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- W4386001192 abstract "This study presents the experimental results of layer-compression tests in plane strain state as well as the role of the obtained parameters on the simulated thinning tendency of a cylindrical deep drawn part. The work hardening law has a special importance in numerical simulations, thus it is mostly expected to be known over a large range of deformation. Tensile test, which counts as a fundamental method for material characterization, is therefore often complemented by other experiments, such as hydraulic bulge test, or plane strain compression test in sheet metal forming. The main drawbacks of the plane strain compression test are the lateral tool misalignment, the stress concentration at the tool edges and the undesirable effect of the friction. The thinner the applied sheets, the first two things are more pronounced due to the geometrical constraints that ensure the plane strain state. To overcome these disadvantages, layered specimens were investigated with rounded-edge tools in the present research. Our results show that the shear contribution in the compression zone can be effectively reduced by two- or three-layered sheets, with a minimum of two times higher deformation than it occurs in tension. Besides, a better lubricant condition is also easier to achieve in the multi-layered arrangement. The effect of the obtained work hardening parameters is also briefly outlined using numerical simulations and the Taguchi method. It was initially observed that none of the hardening parameters have more significance on thinning than others." @default.
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- W4386001192 date "2023-08-20" @default.
- W4386001192 modified "2023-10-07" @default.
- W4386001192 title "Capability Testing of Layered Specimens in Plane Strain Compression Method" @default.
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- W4386001192 doi "https://doi.org/10.1007/978-3-031-40920-2_38" @default.
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