Non‐linear Viscoelastic Behaviour
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[1] G. Dean,et al. Modelling long term deformation behaviour of polymers for finite element analysis , 2009 .
[2] A. Wineman,et al. Nonlinear Viscoelastic Solids—A Review , 2009 .
[3] Corina Stefania Drapaca,et al. Nonlinear Constitutive Laws in Viscoelasticity , 2007 .
[4] M. K. Warby,et al. Computational modelling of thermoforming processes in the case of finite viscoelastic materials , 2006 .
[5] Montgomery T. Shaw,et al. Introduction to Polymer Viscoelasticity: Shaw/Introduction , 2005 .
[6] X. Feaugas,et al. Mechanical behavior of a semicrystalline polymer before necking. Part II: Modeling of uniaxial behavior , 2003 .
[7] J. L. Spoormaker,et al. Solution strategies for FEM analysis with nonlinear viscoelastic polymers , 2002 .
[8] I. Ward,et al. Application of a necking criterion to PET fibers in tension , 1999 .
[9] Ian D. Moore,et al. Nonlinear mechanical response of high density polyethylene. Part II: Uniaxial constitutive modeling , 1997 .
[10] Ian D. Moore,et al. Nonlinear mechanical response of high density polyethylene. Part I: Experimental investigation and model evaluation , 1997 .
[11] A. Bakker,et al. 3-D schapery representation for non-linear viscoelasticity and finite element implementation , 1996 .
[12] J. Lai,et al. An integral constitutive equation for nonlinear plasto‐viscoelastic behavior of high‐density polyethylene , 1995 .
[13] M. Kitagawa,et al. Nonlinear constitutive equation for polyethylene under combined tension and torsion , 1990 .
[14] Tatsuya Mori,et al. Rate-dependent nonlinear constitutive equation of polypropylene , 1989 .
[15] R. K. Mittal,et al. Time‐dependent behavior of nylon‐6 under uniaxial and biaxial loadings at constant rate , 1986 .
[16] L. J. Zapas,et al. Response of Carbon Black Filled Butyl Rubber to Cyclic Loading , 1981 .
[17] E. Krempl,et al. A uniaxial viscoplastic model based on total strain and overstress , 1979 .
[18] L. J. Zapas,et al. Nonlinear Viscoelastic Behavior of Poly(methyl Methacrylate) in Torsion , 1979 .
[19] I. M. Ward,et al. Tensile creep and recovery in ultra-high modulus linear polyethylenes , 1978 .
[20] S. S. Sternstein,et al. A Path‐Dependent Variable Approach to Nonlinear Viscoelastic Behavior , 1976 .
[21] M. Brereton,et al. Non-linear viscoelastic behaviour of polymers: An implicit equation approach , 1974 .
[22] M. Mindel,et al. Creep and recovery of polycarbonate , 1973 .
[23] J. Smart,et al. A comparison of single-integral non-linear viscoelasticity theories , 1972 .
[24] I. Yannas,et al. Utility of the Green‐Rivlin Theory in Polymer Mechanics , 1971 .
[25] R. Stafford. On mathematical forms for the material functions in nonlinear viscoelasticity , 1969 .
[26] M. Gradowczyk. On the accuracy of the Green-Rivlin representation for viscoelastic materials , 1969 .
[27] Richard Schapery. On the characterization of nonlinear viscoelastic materials , 1969 .
[28] J. Bauwens,et al. Tensile yield‐stress behavior of glassy polymers , 1969 .
[29] J. S. Lai,et al. A Modified Superposition Principle Applied to Creep of Nonlinear Viscoelastic Material Under Abrupt Changes in State of Combined Stress , 1967 .
[30] S. Turner. The strain response of plastics to complex stress histories , 1966 .
[31] Richard Schapery. An engineering theory of nonlinear viscoelasticity with applications , 1966 .
[32] I. Ward,et al. Non-linear creep and recovery behaviour of polypropylene fibres , 1965 .
[33] T. Craft,et al. Correlation of Large Longitudinal Deformations With Different Strain Histories. , 1965, Journal of research of the National Bureau of Standards. Section A, Physics and chemistry.
[34] J. Roetling. Yield stress behaviour of polymethylmethacrylate , 1965 .
[35] F. J. Lockett. Creep and stress-relaxation experiments for non-linear materials , 1965 .
[36] I. Ward,et al. Non-linear mechanical behaviour of oriented polypropylene , 1963 .
[37] B. Bernstein,et al. A Study of Stress Relaxation with Finite Strain , 1963 .
[38] R. E. Robertson. On the cold‐drawing of plastics , 1963 .
[39] T. L. Smith. Nonlinear Viscoelastic Response of Amorphous Elastomers to Constant Strain Rates , 1962 .
[40] Herbert Leaderman,et al. Large longitudinal retarded elastic deformation of rubberlike network polymers , 1962 .
[41] D. Plazek. Dynamic mechanical and creep properties of a 23% cellulose nitrate solution; Andrade creep in polymeric systems , 1960 .
[42] K. E. Holde. A study of the creep of nitrocellulose , 1957 .
[43] W. Findley,et al. Application of the Superposition Principle and Theories of Mechanical Equation of State, Strain, and Time Hardening to Creep of Plastics under Changing Loads , 1955 .
[44] E. Guth,et al. Significance of the Equation of State for Rubber , 1946 .
[45] A. Tobolsky,et al. Systems Manifesting Superposed Elastic and Viscous Behavior , 1945 .
[46] Henry Eyring,et al. Mechanical Properties of Textiles, I , 1945 .
[47] P. Nutting. A general stress-strain-time formula , 1943 .
[48] E. N. da C. Andrade,et al. Über das zähe Fließen in Metallen und verwandte Erscheinungen = On the viscous flow in metals, and allied phenomena , 1910 .
[49] R. A. Crook. Damage and the nonlinear viscoelastic response of glassy polycarbonate and LaRC-TPI , 1993 .
[50] I. Ward,et al. A unified model of stress relaxation and creep applied to oriented polyethylene , 1990 .
[51] David A. Dillard,et al. The nonlinear viscoelastic characterization of graphite/epoxy composites , 1987 .
[52] T. G. Rogers,et al. A non-linear integral representation for viscoelastic behaviour , 1968 .
[53] P. L. Pratt,et al. Stress Relaxation and the Plastic Deformation of Solids , 1964 .
[54] J. E. Dorn,et al. Anelastic creep of polymethyl methacrylate , 1958 .