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Author:

Sun, Cui Cui (Sun, Cui Cui.) | Liu, Ke (Liu, Ke.) (Scholars:刘克) | Du, Wen Bo (Du, Wen Bo.) (Scholars:杜文博) | Zhou, Ji Xue (Zhou, Ji Xue.) | Yang, Yuan Sheng (Yang, Yuan Sheng.)

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Abstract:

The microstructure evolution of the Mg-4.5Zn-0.75Er alloy containing quasicrystalline phase (I-phase) during heat treatment and hot compression was investigated by means of optical microscopy (OM), scanning electron microscopy (SEM), X-ray diffraction (XRD) and transmission electron microscopy (TEM). It was found that the as-cast alloys mainly consisted of α-Mg matrix and I-phase. The I-phase with different morphologies could be found at both matrix and interdentritic boundaries. The I-phase almost dissolved into the matrix at 460oC, meanwhile, some magnesium-rare earth phase (Mg-Er phase) was precipitated and the volume fraction increased with prolonging the solid solution time. The true stress-strain curve obtained from the hot compression test showed the flow stress first increased to a maximum and then decreased to a steady state. It indicated that the dynamic competition took place between the working hardening and working softening during hot compression. Moreover, the main deformation mechanism was twining at strain of 0.08 for the as-solution alloy; with the increase of the strain, dynamic recrystallization (DRX) grains appeared at original grains and twins boundaries. Lots of nano-scale I-phase which pined and hindered dislocation precipitated within the matrix during hot compression process. © 2017 Trans Tech Publications, Switzerland.

Keyword:

Dynamic recrystallization Hot pressing Solid solutions Nanotechnology Magnesium alloys Ternary alloys Zinc alloys Binary alloys Rare earths High resolution transmission electron microscopy Stress-strain curves Zinc metallography Hot working Microstructure Erbium alloys Scanning electron microscopy Compression testing Magnesium metallography

Author Community:

  • [ 1 ] [Sun, Cui Cui]Shandong Key laboratory for High Strength Lightweight metallic Materials, Advanced Material Institute, Shandong Academy of Science, Jinan, China
  • [ 2 ] [Sun, Cui Cui]Shandong Engineering Research Center for Lightweight Automobiles Magnesium Alloys, Advanced Materials Institute, Shandong Academy of Science, Jinan, China
  • [ 3 ] [Liu, Ke]College of Materials Science and Engineering, Beijing University of Technology, Beijing, China
  • [ 4 ] [Du, Wen Bo]College of Materials Science and Engineering, Beijing University of Technology, Beijing, China
  • [ 5 ] [Zhou, Ji Xue]Shandong Key laboratory for High Strength Lightweight metallic Materials, Advanced Material Institute, Shandong Academy of Science, Jinan, China
  • [ 6 ] [Zhou, Ji Xue]Shandong Engineering Research Center for Lightweight Automobiles Magnesium Alloys, Advanced Materials Institute, Shandong Academy of Science, Jinan, China
  • [ 7 ] [Yang, Yuan Sheng]Institute of Metal Research, Chinese Academy of Sciences, Shenyang, China

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ISSN: 0255-5476

Year: 2017

Volume: 898 MSF

Page: 144-152

Language: English

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 8

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