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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsData of uniaxial tensile tests for DP steels
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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsData of uniaxial tensile tests for aluminum alloys
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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsRaw data of DP780 biaxial tensile tests
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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsRaw data for DP590 biaxial tensile tests
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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsThe source code of Yld2000-Var VUMAT
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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsThe source code of the utilized Crystal Plasticity VUMAT
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- Data for: A modified yield function for modeling of the evolving yielding behavior and micro-mechanism in biaxial deformation of sheet metalsRaw data of DP980 biaxial tensile tests
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- Data used in the paper: A compact cyclic viscoelastic-plastic model for solid polymers. Comparison with experiments and state-of-the-art model predictions.Tests were conducted at Univ. Bourgogne Franche-Comte, FEMTO-ST Institute, Department of Applied Mechanics, Besancon, France. The tests were conducted under isothermal conditions at room temperature when the frequency of 5 Hz and stress ratio of 0.5 were applied (for a PC -polymer). The elongation of dumbbell -shaped PC-specimens versus the applied force F was measured. The elongation was measured by an extensometer. The stress was defined by F/A, where the area of the initial cross section (gauge section) is given by A. Hysteresis loops given in the paper are based on this stress vs strain -data.
- Dataset
- Data for: Multi-Scale Mechanism of Twinning-Detwinning in Magnesium AZ31B Alloy Simulated by Crystal Plasticity Modelling and Validated via In Situ Synchrotron XRD and In Situ SEM-EBSDExperimental 2D diffraction patterns (Debye-Scherrer rings) for in situ loading of AZ31B magnesium alloy samples, as described in the paper: file names correspond to load points A,B,C ... described in the paper.
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- Data for: Understanding thermally-activated glide of $1/2$\hkl<110>\hkl{110} screw dislocations in UO$_2$ -- a molecular dynamics analysisVisualization of dislocation motion. First animation shows strong self-pinning, extremely bent dislocation line, unpinning by generating defect clusters and Frank loops, partial dissociation (T = 2000 K, shear stress = 1000 MPa). Second animation shows kink-driven motion with some dissociation (T = 1250 K, shear stress = 100 MPa).
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