Acta Metallurgica Sinica (English Letters) ›› 2016, Vol. 29 ›› Issue (2): 163-172.DOI: 10.1007/s40195-016-0373-6
Special Issue: 2016-2017镁合金虚拟专辑
• Orginal Article • Previous Articles Next Articles
Ying Yan1, Wan-Peng Deng1, Zhan-Feng Gao1, Jing Zhu1,2, Zhong-Jun Wang2, Xiao-Wu Li1,3()
Received:
2015-10-26
Revised:
2016-02-05
Online:
2016-02-05
Published:
2016-02-20
Ying Yan, Wan-Peng Deng, Zhan-Feng Gao, Jing Zhu, Zhong-Jun Wang, Xiao-Wu Li. Coupled Influence of Temperature and Strain Rate on Tensile Deformation Characteristics of Hot-Extruded AZ31 Magnesium Alloy[J]. Acta Metallurgica Sinica (English Letters), 2016, 29(2): 163-172.
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Fig. 2 Tensile true stress-strain curves of AZ31 Mg alloy at various temperatures, respectively, at the strain rates ofa 10-4 s-1, b 10-3 s-1, c 10-2 s-1
Fig. 3 Tensile true stress-strain curves of AZ31 Mg alloy at different strain rates and different temperatures: a 298 K and 373 K; b 423 K; c 473 K; d 523 K
Fig. 5 Low-magnification SEM images of the surface deformation features for AZ31 Mg alloy deformed at different temperatures and strain rates: a 298 K, 10-4 s-1; b 298 K, 10-2 s-1; c 373 K, 10-4 s-1; d 373 K, 10-2 s-1; e 423 K, 10-4 s-1; f 423 K, 10-2 s-1; g 473 K, 10-4 s-1; h 473 K, 10-2 s-1
Fig. 6 High-magnification SEM images of the surface deformation features for AZ31 Mg alloy deformed at different temperatures and strain rates: a 298 K, 10-4 s-1; b 298 K, 10-2 s-1; c 373 K, 10-4 s-1; d 373 K, 10-2 s-1; e 423 K, 10-4 s-1; f 423 K, 10-2 s-1; g 473 K, 10-4 s-1; h 473 K, 10-2 s-1
Fig. 7 OM images of microstructures for AZ31 Mg alloy tensioned at different temperatures and strain rates: a298 K, 10-4 s-1; b 298 K, 10-3 s-1; c 298 K, 10-2 s-1; d 373 K, 10-4 s-1; e 373 K, 10-3 s-1; f 373 K, 10-2 s-1; g 423 K, 10-4 s-1; h 423 K, 10-3 s-1; i 423 K, 10-2 s-1
Fig. 8 OM images of microstructures for AZ31 Mg alloy tensioned at different temperatures and strain rates: a473 K, 10-4 s-1; b 473 K, 10-3 s-1; c 473 K, 10-2 s-1; d 523 K, 10-4 s-1; e 523 K, 10-2 s-1
Fig. 9 TEM images of microstructures for AZ31 Mg alloy at different states: a as-hot-extruded; b deformed at 298 K and 10-2 s-1; c deformed at 423 K and 10-2 s-1; d deformed at 523 K and 10-2 s-1
Fig. 10 Schematics of the major differences in the deformation and damage features and microstructures on the lateral surfaces near fractures after AZ31 Mg alloy was loaded to tensile rupture at low (10-4 s-1) and high (10-2 s-1) strain rates at different temperatures: a 373 K, 10-4 s-1; b 373 K, 10-2 s-1; c 423 K, 10-4 s-1;d 423 K, 10-2 s-1; e 473 K, 10-4 s-1; f 473 K, 10-2 s-1
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