Aging behavior of high zinc Al-Zn-Mg-Cu alloy prepared by spray forming
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摘要: 系統研究了噴射成形高鋅Al-Zn-Mg-Cu合金在不同時效處理條件下的顯微組織與力學性能.結果表明自然時效合金在晶界處已析出強化相;單級時效合金隨時效時間的延長,晶內和晶界析出相逐漸粗化;雙級時效合金的析出相進一步粗化,并且晶界析出相為斷續特征;回歸再時效合金具有較細的晶內組織及類似于雙級時效的晶界組織.同時發現,雙級時效合金的抗拉強度比峰時效合金的強度下降了13%左右,而回歸再時效合金的強度優于峰時效合金的強度.Abstract: The microstructure and mechanical properties of high Zn Al-Zn-Mg-Cu aluminum alloys prepared by spray forming technology with different aging treatments were investigated. The results showed that strengthening phases precipitated from grain boundary during natural aging treatment, and with the prolong action of aging time the precipitate phases of single aging alloys grew up gradually. The precipitate phases of double aging alloys got coarsened and the precipitate phases of grain boundary were intermittence. The regression-reaging treated alloys possessed fine grain-interior precipitate phases and the discontinuous grain-boundary phases as the same as those of two-step aging alloys. Compared with peak aging alloys, the ultimate tensile strength (UTS) of two-step aging alloys reduced by about 13%, but UTS of regression-reaging treated alloys excelled that of peak aging alloys.
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