Deformation in the γ-Mg17Al12 phase at 25-278 °C

被引:53
|
作者
Mathur, H. N. [1 ]
Maier-Kiener, V. [2 ,3 ]
Korte-Kerzel, S. [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Phys Met & Met Phys, D-52056 Aachen, Germany
[2] Austrian Acad Sci, Erich Schmid Inst Mat Sci, Jahnstr 12, A-8700 Leoben, Austria
[3] Mt Univ Leoben, Dept Phys Met & Mat Testing, Roseggerstr 12, A-8700 Leoben, Austria
基金
欧洲研究理事会;
关键词
Plasticity; Nanoindentation; Deformation mechanisms; Intermetallics; MG; NANOINDENTATION; DIFFUSION; HARDNESS; INDENTATION; MG17AL12; SURFACE; CREEP;
D O I
10.1016/j.actamat.2016.05.001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The complex metallic phase gamma-Mg17Al12 is found in most Mg-Al alloys, however, its mechanical properties are largely unknown. Here, its deformation at 25-278 degrees C is studied using several instrumented indentation methods (quasi-static, rate jump and stress relaxation) in conjunction with atomic force and electron microscopy. Two distinct deformation regimes with a transition around 150 degrees C are identified by all techniques. Serrated flow, slip steps and weak thermal activation characterise the low temperature regime, while homogeneous flow in terms of both load-displacement data and distribution of dislocations is seen above 150 degrees C. The results are discussed in terms of the underlying deformation mechanisms and the role of thermal activation. The transition from lattice or solute diffusion controlled, serrated flow to homogeneous flow is consistent with the onset of dislocation climb. Preliminary observations by TEM are in agreement with expectations based on gamma surface calculations in the literature. The comprehensive use of different instrumented indentation and microscopy techniques facilitates a complementary and consistent characterisation and has allowed us to extend the insights from previous studies at high temperatures across the transition to the low temperature deformation regime. This is essential to unravel the role of Mg17Al12 as a load-bearing phase in technical alloys and the effect of its complex crystal structure on plasticity. (C) 2016 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:221 / 229
页数:9
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