Abstract
The effects of retrogression and re-aging(RRA) heat treatment on the mechanical properties and corrosion resistance of Al-7.95Zn-1.84Mg-0.65Cu aluminum alloy were investigated by hardness and tensile tests, as well as intergranular corrosion and transmission electron microscopy (TEM). The results show that the Al-7.95Zn-1.84Mg-0.65Cu alloy can obtain better hardness than the single-stage peak aging (T6) process after RRA process (120℃/24 h+200℃/10 min+120℃/24 h). At the same time, the tensile strength is 528.37 MPa, with 13.73% elongation and 29.4% increase in strong plastic product. The electrical conductivity is 40.47% IACS, the intergranular corrosion depth is only 59.43 μm, and the exfoliation corrosion grade is EA. The test results of transmission electron microscopy showed that the η' phase with larger size, greater strengthening effect and more obvious contrast is found in the alloy crystal after RRA treatment, and grain boundary precipitates (GBPs) become more discrete and coarser and precipitation-free precipitated zone (PFZ) becomes wider.
Highlights
图 6 不同时效工艺的 Al⁃7.95Zn⁃1.84Mg⁃0.65Cu 合金晶内 TEM 图像
The effects of retrogression and re⁃aging( RRA) heat treatment on the mechanical properties and corro⁃ sion resistance of Al⁃7. 95Zn⁃1. 84Mg⁃0. 65Cu aluminum alloy were investigated by hardness and tensile tests, as well as intergranular corrosion and transmission electron microscopy ( TEM)
The test results of transmission e⁃ lectron microscopy showed that the η′ phase with larger size, greater strengthening effect and more obvious contrast is found in the alloy crystal after RRA treatment, and grain boundary precipitates ( GBPs) become more discrete and coarser and precipitation⁃free precipitated zone ( PFZ) becomes wider
Summary
图 6 不同时效工艺的 Al⁃7.95Zn⁃1.84Mg⁃0.65Cu 合金晶内 TEM 图像 图 8 不同时效工艺的 Al⁃7.95Zn⁃1.84Mg⁃0.65Cu 合金晶界 TEM 图像 通过以上透射电镜观察可以发现,与 T6 时效相 比,RRA 时效处理后的 Al⁃7.95Zn⁃1.84Mg⁃0.65Cu 合 金晶内、晶界的微观组织均存在一些差异,晶内主要 表现为析出尺寸较大、衬度更加明显、强化效应大的 η′相;晶界主要表现为晶界析出相由连续分布转变 成不连续分布,晶界析出相更加粗大以及形成了更 宽的无沉淀析出带( PFZ) 。
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More From: Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
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