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Modeling of the Temperature-Dependent and Strain Rate-Dependent Dynamic Behavior of Glass Fiber-Reinforced Polyurethane Foams
Dong-Ju Lee, Sang-Beom Shin, Myung-Hyun Kim
J. Ocean Eng. Technol.. 2019;33(6):547-555.   Published online December 31, 2019
DOI: https://doi.org/10.26748/KSOE.2019.025

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Modeling of the Temperature-Dependent and Strain Rate-Dependent Dynamic Behavior of Glass Fiber-Reinforced Polyurethane Foams
Journal of Ocean Engineering and Technology. 2019;33(6):547-555   Crossref logo
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Temperature- and strain rate-dependent constitutive modeling of the large deformation behavior of a transparent polyurethane interlayer
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Experimental characterization of temperature dependent dynamic properties of glass fiber reinforced polyurethane foams
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A temperature- and strain-rate-dependent isotropic elasto-viscoplastic model for glass-fiber-reinforced polyurethane foam
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Strain rate dependent thermo-mechanical aspects of glass fiber reinforced thermoplastic based on experimental data
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Strain rate dependent damage evolution in long glass fiber reinforced polypropylene
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Experimental study on strain-rate-dependent behavior and failure modes of long glass fiber-reinforced polypropylene composite
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The Effect of Temperature and Strain Rate on the Interfacial Behavior of Glass Fiber Reinforced Polypropylene Composites: A Molecular Dynamics Study
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Modelling of the strain rate dependent deformation behaviour of rigid polyurethane foams
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