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Mar 1960

Volume 4, Issue 1, pp. 3-363


Presentation of the Bingham Medal to Egon Orowan

C. Richard Soderberg

Trans. Soc. Rheol. 4, 3 (1960); http://dx.doi.org/10.1122/1.548863 (3 pages)

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

Introduction to the Symposium on Mechanics of Continua

Hershel Markovitz

Trans. Soc. Rheol. 4, 7 (1960); http://dx.doi.org/10.1122/1.548862 (1 page)

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83.10.Ff Continuum mechanics
83.50.-v Deformation and flow
47.50.-d Non-Newtonian fluid flows

Modern Theories of Materials

C. Truesdell

Trans. Soc. Rheol. 4, 9 (1960); http://dx.doi.org/10.1122/1.548873 (14 pages)

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83.10.Bb Kinematics of deformation and flow
83.60.Bc Linear viscoelasticity
47.11.-j Computational methods in fluid dynamics

Relations between Hypo‐elasticity and Elasticity

Barry Bernstein

Trans. Soc. Rheol. 4, 23 (1960); http://dx.doi.org/10.1122/1.548874 (6 pages)

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83.10.Ff Continuum mechanics
83.60.Df Nonlinear viscoelasticity
83.60.La Viscoplasticity; yield stress

Theory of Anisotropic Fluids

J. L. Ericksen

Trans. Soc. Rheol. 4, 29 (1960); http://dx.doi.org/10.1122/1.548864 (11 pages)

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47.50.-d Non-Newtonian fluid flows
66.20.-d Viscosity of liquids; diffusive momentum transport

Introduction to the Symposium on Adhesion and Rheology

Raymond R. Myers

Trans. Soc. Rheol. 4, 43 (1960); http://dx.doi.org/10.1122/1.548865 (2 pages)

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

Theory and Analysis of Peel Adhesion: Bond Stresses and Distributions

D. H. Kaelble

Trans. Soc. Rheol. 4, 45 (1960); http://dx.doi.org/10.1122/1.548868 (29 pages)

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83.50.Lh Slip boundary effects (interfacial and free surface flows)
83.10.Bb Kinematics of deformation and flow
83.50.Ax Steady shear flows, viscometric flow

The Peeling Force of Adhesive Joints

Franklin S. C. Chang

Trans. Soc. Rheol. 4, 75 (1960); http://dx.doi.org/10.1122/1.548866 (15 pages)

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83.50.Lh Slip boundary effects (interfacial and free surface flows)
68.35.Gy Mechanical properties; surface strains

The Tensile Strength and Tacky Behavior of Polymeric Liquids

Robert A. Erb and Robert S. Hanson

Trans. Soc. Rheol. 4, 91 (1960); http://dx.doi.org/10.1122/1.548867 (26 pages)

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83.10.Gr Constitutive relations
83.80.Rs Polymer solutions
83.80.Sg Polymer melts

Flow Down an Inclined Plane

Ray D. Hoffman and Raymond R. Myers

Trans. Soc. Rheol. 4, 119 (1960); http://dx.doi.org/10.1122/1.548877 (12 pages)

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83.50.Ax Steady shear flows, viscometric flow
83.10.Gr Constitutive relations
83.80.Hj Suspensions, dispersions, pastes, slurries, colloids
83.80.Iz Emulsions and foams

Rheology and Dental Materials

Richard H. Roydhouse

Trans. Soc. Rheol. 4, 131 (1960); http://dx.doi.org/10.1122/1.548878 (10 pages)

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83.80.Ab Solids: e.g., composites, glasses, semicrystalline polymers
83.85.Cg Rheological measurements—rheometry

On Anomalies in the Measurement of the Complex Modulus

S. R. Bodner

Trans. Soc. Rheol. 4, 141 (1960); http://dx.doi.org/10.1122/1.548876 (18 pages)

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83.80.Ab Solids: e.g., composites, glasses, semicrystalline polymers
83.60.Bc Linear viscoelasticity
83.85.Jn Viscosity measurements

Concentration Dependence of the Stress‐Optical Coefficient

Wladimir Philippoff

Trans. Soc. Rheol. 4, 159 (1960); http://dx.doi.org/10.1122/1.548879 (10 pages)

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83.80.Hj Suspensions, dispersions, pastes, slurries, colloids
83.80.Iz Emulsions and foams
83.85.Cg Rheological measurements—rheometry
83.85.Jn Viscosity measurements

Stress‐Optical Properties of Silicones

Wladimir Philippoff

Trans. Soc. Rheol. 4, 169 (1960); http://dx.doi.org/10.1122/1.548855 (9 pages)

