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The theoretical transparency and theoretical model of sheet resistance were induced and the design procedure was proposed.
Finally, the proposed metamodeling technique and sampling schemes are integrated and applied to optimize sheet forming design; the corresponding optimized results demonstrate that the proposed hybrid metamodeling technique is able to produce good approximation model of sheet metal forming system.
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Therefore, it is well suited for the modeling of sheet metal forming and similar processes.
Furthermore, the presented experimental data can also be used to verify numerical models of sheet metal shearing.
A general elasto-plastic model is also incorporated for the constitutive modelling of sheet forming operations with plastic anisotropy.
This paper reports the design and implementation of a system for automatic recognition of features from freeform surface CAD models of sheet metal parts represented in STL format.
This paper reports on wind-tunnel investigations onto models of the Silsoe Experimental Full-scale cube and models of sheet-clad and elevated sheet-clad scaffolds surrounding the cube.
The lithosphere model of the sheet flexure considers the flexural deflection of the elastic sheet (corresponding to lithosphere) on non-viscous, incompressible fluid (corresponding to asthenosphere) with topographic load.
The investigated model of silicene sheet is shown in Figure 1a.
A cartoon model of cell sheet formation is depicted in Fig. 3.
A simple, quasi-steady, one-dimensional, vertical (1DV) model of unsteady sheet flow is presented.
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