Abstract

A hypoeutectic Zr­Ni­Cu­Al bulk metallic glass (BMG) shows a clear tensile plastic deformation under a high strain rate condition at room temperature. In this study, the effect of cryogenic temperature and strain rate on the tensile plastic deformation behavior of the hypoeutectic Zr­Ni­Cu­Al BMG was investigated. Tensile tests were performed for the hypoeutectic Zr­Ni­Cu­Al BMG specimen with gauge part dimensions of 2.3mm in length and 0.8mm in diameter at cryogenic temperature (133K) under different strain rate conditions (1014 and 1011 s11). As the results, the tensile plastic deformation occurs under both strain rate conditions. Especially, in low strain rate condition (1014 s11), the amount of plastic deformation is clearly larger than that under the high strain rate condition (1011 s11). Furthermore, it was found that there is no positive correlation between the amount of tensile plastic deformation and the number of shear band. In addition, it was inferred that the tensile plastic deformation of the hypoeutectic Zr­Ni­Cu­Al BMG at cryogenic temperature was induced by specimen sliding along only one major shear band. [doi:10.2320/matertrans.M2012102]

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