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T6熱處理與冷鍛壓對6063鋁鑄棒性質之影響

The Effect of T6 Heat Treatment and Cold Forging for 6063 Aluminum Casting Bars

摘要


針對鑄造製成之均質化6063鋁合金(代號AR)分別施以T6熱處理(代號T6)、固溶處理經冷鍛壓後進行人工時效(代號T8),與T6熱處理後再進行冷段壓(代號T9)等三種處理加工方式,分析不同熱處理和冷加工後材料之機械性質,探討其顯微組織之相關性及差異性。透過X光非破壞之完整性分析結果顯示,樣品AR、T6材料內部完整性均佳。經熱處理加工後之6063鋁合金(T6、T8、T9),因Mg-Si奈米析出強化相的形成,其強度與硬度大幅提升,延伸率則有所下降。而樣品T8、T9因另外施加冷鍛壓加工,使6063鋁合金強度進一步提升。其中T9熱處理有較完整且連續的固溶和時效流程,因此樣品T9-5%在本研究中具有最高之降伏強度和抗拉強度,相對延伸率略低於其他參數。

關鍵字

6063鋁合金 T6熱處理 冷鍛壓

並列摘要


The homogeneous casting 6063 aluminum alloy (Specimen AR), is treated by three processes, including T6 heat treatment (Specimen T6), solid solution treatment then cold forging and artificial aging (Specimen T8), and T6 heat treatment followed by cold stamping (Specimen T9). The results of the X-ray non-destructive integrity analysis shows that the internal materials of the specimens AR and T6 are complete. The strength and hardness of the heat-treated 6063 aluminum alloy (T6, T8, and T9) increase significantly due to the formation of Mg-Si nano-precipitation strengthening phase, while the elongation decrease. The specimens T8 and T9 are further strengthened by the cold forging process. Among them, T9 heat treatment has a more complete and continuous solid solution and aging process. In this study, sample T9-5% has the highest YS and UTS and the elongation is slightly lower than the other parameters.

參考文獻


J.R. Davis, “ASM specialty handbook: Aluminum and Aluminum Alloys,” ASM International, 2001, pp. 351-353.
“Standard Specification for Aluminum and Aluminum-Alloy Extruded Bars, Rods, Wire, Profiles, and Tube,” ASTM B221-20, 2021, pp. 6-8.
K. Li and M. Song, “Effect of Minor Cu Addition on the Precipitation Sequence of an As Cast Al-Mg-Si 6005 Alloy,” Archives of Metallurgy and Materials, 57(2), 2012, pp. 457-467.
P. H. Ninive, A. Strandlie, S. GulbrandsenDahl, W. Lefebvre, C. D. Marioara, S. J. Andersen, J. Friis, R. Holmestad and O. M. Løvvik, “Detailed Atomistic Insight into the β” Phase in Al-Mg-Si Alloys,” Acta Materialia, 69, 2014, pp. 126-134.
“ASM Handbook, Volume 04 – Heat Treating.” ASM International, Vol. 4, 1991, pp. 673-675.

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