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A new development of four-point method to measure the electrical resistivity in situ during plastic deformation
توسعه جدیدی از روش چهار نقطه ای برای اندازه گیری مقاومت الکتریکی در محل در طول تغییر شکل پلاستیک-2021 The presented study introduces a new test method to measure the change of the electrical resistivity in situ
during plastic deformation to characterize the deformation behavior of metals. This investigation is based on a
specially developed four- point method, which determines the change in electrical resistance of sheet samples of
an aluminum alloy 6062, a copper alloy CW024A and steel DC04 in situ during deformation in a tensile test.
Results show that the strain path, the deformation history, the plastic anisotropy as well as the plastic deformation have a significant influence on the electrical resistivity of all investigated materials. Therefore, this
technique is universally applicable for all sheet metals, independent of the crystal structure, the electrical and
mechanical properties to characterize structural changes during forming. The obtained data can be used for
simulations of metal forming processes, e. g. to predict forming limit curves and damage monitoring under
service loading.
Keywords: Plastic deformation | Plastic anisotropy | Plane strain test | Uniaxial tensile test | Electrical resistivity | Four-point method |
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