Influence of rolling temperature on microstructural evolution and mechanical behavior of AZ31 alloy with accumulative roll bonding

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Author(s)

  • Xixin Rao
  • Yunpeng Wu
  • Xiaobing Pei
  • Yuhai Jing
  • Lan Luo
  • Yong Liu

Detail(s)

Original languageEnglish
Pages (from-to)112-120
Journal / PublicationMaterials Science and Engineering A
Volume754
Online published13 Mar 2019
Publication statusPublished - 29 Apr 2019

Abstract

The effect of rolling temperature on AZ31 alloy with accumulative roll bonding (ARB) had been investigated. The results showed that dynamic recrystallization occurs and forming shear bands in the direction of shear stress, exhibit the shape that width decreases from the surface to the inside when ARB at 450 °C. Strength was increased result by strain hardening after ARB process, with compromise of elongation was attributable to the internal crack. Microhardness was enhanced after ARB, while decreasing with the increase rolling temperature. Because of the formation of shear band, microhardness of outer plate was lower than inner plate. Interface bonding strength was increased by improving ARB temperature. Interface bonding is a process in which dynamic recrystallization occurs on both sides of the interface, fine recrystallized grains constantly swallowed and replace the original grains until the interface is annihilated. Crack initiation in shear band and extends along the shear band.

Research Area(s)

  • Accumulative roll bonding, Crack, Interface bonding, Magnesium alloy, Mechanical properties

Citation Format(s)

Influence of rolling temperature on microstructural evolution and mechanical behavior of AZ31 alloy with accumulative roll bonding. / Rao, Xixin; Wu, Yunpeng; Pei, Xiaobing et al.
In: Materials Science and Engineering A, Vol. 754, 29.04.2019, p. 112-120.

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review