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Journal ArticleDOI

A Theory of the Linear Viscoelastic Properties of Dilute Solutions of Coiling Polymers

Prince E. Rouse
- 01 Jul 1953 - 
- Vol. 21, Iss: 7, pp 1272-1280
TLDR
In this paper, the necessary coordination of the motions of different parts of a polymer molecule is made the basis of a theory of the linear viscoelastic properties of dilute solutions of coiling polymers.
Abstract
The necessary coordination of the motions of different parts of a polymer molecule is made the basis of a theory of the linear viscoelastic properties of dilute solutions of coiling polymers. This is accomplished by use of the concept of the submolecule, a portion of polymer chain long enough for the separation of its ends to approximate a Gaussian probability distribution. The configuration of a submolecule is specified in terms of the vector which corresponds to its end‐to‐end separation. The configuration of a molecule which contains N submolecules is described by the corresponding set of N vectors. The action of a velocity gradient disturbs the distribution of configurations of the polymer molecules away from its equilibrium form, storing free energy in the system. The coordinated thermal motions of the segments cause the configurations to drift toward their equilibrium distribution. The coordination is taken into account by the mathematical requirement that motions of the atom which joins two submolecules change the configurations of both submolecules. By means of an orthogonal transformation of coordinates, the coordination of all the motions of the parts of a molecule is resolved into a series of modes. Each mode has a characteristic relaxation time. The theory produces equations by means of which the relaxation times, the components of the complex viscosity, and the components of the complex rigidity can be calculated from the steady flowviscosities of the solution and the solvent, the molecular weight and concentration of the polymer, and the absolute temperature. Limitations of the theory may arise from the exclusion from consideration of (1) very rapid relaxation processes involving segments shorter than the submolecule and (2) the obstruction of the motion of a segment by other segments with which it happens to be in contact. Another possible cause of disagreement between the theory and experimental data is the polydispersity of any actual polymer; this factor is important because the calculated relaxation times increase rapidly with increasing molecular weight.

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Citations
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Journal ArticleDOI

Thermomechanics of dilute polymer solutions: multiple bead-spring model

TL;DR: Using the Rouse-Zimm model of the marcomolecule, the stress constitutive equation of dilute polymer solutions is derived in the form of a functional of temperature and deformation histories as mentioned in this paper.
Journal ArticleDOI

Atomistic Molecular Dynamics Simulation of Stress Relaxation upon Cessation of Steady-State Uniaxial Elongational Flow

TL;DR: In this paper, a new approach is presented for predicting the linear viscoelastic properties of a polymer melt through a series of molecular dynamics simulations of the relaxation of well-equilibrated, preoriented, strained configurations.
Journal ArticleDOI

Starlike Polymer Brushes

TL;DR: In this article, the authors investigate the properties of polymer brushes made of symmetric and asymmetric star-like polymers in good solvent using Langevin dynamics simulations and propose an exponential scaling with the stretching energy difference, with one notable exception that their proposed transition from a longest path stretching mode to a uniform stretching mode, the latter being dominant at high densities, has not been supported by their data.
Journal ArticleDOI

Polymer dynamics under confinement.

TL;DR: This work reviews recent neutron scattering work and related results from simulation and complementary techniques focusing on the microscopic dynamics of polymers under confinement, and reveals important information on the nature of the interphase between adsorbed layer and bulk polymer.
Journal ArticleDOI

Extensional properties of hydroxypropyl ether guar gum solutions.

TL;DR: The results presented suggest that interchain interactions for this modified guar are weak overall, and the solutions investigated are absent of entanglements over the whole range of frequencies and concentrations explored.
References
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Journal ArticleDOI

Piezoelectric Crystals and Their Applications to Ultrasonics

Warren P. Mason, +1 more
- 01 May 1951 - 
TL;DR: Piezoelectric crystals and their application to ultrasonics were discussed in this paper, where the authors proposed a method for the extraction of the ultrasonic properties of these crystals.