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微量Cr和Pr复合添加对超高强度Al-Zn-Mg-Cu-Zr合金微观组织、力学性能及腐蚀行为的影响

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.

作者信息

Wang Ming, Huang Lanping, Chen Kanghua, Liu Wensheng

机构信息

State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China.

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.

出版信息

Micron. 2018 Jan;104:80-88. doi: 10.1016/j.micron.2017.10.008. Epub 2017 Oct 26.

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.

摘要

本工作聚焦于通过微量Cr(0.1wt.%)和Pr(0.14wt.%)的复合添加来控制超高强度Al-8.6Zn-2.5Mg-2.2Cu-0.16Zr(重量百分比)合金中的晶界结构,并评估该合金在峰值时效状态下的力学性能和局部腐蚀行为。微量Cr和Pr的引入导致形成纳米级含Cr、Pr的AlZr和含Zr的PrCrAl弥散相,它们能显著抑制超高强度Al-Zn-Mg-Cu合金的再结晶和亚晶粒长大,并保留以小角度晶界为主的形变恢复微观结构。尺寸为10-35nm的近似椭球形弥散相离散分布,在小角度晶界中几乎不形成无析出区。这种新型合金成分表现出更好的综合性能,在强度、延展性和断裂韧性未受损的情况下,对应力腐蚀、剥落腐蚀和晶间腐蚀具有更高的抗性。

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