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Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids (Hardcover, 1994 ed.): A.I. Leonov, A.N. Prokunin Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids (Hardcover, 1994 ed.)
A.I. Leonov, A.N. Prokunin
R9,033 Discovery Miles 90 330 Ships in 18 - 22 working days

This monograph presents theoretical and experimental studies of flows of elastic liquids. Falling into this category are particularly the melts and concentrated solutions of such flexible-chain polymers as polyethylene, polyisobutylene and polypropylene, all of which are widely used in polymer processing. These polydisperse polymers vary greatly, from batch to batch, in their mechanical properties and 20% variation in a property is believed to be good enough. l 7 All recent books - devoted to the rheology of polymers do not answer the question of which constitutive equations should be used for solving the fluid mechanic problems of polymer processing in the usual case of an appreciable nonlinear region of deformation where nonlinear effects of shear and extensional elasticity are very important. Viscoelastic constitut ive equations cited commonly (see, e.g. Refs 5 and 6) do not describe simultaneously even the simplest cases of deformations, viz. simple shear and uniaxial extension. Moreover, some of them are internally inconsist ent and sometimes display highly unstable behaviour in simple flows without any fundamental reasons. Even more respected molecular ap free from these defects."

Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids (Paperback, Softcover reprint of the original 1st ed. 1994): A.I.... Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids (Paperback, Softcover reprint of the original 1st ed. 1994)
A.I. Leonov, A.N. Prokunin
R8,820 Discovery Miles 88 200 Ships in 18 - 22 working days

This monograph presents theoretical and experimental studies of flows of elastic liquids. Falling into this category are particularly the melts and concentrated solutions of such flexible-chain polymers as polyethylene, polyisobutylene and polypropylene, all of which are widely used in polymer processing. These polydisperse polymers vary greatly, from batch to batch, in their mechanical properties and 20% variation in a property is believed to be good enough. l 7 All recent books - devoted to the rheology of polymers do not answer the question of which constitutive equations should be used for solving the fluid mechanic problems of polymer processing in the usual case of an appreciable nonlinear region of deformation where nonlinear effects of shear and extensional elasticity are very important. Viscoelastic constitut ive equations cited commonly (see, e.g. Refs 5 and 6) do not describe simultaneously even the simplest cases of deformations, viz. simple shear and uniaxial extension. Moreover, some of them are internally inconsist ent and sometimes display highly unstable behaviour in simple flows without any fundamental reasons. Even more respected molecular ap free from these defects."

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