Thermomechanical instability analysis of inhomogeneous deformation in amorphous alloys

被引:61
作者
Gao, Y. F. [1 ]
Yang, B.
Nieh, T. G.
机构
[1] Univ Tennessee, Dept Mat Sci & Engn, Knoxville, TN 37996 USA
[2] Oak Ridge Natl Lab, Comp Sci & Math Div, Oak Ridge, TN 37831 USA
[3] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA
关键词
metallic glasses; shear bands; thermomechanical constitutive model; linear stability analysis; shear-band spacing;
D O I
10.1016/j.actamat.2006.11.027
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Recent experiments have shown that inhomogeneous deformation in amorphous alloys critically depends on the environmental temperature and the applied strain rate, and that the temperature field inside the shear-band can rise up to the glass transition temperature. A free-volume-based, thermo-viscoplastic constitutive law is developed in which the thermal transport equation includes contributions from the heating from plastic work and the heat conduction. For homogeneous deformation, the instantaneous temperature rise during the strain softening stage can lead to thermal softening and promote the initiation of shear bands. A linear stability analysis is carried out to examine the conditions for the unstable growth of temperature fluctuations. It is found out that the short-wavelength fluctuations, the amplitudes of which would decay at low strain rate and moderately high environmental temperature (but still much lower than the glass transition temperature), become unstable at high strain rate and low temperature, so that the resulting shear-band spacing will be shorter. A deformation mechanism map is constructed to delineate this transition of inhomogeneous deformation from coarse to fine shear-band arrangements. The theoretical results agree well with a nanoindentation experiment where there is varying applied strain rate and environmental temperature and with a microindentation experiment in which the evolution of the effective strain rate during loading influences the spatial distribution of the shear-band spacing observed using the bonded interface technique. (c) 2006 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:2319 / 2327
页数:9
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