Acta Metallurgica Sinica (English Letters) ›› 2015, Vol. 28 ›› Issue (11): 1364-1372.DOI: 10.1007/s40195-015-0334-5
• Orginal Article • Previous Articles Next Articles
Ju-Qiang Li, Juan Liu(), Zhen-Shan Cui
Received:
2015-07-06
Revised:
2015-09-29
Online:
2015-11-23
Published:
2015-11-20
Ju-Qiang Li, Juan Liu, Zhen-Shan Cui. Hot Deformation Stability of Extruded AZ61 Magnesium Alloy Using Different Instability Criteria[J]. Acta Metallurgica Sinica (English Letters), 2015, 28(11): 1364-1372.
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Fig. 2 True stress versus true strain curves of extruded AZ61 magnesium alloy corrected for the friction at 0.001 s-1 a, 0.01 s-1 b, 0.1 s-1 c, 1 s-1 d
Fig. 3 3D instability maps developed according to Jonas’ criterion a, Semiatin’s criterion b, Prasad’s criterion c, Murty’s criterion d, Gegel’s criteria e, Alexander’s criteria f
Simulation parameter | Value |
---|---|
Young’s modulus (MPa) | 43,000 |
Poisson’s ratio | 0.35 |
Thermal conductivity [W/(m K)] | 79.55 |
Heat capacity [kJ/(kg K)] | 1.21 |
Friction coefficient between specimen and die | 0.2 |
Heat transfer coefficient between specimen and die [W/(m2 K)] | 1100 |
Heat transfer coefficient between specimen and air (W/m2 K) | 20 |
Emissivity | 0.1 |
Table 1 Simulation parameters
Simulation parameter | Value |
---|---|
Young’s modulus (MPa) | 43,000 |
Poisson’s ratio | 0.35 |
Thermal conductivity [W/(m K)] | 79.55 |
Heat capacity [kJ/(kg K)] | 1.21 |
Friction coefficient between specimen and die | 0.2 |
Heat transfer coefficient between specimen and die [W/(m2 K)] | 1100 |
Heat transfer coefficient between specimen and air (W/m2 K) | 20 |
Emissivity | 0.1 |
Fig. 4 Effective strain distributions under the temperature of 300 °C and strain rate of 0.1 s-1 at strokes of: a 3.20 mm, b 5.72 mm, c 7.70 mm, d 9.48 mm
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