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Third, shear band developments in plane strain pure bending of a sheet specimen with the typical textures are studied.
Regions near the surfaces in a bent sheet specimen are approximately subjected to plane strain tension or compression.
From this viewpoint, the bendability of a sheet specimen may be evaluated, using the knowledge regarding shear band formation in plane strain tension/compression.
To prevent a sheet specimen from buckling subjected to a tension-compression cyclic loading, a new fixture has been developed to use with a regular tensile-compression machine.
Three-dimensional linear elastic finite-element analyses were performed to investigate the driving forces for crack propagation in the sheet specimen geometry.
A novel sample design is proposed, with shaped cut-outs in a rectangular sheet specimen, intended to produce with strain ratios in the range, −1 ≤ ɛ2/ɛ1 ≤ 1/2 in a small zone, while the sample is uniaxially extended.
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Ti 6Al 4V (Ti64) sheet specimens were cathodically hydrogenated in sulfuric acid solution at ambient conditions.
This article investigates the macroscopic behavior of uniaxially pre-strained large-scale DP780 and CHSP45R sheet specimens.
Then, results concerning some experimental tests performed on edge-cracked aluminium alloy sheet specimens at different temperatures are reported.
The surfaces of strained mild steel sheet specimens were examined with scanning laser confocal microscopy.
Fatigue tests with smooth sheet specimens made of LC4CS Aluminum alloy are conducted to verify this criterion.
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