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83.80.Hj Suspensions, dispersions, pastes, slurries, colloids
83.80.Iz Emulsions and foams
83.85.Lq Normal stress difference measurements
83.85.Ei Optical methods; rheo-optics

Rupture of Rubber

H. W. Greensmith, L. Mullins, and A. G. Thomas

Trans. Soc. Rheol. 4, 179 (1960); http://dx.doi.org/10.1122/1.548870 (11 pages)

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83.80.Ab Solids: e.g., composites, glasses, semicrystalline polymers
83.60.Uv Wave propagation, fracture, and crack healing
62.20.M- Structural failure of materials

Rheological Properties of Molecules in Fibers

Seihun Chang, Francis H. Ree, Taikyue Ree, and Henry Eyring

Trans. Soc. Rheol. 4, 191 (1960); http://dx.doi.org/10.1122/1.548871 (16 pages)

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83.60.Pq Time-dependent structure (thixotropy, rheopexy)
83.10.Gr Constitutive relations
83.80.Sg Polymer melts

The Significance of Rheology in the Making and Using of Paper

Alfred H. Nissan, H. G. Higgins, and A. Lagani,, Jr.

Trans. Soc. Rheol. 4, 207 (1960); http://dx.doi.org/10.1122/1.548869 (26 pages)

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83.80.Lz Physiological materials (e.g. blood, collagen, etc.)
83.50.Ax Steady shear flows, viscometric flow
47.11.-j Computational methods in fluid dynamics

Stress Analysis for Linear Viscoelastic Materials with Temperature Variation

L. W. Morland and E. H. Lee

Trans. Soc. Rheol. 4, 233 (1960); http://dx.doi.org/10.1122/1.548856 (31 pages)

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83.60.Bc Linear viscoelasticity
62.40.+i Anelasticity, internal friction, stress relaxation, and mechanical resonances
83.10.Gr Constitutive relations

The Rheology of Asphalt. II. Flow Characteristics of Asphalt

Frederick H. Gaskins, John G. Brodnyan, Wladimir Philippoff, and Edmund Thelen

Trans. Soc. Rheol. 4, 265 (1960); http://dx.doi.org/10.1122/1.548857 (14 pages)

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83.80.Ab Solids: e.g., composites, glasses, semicrystalline polymers
83.50.Ax Steady shear flows, viscometric flow
83.10.Gr Constitutive relations

The Rheology of Asphalt. III. Dynamic Mechanical Properties of Asphalt

John G. Brodnyan, Fredrick H. Gaskins, Wladimir Philippoff, and Edmund Thelen

Trans. Soc. Rheol. 4, 279 (1960); http://dx.doi.org/10.1122/1.548858 (18 pages)

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83.80.Ab Solids: e.g., composites, glasses, semicrystalline polymers
83.10.Gr Constitutive relations
47.50.-d Non-Newtonian fluid flows

Thermodynamics of Stretching of Nylon Fibers

Malcolm L. Williams

Trans. Soc. Rheol. 4, 297 (1960); http://dx.doi.org/10.1122/1.548859 (17 pages)

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81.05.Lg Polymers and plastics; rubber; synthetic and natural fibers; organometallic and organic materials
83.85.Ns Data analysis (interconversion of data computation of relaxation and retardation spectra; time-temperature superposition, etc.)
83.60.St Non-isothermal rheology

Flow Properties of Lithium Stearate‐Oil Dispersions

Walter H. Bauer, Duane O. Shuster, and Stephen E. Wiberley

Trans. Soc. Rheol. 4, 315 (1960); http://dx.doi.org/10.1122/1.548860 (20 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
83.80.Sg Polymer melts

Rheological Measurements with the Brabender Plastograph

C. C. McCabe

Trans. Soc. Rheol. 4, 335 (1960); http://dx.doi.org/10.1122/1.548861 (12 pages)

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83.80.Va Elastomeric polymers
83.85.Cg Rheological measurements—rheometry
83.50.Ax Steady shear flows, viscometric flow

The Dynamic Compressibility of a Rubber‐Sulfur Vulcanizate and Its Relation to Free Volume

J. E. McKinney, H. V. Belcher, and R. S. Marvin

Trans. Soc. Rheol. 4, 347 (1960); http://dx.doi.org/10.1122/1.548872 (16 pages)

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83.80.Va Elastomeric polymers
83.85.Lq Normal stress difference measurements
83.10.Gr Constitutive relations

Abstracts of Additional Papers Presented at the Society of Rheology Meeting, November 4–6, 1959

Trans. Soc. Rheol. 4, 363 (1960); http://dx.doi.org/10.1122/1.548875 (1 page)

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83.00.00 Rheology
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