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Mar 1958

Volume 2, Issue 1, pp. 3-314


Presentation of the Bingham Medal to Clarence M. Zener

Arthur S. Nowick

Trans. Soc. Rheol. 2, 3 (1958); http://dx.doi.org/10.1122/1.548820 (5 pages)

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01.10.Cr Announcements, news, and awards
01.60.+q Biographies, tributes, personal notes, and obituaries

Rheology of Peeling in a Newtonian Liquid

J. J. Bikerman and William Yap

Trans. Soc. Rheol. 2, 9 (1958); http://dx.doi.org/10.1122/1.548821 (13 pages)

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83.50.Lh Slip boundary effects (interfacial and free surface flows)
83.10.Bb Kinematics of deformation and flow

Dynamic Mechanical Properties of Fluorochemical Elastomers

Kenneth E. Owens and Carl A. Dahlquist

Trans. Soc. Rheol. 2, 23 (1958); http://dx.doi.org/10.1122/1.548822 (16 pages)

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83.80.Va Elastomeric polymers
83.80.Gv Electro- and magnetorheological fluids
47.50.-d Non-Newtonian fluid flows

A Torsion Pendulum for Dynamic and Creep Measurements of Soft Viscoelastic Materials

Donald J. Plazek, M. N. Vrancken, and John W. Berge

Trans. Soc. Rheol. 2, 39 (1958); http://dx.doi.org/10.1122/1.548823 (13 pages)

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83.60.Bc Linear viscoelasticity
62.20.Hg Creep
47.50.-d Non-Newtonian fluid flows

The Dynamic Mechanical Properties of a Model Filled System: Polyisobutylene‐Glass Beads

Robert F. Landel

Trans. Soc. Rheol. 2, 53 (1958); http://dx.doi.org/10.1122/1.548824 (23 pages)

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83.80.Ab Solids: e.g., composites, glasses, semicrystalline polymers
83.10.Gr Constitutive relations
62.20.Hg Creep

A Photographic Study of Liquid Flow in a Roll Nip

J. C. Miller and R. R. Myers

Trans. Soc. Rheol. 2, 77 (1958); http://dx.doi.org/10.1122/1.548825 (17 pages)

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47.50.-d Non-Newtonian fluid flows
83.50.Lh Slip boundary effects (interfacial and free surface flows)
83.60.La Viscoplasticity; yield stress

On Relaxation Spectra in High Polymers

B. Albrecht and A. M. Freudenthal

Trans. Soc. Rheol. 2, 95 (1958); http://dx.doi.org/10.1122/1.548826 (36 pages)

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83.80.Tc Polymer blends
83.50.-v Deformation and flow
83.60.Bc Linear viscoelasticity

Approximate Equations for Interconverting the Various Mechanical Properties of Linear Viscoelastic Materials

Thor L. Smith

Trans. Soc. Rheol. 2, 131 (1958); http://dx.doi.org/10.1122/1.548827 (21 pages)

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83.60.Bc Linear viscoelasticity
47.50.-d Non-Newtonian fluid flows

The Principles of Plastico‐Dynamics

Cosimo Torre

Trans. Soc. Rheol. 2, 153 (1958); http://dx.doi.org/10.1122/1.548828 (22 pages)

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83.10.Ff Continuum mechanics
83.10.Gr Constitutive relations

The Creep of Snow under Combined Stress

J. K. Landauer

Trans. Soc. Rheol. 2, 175 (1958); http://dx.doi.org/10.1122/1.548829 (20 pages)

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83.10.Gr Constitutive relations
62.20.Hg Creep
92.40.Ea Precipitation

Time Dependence of Mechanical Breakdown in Bundles of Fibers. III. The Power Law Breakdown Rule

Bernard D. Coleman

Trans. Soc. Rheol. 2, 195 (1958); http://dx.doi.org/10.1122/1.548830 (24 pages)

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83.10.Gr Constitutive relations
83.80.Sg Polymer melts

The Tensile Strength of GR‐S Elastomers

Lawrence M. Epstein and Robert P. Smith

Trans. Soc. Rheol. 2, 219 (1958); http://dx.doi.org/10.1122/1.548835 (20 pages)

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83.80.Va Elastomeric polymers
62.20.F- Deformation and plasticity
83.10.Gr Constitutive relations

Flow Behavior of Concentrated (Dilatant) Suspensions

A. B. Metzner and Malcolm Whitlock

Trans. Soc. Rheol. 2, 239 (1958); http://dx.doi.org/10.1122/1.548831 (16 pages)

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83.80.Hj Suspensions, dispersions, pastes, slurries, colloids
83.80.Iz Emulsions and foams
83.50.Ax Steady shear flows, viscometric flow
47.50.-d Non-Newtonian fluid flows

Flow of an Incompressible Visco‐Plastic Layer on an Inclined Plane

P. R. Paslay and A. Slibar

Trans. Soc. Rheol. 2, 255 (1958); http://dx.doi.org/10.1122/1.548836 (8 pages)

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83.60.La Viscoplasticity; yield stress
66.20.-d Viscosity of liquids; diffusive momentum transport
83.10.Gr Constitutive relations

The Capillary Experiment in Rheology

Wladimir Philippoff and Frederick H. Gaskins

Trans. Soc. Rheol. 2, 263 (1958); http://dx.doi.org/10.1122/1.548832 (22 pages)

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66.20.-d Viscosity of liquids; diffusive momentum transport
83.60.Bc Linear viscoelasticity
83.10.Bb Kinematics of deformation and flow

The Rheology of Various Solutions of Cellulose Derivatives

John G. Brodnyan, Frederick H. Gaskins, Wladimir Philippoff, and E. G. Lendrat

Trans. Soc. Rheol. 2, 285 (1958); http://dx.doi.org/10.1122/1.548833 (18 pages)

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83.80.Rs Polymer solutions
83.80.Sg Polymer melts
47.50.-d Non-Newtonian fluid flows
66.20.-d Viscosity of liquids; diffusive momentum transport

Abstracts of Additional Papers Presented at the Society of Rheology Meeting, November 7–9, 1957

Trans. Soc. Rheol. 2, 303 (1958); http://dx.doi.org/10.1122/1.548837 (10 pages)

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83.00.00 Rheology

Corrigenda: A Stochastic Process Model for Mechanical Breakdown

Bernard D. Coleman

Trans. Soc. Rheol. 2, 313 (1958); http://dx.doi.org/10.1122/1.548834 (2 pages)

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83.10.Gr Constitutive relations
62.20.F- Deformation and plasticity
83.60.Wc Flow instabilities
83.60.Yz Drag reduction
99.10.Cd Errata
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