材料力学部門講演会講演論文集
Online ISSN : 2433-1287
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308 5083 アルミニウム合金の高温粘塑性構成式
鳥飼 岳中 哲夫日野 隆太郎岡田 達夫吉田 総仁
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p. 179-180

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Uniaxial tension tests were performed on fine-grain Al-Mg alloy (5083-O) sheets at various forming speeds (5.6×(10)^<-5>S^<-1> to 5.3×(10)^<-1>S^<-1>) at elevated temperatures (473 &acd; 623K). From the tests, it was found that the tensile flow stress is strongly influenced by forming speed and temperature. In order to describe such rate-and temperature-dependent stress-strain responses, a viscoplastic constitutive model is presented. In the mode, we assume that the viscoplastic strain rate consists of two components due to the grain-boundary sliding superplasticity and the ordinary viscoplasticity. The predicted stress-strain responses by this constitutive model are in good agreement with the corresponding experimental results.
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