of all microrheology experiments are presented, including the nature of colloidal probes and their movement in fluids, soft solids, and viscoelastic materials. Microrheology is divided into two general areas, depending on whether the probe is driven into motion by thermal forces (passive), or by an external force (active). We present the theory and practice of passive microrheology, including an in-depth examination of the Generalized Stokes-Einstein Relation (GSER). We carefully treat the assumptions that must be made for these techniques to work, and what happens when the underlying assumptions are violated. Experimental methods covered in detail include particle tracking microrheology, tracer particle microrheology using dynamic light scattering and diffusing wave spectroscopy, and laser tracking microrheology. Second, we discuss the theory and practice of active microrheology, focusing specifically on the potential and limitations of extending microrheology to measurements of non-linear rheological properties, like yielding and shear-thinning. Practical aspects of magnetic and optical tweezer measurements are preseted. Finally, we highlight important applications of microrheology, including measurements of gelation, degradation, high-throughput rheology, protein solution viscosities, and polymer dynamics.
Los estilos APA, Harvard, Vancouver, ISO, etc.
Ofrecemos descuentos en todos los planes premium para autores cuyas obras están incluidas en selecciones literarias temáticas. ¡Contáctenos para obtener un código promocional único!

Pasar a la bibliografía