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1
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0001734448
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Some general properties of solid polymer inelstic deformation behavior and their application to a class of clock models
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Krerapl, E., 1998, "Some General Properties of Solid Polymer Inelstic Deformation Behavior and Their Application to a Class of Clock Models," J. Rheol., 42, pp. 713-725.
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J. Rheol.
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Krerapl, E.1
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2
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0242526803
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A phenomenological plasticity model accounting for hydrostatic stress-sensitivity and vertex-type of effect
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Kuroda, M., 2004, "A Phenomenological Plasticity Model Accounting for Hydrostatic Stress-Sensitivity and Vertex-Type of Effect," Mech. Mater., 36, pp. 285-297.
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Mech. Mater.
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Kuroda, M.1
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3
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0034742246
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Finite deformation of a polymer: Experiments and modeling
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Khan, A., and Zhang, H., 2001, "Finite Deformation of a Polymer: Experiments and Modeling," Int. J. Plast., 17, pp. 1167-1188.
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Int. J. Plast.
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Khan, A.1
Zhang, H.2
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4
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0033971129
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A micro/macro constitutive model for the small-deformation behavior of polyethylene
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Nikolov, S., and Doghri, I., 2000, "A Micro/Macro Constitutive Model for the Small-Deformation Behavior of Polyethylene," Polymer, 41, pp. 1883-1935.
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Polymer
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Nikolov, S.1
Doghri, I.2
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5
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0031079382
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Nonlinear mechanical response of high density polyethylene. Part 1
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Zhang, C., and Moore, I., 1997, "Nonlinear Mechanical Response of High Density Polyethylene. Part 1," Polym. Eng. Sci., 37(2), pp. 404-413.
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Polym. Eng. Sci.
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Zhang, C.1
Moore, I.2
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6
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84989152024
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The effect of strain rate on the deformation and relaxation behavior of 6/6 nylon at room temperature
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Bordonaro, C. M., and Krempl, E., 1992, "The Effect of Strain Rate on the Deformation and Relaxation Behavior of 6/6 Nylon at Room Temperature," Polym. Eng. Sci., 32, pp. 1066-1072.
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Polym. Eng. Sci.
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Bordonaro, C.M.1
Krempl, E.2
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7
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0027887440
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The rate dependent mechanical behavior of plastics: A comparison between 6/6 nylon, polyetherimide, and poly(etheretherketone)
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ASME
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Bordonaro, C. M., and Krempl, E., 1993, "The Rate Dependent Mechanical Behavior of Plastics: A Comparison Between 6/6 Nylon, Polyetherimide, and Poly(etheretherketone)," Use of Plastics Composites: Materials and Mechanics Issues, ASME, 46, pp. 43-55.
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(1993)
Use of Plastics Composites: Materials and Mechanics Issues
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Bordonaro, C.M.1
Krempl, E.2
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8
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0029376202
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A constitutive theory for polypropylene in cyclic deformation
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Ariyama, T., and Kaneko, K., 1995, "A Constitutive Theory for Polypropylene in Cyclic Deformation," Polym. Eng. Sci., 35, pp. 1461-1467.
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Polym. Eng. Sci.
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Ariyama, T.1
Kaneko, K.2
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9
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0037411425
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Rate (time)-dependent deformation behavior: An overview of some properties of metals and solid polymers
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Krempl, E., and Khan, E., 2003, "Rate (Time)-Dependent Deformation Behavior: An Overview of Some Properties of Metals and Solid Polymers," Int. J. Plast., 19, pp. 1069-1095.
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Int. J. Plast.
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Krempl, E.1
Khan, E.2
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10
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0037215810
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Modeling of uniaxial and biaxial ratcheting behavior of 1026 carbon steel using the simplified viscoplasticity theory based on overstress (VBO)
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Colak, O., and Krempl, E., 2003, "Modeling of Uniaxial and Biaxial Ratcheting Behavior of 1026 Carbon Steel Using the Simplified Viscoplasticity Theory Based on Overstress (VBO)," Acta Mech., 160, pp. 27-44.
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Acta Mech.
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Colak, O.1
Krempl, E.2
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11
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0002456089
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A small strain viscoplasticity theory based on overstress
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A. Krausz, and K. Krausz, eds., Academic, San Diego
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Krempl, E., 1996, "A Small Strain Viscoplasticity Theory Based on Overstress," Unified Constitutive Laws of Plastic Deformation, A. Krausz, and K. Krausz, eds., Academic, San Diego, pp. 281-318.
