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Equibaxial Extension of Two Polymer Melts: Polystyrene and Low Density Polyethylene

机译:两种聚合物熔体的等轴延伸:聚苯乙烯和低密度聚乙烯

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Stress relaxation after rapid extensional strain was measured to obtain the extensional relaxation modulus. The time dependence of the relaxation modulus was found to be the same in extension as in shear, given by the relaxation modulus of linear viscoelasticity. The strain dependence was markedly different than in shear. Separation of time and strain dependence into a product of two functions is suggested by the experimental results. This is a strong support for the separability assumption and simplifies the formulation of rheological constitutive equations. A polymer with linear macromolecules exhibited much stronger strain dependence than a polymer with long chain branched macromolecules. The parameters of an integral constitutive equation were determined in rapid strain experiments and the constitutive equation was tested experimentally with stress growth at start-up of equibiaxial extension. Equibiaxial extensional flow was generated with a Rheometrics RDS-LA, using the lubricated squeezing technique.

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