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Investigating Weldability in Microalloyed Al Alloys

机译:调查微合金化铝合金的焊接性

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Aluminum (Al) alloys, especially the 2xxx series due to high strength to weight ratio have found extensive use in aerospace, marine, and automobile industries. The present research trend is microalloying (wt.% < 0.1) these alloys with trace elements viz. Cd, Sn, Ag, In, etc. For these applications, welding becomes an inevitable technique, which is a tougher challenge for Al alloys, and Friction Stir Welding (FSW) is recently explored. In present work, 2219Al alloy and the same alloy microalloyed with 0.06 wt.% Cd were processed by casting route. They were then welded by FSW and mechanical properties and microstructure of the welded joints were studied. The hardness value increased while the impact toughness decreased due to trace addition of Cd. The microstructural study revealed three zones viz. weld nugget zone (WNZ), thermo mechanically affected zone (TMAZ) and heat affected zone (HAZ), identified by the formation of fine, columnar, and spherical grains, respectively.
机译:铝(Al)合金,特别是由于高强度为重量比的2xxx系列,发现航空航天,海洋和汽车行业广泛使用。 本研究趋势是微合金化(WT。%<0.1)这些具有微量元素的合金。 CD,Sn,Ag,In等。对于这些应用,焊接成为一种必然的技术,这对于Al合金是一种更艰难的挑战,最近探索了摩擦搅拌焊接(FSW)。 在本作工作中,通过铸造途径加工2219Al合金和微合金,用0.06重量%。%CD加工。 然后通过FSW焊接它们,研究了焊接接头的机械性能和微观结构。 由于痕量添加CD,硬度值增加,而冲击韧性降低。 微观结构研究揭示了三个区张。 焊接块区(WNZ),热机械受影响区(TMAZ)和热影响区(HAZ)分别由形成细,柱状和球形颗粒鉴定。

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