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(1996)
Unified Constitutive Laws of Plastic Deformation
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Krempl, E.1
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12
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0041461919
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Modeling of nonlinear rate sensitivity by using an overstress model
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Ho, K., 2001, "Modeling of Nonlinear Rate Sensitivity by Using an Overstress Model," CMES, 2, pp. 351-364.
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(2001)
CMES
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Ho, K.1
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13
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0033907583
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An overstress model for solid polymer deformation behavior applied to nylon 66
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Krempl, E., and Ho, K., 2001, "An Overstress Model for Solid Polymer Deformation Behavior Applied to Nylon 66," ASTM STP 1357.
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(2001)
ASTM STP
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Krempl, E.1
Ho, K.2
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14
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2342533550
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Inelastic compressible and incompressible, isotropic small strain viscoplasticity theory based on overstress (VBO)
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Jean Lemaitre, ed., San Diego
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Krempl, E., and Ho, K., 2001, "Inelastic Compressible and Incompressible, Isotropic Small Strain Viscoplasticity Theory Based on Overstress (VBO)," Handbook of Materials Behavior Models, Jean Lemaitre, ed., San Diego, Vol. 1.
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(2001)
Handbook of Materials Behavior Models
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Krempl, E.1
Ho, K.2
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15
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0013127072
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Doctoral thesis, Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, NY
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Maciucescu, L., 2002, "A Simplified Viscoplasticity Theory Based on Overstress for Low to High Homologous Temperature and Quasi-Static to Dynamic Applications," Doctoral thesis, Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, NY.
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(2002)
A Simplified Viscoplasticity Theory Based on Overstress for Low to High Homologous Temperature and Quasi-static to Dynamic Applications
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Maciucescu, L.1
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16
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33645676124
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Modeling of rate dependence and creep using VBO with a minimum number of constants
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Japan Society of Mechanical Engineering, Tsukuba, Japan
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Krempl, E., and Maciucescu, L., 2001, "Modeling of Rate Dependence and Creep Using VBO with a Minimum Number of Constants," in Proceedings of CREEP 7, Japan Society of Mechanical Engineering, Tsukuba, Japan, pp. 617.
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(2001)
Proceedings of CREEP
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Krempl, E.1
Maciucescu, L.2
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17
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0029255820
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A state variable model for high strength polymers
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Bordonaro, C. M., 1995, "A State Variable Model for High Strength Polymers," Polym. Eng. Sci., 35, pp. 310-316.
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Polym. Eng. Sci.
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Bordonaro, C.M.1
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18
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0031108422
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Hypo-elasticity model based upon the logarithmic stress rate
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Xiao, H., Bruhns, O., and Meyers, A., 1997, "Hypo-elasticity Model Based Upon the Logarithmic Stress Rate," J. Elast., 47, pp. 51-68.
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J. Elast.
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Xiao, H.1
Bruhns, O.2
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19
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2342571740
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Finite element formulation for finite deformation, isotropic viscoplasticity based on overstress (FVBO)
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Gomaa, S., Sham, T. L., and Krempl, E., 2004, "Finite Element Formulation for Finite Deformation, Isotropic Viscoplasticity Based on Overstress (FVBO)," Int. J. Solids Struct., 41, pp. 3607-3624.
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Int. J. Solids Struct.
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Gomaa, S.1
Sham, T.L.2
Krempl, E.3
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2342517940
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Doctoral thesis, Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, NY
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Gomaa, S., 2000, "Computational Procedures for Finite Deformation, Rate Independent Plasticity and Viscoplasticity Based on Overstress," Doctoral thesis, Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, NY.
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Computational Procedures for Finite Deformation, Rate Independent Plasticity and Viscoplasticity Based on Overstress
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Gomaa, S.1
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21
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0018703441
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A nonlinear integral constitutive equation incorporating rate effects, creep and relaxation
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Cernocky, E. P., and Krempl, E., 1979, "A Nonlinear Integral Constitutive Equation Incorporating Rate Effects, Creep and Relaxation," Int. J. Non-Linear Mech., 14, pp. 183-203.
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Int. J. Non-Linear Mech.
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Cernocky, E.P.1
Krempl, E.2
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0003815693
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PhD thesis, Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, NY
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Ho, K., 1998, "Application of the Viscoplasticity Theory Based on Overstress to the Modeling of Dynamic Strain Aging of Metals and to Solid Polymers, Specifically Nylon 66," PhD thesis, Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, NY.
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(1998)
Application of the Viscoplasticity Theory Based on Overstress to the Modeling of Dynamic Strain Aging of Metals and to Solid Polymers, Specifically Nylon 66
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Ho, K.1
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