論文

査読有り 責任著者
2021年10月28日

Characterization of the Strain-Rate-Dependent Plasticity of Alloys Using Instrumented Indentation Tests

Crystals
  • Ta-Te Chen
  • ,
  • Ikumu Watanabe
  • ,
  • Tatsuya Funazuka

11
11
開始ページ
1316
終了ページ
1316
記述言語
掲載種別
研究論文(学術雑誌)
DOI
10.3390/cryst11111316
出版者・発行元
MDPI AG

Instrumented indentation tests are an efficient approach for the characterization of stress–strain curves instead of tensile or compression tests and have recently been applied for the evaluation of mechanical properties at elevated temperatures. In high-temperature tests, the rate dependence of the applied load appears to be dominant. In this study, the strain-rate-dependent plasticity in instrumented indentation tests at high temperatures was characterized through the assimilation of experiments with a simulation model. Accordingly, a simple constitutive model of strain-rate-dependent plasticity was defined, and the material constants were determined to minimize the difference between the experimental results and the corresponding simulations at a constant high temperature. Finite element simulations using a few estimated mechanical properties were compared with the corresponding experiments in compression tests at the same temperature for the validation of the estimated material responses. The constitutive model and determined material constants can reproduce the strain-rate-dependent material behavior under various loading speeds in instrumented indentation tests; however, the load level of computational simulations is lower than those of the experiments in the compression tests. These results indicate that the local mechanical responses evaluated in the instrumented indentation tests were not consistent with the bulk responses in the compression tests at high temperature. Consequently, the bulk properties were not able to be characterized using instrumented indentation tests at high temperature because of the scale effect.

リンク情報
DOI
https://doi.org/10.3390/cryst11111316
URL
https://www.mdpi.com/2073-4352/11/11/1316/pdf
ID情報
  • DOI : 10.3390/cryst11111316
  • eISSN : 2073-4352
  • ORCIDのPut Code : 102424080

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