Influence of minor combined addition of Cr and Pr on microstructure, mechanical properties and corrosion behaviors of an ultrahigh strength Al-Zn-Mg-Cu-Zr alloy.

Micron

State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China; Science and Technology on High Strength Structural Materials Laboratory, Central South University, Changsha 410083, China.

Published: January 2018

AI Article Synopsis

  • This study explores how adding trace amounts of chromium (Cr) and praseodymium (Pr) affects the grain boundary structure of an ultra-high strength aluminum alloy.
  • The addition of Cr and Pr results in nanoscale dispersoids that inhibit recrystallization and preserve a favorable microstructure, leading to enhanced mechanical properties.
  • The enhanced alloy shows improved resistance to various types of corrosion while maintaining its strength, ductility, and toughness.

Article Abstract

This work focuses on controlling grain boundary structure in an ultra-high strength Al-8.6Zn-2.5Mg-2.2Cu-0.16Zr (wt.%) alloy by the combined addition of trace Cr (0.1wt.%) and Pr (0.14wt.%), and evaluating mechanical properties and localized corrosion behaviors of the alloy in the peak aged condition. The introduction of trace Cr and Pr leads to the formation of nanoscale Cr, Pr-containing AlZr and Zr-containing PrCrAl dispersoids which can obviously inhibit the recrystallization and sub-grain growth of the super-high strength Al-Zn-Mg-Cu alloys, and retain the deformation-recovery microstructure dominated by low-angle grain boundaries. The nearly ellipsoidal dispersoids with a size of 10-35nm are discretely distributed and precipitate free zones are hardly formed in low-angle grain boundaries. This new alloy composition exhibits better combined properties, higher resistance to stress corrosion, exfoliation corrosion and inter-granular corrosion with the undamaged strength, ductility and fracture toughness.

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Source
http://dx.doi.org/10.1016/j.micron.2017.10.008DOI Listing

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