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85044106054
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A Theory of Elastic, Plastic, and Creep Deformation of an Initially Isotropic Material Showing Strain Hardening, Creep Recovery, and Secondary Creep, ASME
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Besseling, J.F.1
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A New Class of Distributed-Element Models for Cyclic Plasticity-I. Theory and Application
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A New Class of Distributed-Element Models for Cyclic Plasticity-II. On Important Properties of Material Behavior
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Chiang, D.Y.1
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Technical Report NCEER-91-0006, State University of New York, Buffalo
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A Multi-Dimensional Hysteretic Model for Plastically Deforming Metals in Energy Absorbing Devices
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Graesser, E.J.1
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6
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85024570641
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A Distributed Element Model for Hysteresis and Its Steady-State Dynamic Response
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Iwan, W. D., 1966, “A Distributed Element Model for Hysteresis and Its Steady-State Dynamic Response,” ASME Journal of Applied Mechanics, Vol. 33, No. 4, pp. 893-900.
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Iwan, W.D.1
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84986777426
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On a Class of Models for the Yielding Behavior of Continuous and Composite Systems
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Iwan, W. D., 1967, “On a Class of Models for the Yielding Behavior of Continuous and Composite Systems,” ASME Journal of Applied Mechanics, Vol. 34, No. 2, pp. 612-617.
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Iwan, W.D.1
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8
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0017922506
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Cyclic Plasticity for Nonproportional Paths: Part 1-Cyclic Hardening, Erasure of Memory, and Subsequent Strain Hardening Experiments
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Lamba, H. S. and Sidebottom, O. M., 1978a, “Cyclic Plasticity for Nonproportional Paths: Part 1-Cyclic Hardening, Erasure of Memory, and Subsequent Strain Hardening Experiments,” ASME Journal of Engineering Materials and Technology, Vol. 100, pp. 96-103.
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(1978)
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Lamba, H.S.1
Sidebottom, O.M.2
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9
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0017921592
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Cyclic Plasticity for Nonproportional Paths: Part 2-Comparison with Predictions of Three Incremental Plasticity Models
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Lamba, H. S. and Sidebottom, O. M., 1978b, “Cyclic Plasticity for Nonproportional Paths: Part 2-Comparison with Predictions of Three Incremental Plasticity Models,” ASME Journal of Engineering Materials and Technology, Vol. 100, pp. 104-111.
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, vol.100
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Lamba, H.S.1
Sidebottom, O.M.2
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10
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85167781300
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Multiaxial nonproportional cyclic deformation
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ASTM, STP 770
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McDowell, D. L., Socie, D. F., and Lamba, H. S., 1982, “Multiaxial nonproportional cyclic deformation,” Low-Cycle Fatigue and Life Prediction, ASTM, STP 770, pp. 500-518.
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McDowell, D.L.1
Socie, D.F.2
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11
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0020800277
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Experimental Verification of Constitutive Equations for Creep and Plasticity Based on Overlay Models
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Meijers, P. and Roode, F., 1983, “Experimental Verification of Constitutive Equations for Creep and Plasticity Based on Overlay Models,” ASME Journal of Pressure Vessel Technology, Vol. 105, pp. 277-284.
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ASME Journal of Pressure Vessel Technology
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Meijers, P.1
Roode, F.2
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12
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0022928530
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Random vibration of hysteretic systems under bi-directional ground motions
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Park, Y. J., Wen, Y. K., and Ang, A. H-s., 1986, “Random vibration of hysteretic systems under bi-directional ground motions,” Int. J, Earthq. Eng. Struct. Dynam., Vol. 14, pp. 543-557.
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Park, Y.J.1
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13
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0003474751
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2nd ed., Cambridge University Press
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Press, W. H., Teukolsky, S. A., Vetterling, W. T., and Flannery, B. P., 1992, Numerical Recipes in Fortran; The Art of Scientific Computing, 2nd ed., Cambridge University Press.
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Numerical Recipes in Fortran; the Art of Scientific Computing
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Press, W.H.1
Teukolsky, S.A.2
Vetterling, W.T.3
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14
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0000818662
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A Theory of Viscoplasticity Without a Yield Surface, Part 1: General Theory; Part 2: Application to Mechanical Behavior of Metals
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Valanis, K. C., 1971, “A Theory of Viscoplasticity Without a Yield Surface, Part 1: General Theory; Part 2: Application to Mechanical Behavior of Metals,” Archive of Mechanics, Vol. 23, No. 4, pp. 517-551.
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Valanis, K.C.1
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0001219426
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Fundamental Consequences of a New Intrinsic Time Measure: Plasticity as a Limit of the Endochronic Theory
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Valanis, K. C., 1980, “Fundamental Consequences of a New Intrinsic Time Measure: Plasticity as a Limit of the Endochronic Theory,” Archive of Mechanics, Vol. 23, No. 2, pp. 171-191.
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Valanis, K.C.1
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A Numerical Algorithm for Endochronic Plasticity and Comparison with Experiment
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Valanis, K. C., and Fan, J., 1984, “A Numerical Algorithm for Endochronic Plasticity and Comparison with Experiment,” Computers and Structures, Vol. 19(516), pp. 714-724.
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Computers and Structures
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Valanis, K.C.1
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17
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85137267677
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A Mathematical Model Depicting the Stress-Strain Diagram and the Hysteresis Loop, ASME
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Whiteman, I. R., 1959, “A Mathematical Model Depicting the Stress-Strain Diagram and the Hysteresis Loop,” ASME Journal of Applied Mechanics, Vol. 81, pp. 95-100.
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(1959)
Journal of Applied Mechanics
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Whiteman, I.R.1
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