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- W2791400961 abstract "A strain-gradient crystal plasticity finite element method(SGCP-FEM) was utilized to simulate the compressive deformation behaviors of single-slip, (111)[101], oriented FCC single-crystal micro-pillars with two different slip-plane inclination angles, 36.3o and 48.7o, and the simulation results were compared with those from conventional crystal plasticity finite element method(CP-FEM) simulations. For the low slip-plane inclination angle, a macroscopic diagonal shear band formed along the primary slip direction in both the CP- and SGCP-FEM simulations. However, this shear deformation was limited in the SGCP-FEM, mainly due to the increased slip resistance caused by local strain gradients, which also resulted in strain hardening in the simulated flow curves. The development of a secondly active slip system was altered in the SGCP-FEM, compared to the CP-FEM, for the low slip-plane inclination angle. The shear deformation controlled by the SGCP-FEM reduced the overall crystal rotation of the micro-pillar and limited the evolution of the primary slip system, even at 10% compression." @default.
- W2791400961 created "2018-03-29" @default.
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- W2791400961 date "2017-12-01" @default.
- W2791400961 modified "2023-09-25" @default.
- W2791400961 title "Strain Gradient Crystal Plasticity Finite Element Modeling for the Compression Behaviors of Single Crystals" @default.
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- W2791400961 doi "https://doi.org/10.3740/mrsk.2017.27.12.679" @default.
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