32.3Cu47.6Ni7.9Zr12.2 and Ti31.6Cu48.2Ni7.7Zr12.5 BMGs have the plastic of 0.7% and 0.2%; however, the fracture mechanism of Ti30Cu49.5Ni7.2Zr13.3 and Ti28.55Cu50.7Ni6.75Zr14 BMGs are the similar brittle fracture. For the Ti-Cu-Ni-Zr BMGs, the greater the plastic deformation is, the more the number of the shear bands are, the greater the depth are, and vice versa. In addition, for the plastic materials, when the amplitude of the serrated flow is the larger, the depth of the surface shear bands is more larger; and vice versa. For the approximate brittle materials, the serrated flow corresponds to the initiation of the second shear band; and for the completely brittle materials, the phenomenon of serrated flow is not found in the stress-strain curves, however, the shear bands were not found on the surface of the sample."/>
[Li Peiyou. Glass forming ability and mechanical properties in Ti-Cu-based bulk metallic glasses[J]. Rare Metal Materials and Engineering,2018,47(2):509~514.]
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