Abstract

► Subsurface deformation zone of a Zr-based BMG was examined at different temperatures. ► Inter-band spacing increases with increase in temperature. ► Shear band mediated plastic zone remains invariant with temperature. ► Contribution of homogeneous deformation to the total deformation increases with temperature. ► The increased contribution of homogeneous deformation is the reason for increase in pressure sensitivity of BMGs. High temperature bonded interface indentation experiments are carried out on a Zr based bulk metallic glass (BMG) to examine the plastic deformation characteristics in subsurface deformation zone under a Vickers indenter. The results show that the shear bands are semi-circular in shape and propagate in radial direction. At all temperatures the inter-band spacing along the indentation axis is found to increase with increasing distance from the indenter tip. The average shear band spacing monotonically increases with temperature whereas the shear band induced plastic deformation zone is invariant with temperature. These observations are able to explain the increase in pressure sensitive plastic flow of BMGs with temperature.

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