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Tension–compression asymmetry of phosphor bronze for electronic parts and its effect on bending behavior
Authors:Toshihiko Kuwabara  Yutaka Kumano  Jindra Ziegelheim  Ikuya Kurosaki
Institution:aDivision of Advanced Mechanical Systems Engineering, Institute of Symbiotic Science and Technology, Graduate School of Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei-shi, Tokyo 184-8588, Japan;bResearch Center for Micro and Nano Technologies, Hosei University, 3-11-15 Midori-cho, Koganei-shi, Tokyo 184-0003, Japan;cTechnology Development Center, Nippon Mining & Metals Co., Ltd., 3 Kurami, Samukawa, Koza, Kanagawa 253-0101, Japan
Abstract:In-plane tension and compression experiments on copper alloy sheets (phosphor bronze) and 6000 series aluminum alloy sheets (AA6016-T4) were conducted using a specially designed testing apparatus. The apparatus is equipped with comb-type dies so that stress–strain curves of a sheet specimen subjected to tension followed by compression, and vice versa, can be measured without buckling of the specimen, as well as those for monotonic tension and compression. A difference was observed in the flow stresses between tension and compression for the as-received copper alloy, but not for the aluminum alloy. Moreover, stress reversal tests, such as tension followed by compression and compression followed by tension, were carried out in order to measure the Bauschinger effect. In the second part of the experiment, bending moment–curvature diagrams were measured for the as-received and pre-stretched specimens. The bending moment–curvature diagrams were compared with those calculated using the stress–strain curves obtained from the tension–compression tests, and were in good agreement with those calculated with the tension–compression asymmetry and the Bauschinger effect correctly reproduced.
Keywords:B  Constitutive behavior  B  Cyclic loading  C  Mechanical testing  Tension–  compression asymmetry  Bauschinger effect
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