Title of article
Temperature dependency of mechanical behavior and strain rate sensitivity of an Al–Mg alloy with bimodal grain size
Author/Authors
Magee، نويسنده , , Andrew C. and Ladani، نويسنده , , Leila، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
8
From page
276
To page
283
Abstract
An Al 5083 alloy with an ultrafine grained/coarse grained bimodal has been shown to exhibit greatly improved strength when compared to conventional Al alloys. Its properties have also been observed to be sensitive to strain rate, anisotropy, and coarse grain ratio. This work studies how temperature affects this materialʹs properties, as well as how it modifies the effects of the previously studied parameters, through uniaxial tensile tests at temperatures up to 473 K (200 °C) and microscopic examination of the specimens and their failure surfaces. It was found that the strength of the material decreased rapidly with increasing temperature such that at the highest test temperature, the bimodal material actually exhibited lower strength than conventional Al 5083 at the same temperature. No significant grain growth due to temperature effects was observed. The strain rate sensitivity exponent was found to have a non-monotonic dependence on temperature with negative values at room temperature which increased to positive value at 383 K (110 °C) and decreased to a negative value again at 473 K (200 °C). Anisotropic effects were noted both in the materialʹs properties and in the texture of its fracture surface. Dynamic recovery was observed in the higher temperature tests and the amount of recovery was found to be affected by the materialʹs coarse grain ratio.
Keywords
Bimodal grain size , Al–Mg , strain rate sensitivity , mechanical testing
Journal title
MATERIALS SCIENCE & ENGINEERING: A
Serial Year
2013
Journal title
MATERIALS SCIENCE & ENGINEERING: A
Record number
2173843
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