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Applied simulation techniques are 1) skin strain simulation, 2) fabric strain simulation using the anisotropic hyperelastic model, and 3) musculoskeletal simulation.
According to the result of strain simulation about advanced sigma-shape recessed structures, there are two key structure factors affect device's performance.
Interpreting this analysis, an innovative tool design of micro end mills is developed using the parameter technology in a FEM strain simulation.
Comparison of effective strains from plane strain simulation, with strains on the strip surface in 3D simulations suggest that plane strain simulations are sufficient to describe the strain distribution in sheet metal shearing.
Each strain simulation is classified as viable or inviable by the same rules applied to the WT simulation.
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Open image in new window Fig. 2 Pressure, −σ kk /3, fields from generic 3D and plane strain simulations.
This observation implies that strains on the sheet surface are representative for the interior strains and that plane strain simulations are once again a good approximation.
c plain strain Open image in new window Fig. 3 Von Mises stress (Eq. (1)) fields from generic 3D and plane strain simulations.
c plain strain Open image in new window Fig. 4 Stress triaxiality (Eq. (2)) fields from generic 3D and plane strain simulations.
In this work, we establish a connection between the Poisson's ratio, a measurable elastic constant [30], and the spring constants used in the atomistic strain simulations, within the framework of linear elasticity theory.
Due to low longitudinal strain, the cross-sections of the product can be considered as a plane strain state throughout the entire forming process, allowing utilization of 2-D plane strain simulations to represent for 3-D simulations.
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