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Formabllity and Grained Structure Refinement of Cold-Rolled Friction Stir Welded AA5754 Sheet

机译:冷轧摩擦搅拌焊接焊接AA5754板材的基础蜂鸣和粒化结构细化

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Among different welding techniques currently available in the market,friction stir welding(FSW)is surely considered as an effective and reliable joining technique.Friction stir welds are characterized by lack of voids,cracks and distortions,as the technique does not involve any material fusion.The grained structure of the weld joint is generally finer than the base material.In particular,the nugget zone(NZ)experiences a dynamic recrystallization process during FSW that generally guarantees a stable very-fine grained structure.In the present study,the effect of cold rolling(CR)on the formability limits,the resulted microstructure,and mechanical response of FSW but joint was investigated.To this purpose,an AA5754 aluminium alloy was used.The FSW was performed with rotational and welding speeds equal to 1200 rpm and 100 mm/min,respectively,and an initial tool sinking of 0.1 mm.Strips extracted from the FSWed sheets were CR,with the rolling direction perpendicular to the welding line.Two setups were used in the CR experiments.One,conventional to determine the formability limit of the FSW AA5754 sheet;a second one performed in a CR set-up designed to induce an equivalent strain ε ~ 1,in a single passage through the CR gage.This was aimed to make the post-FSW CR able to induce a further grained structure reduction within the NZ.
机译:在市场上目前可用的不同焊接技术中,摩擦搅拌焊接(FSW)肯定被认为是一种有效可靠的接合技术。搅拌焊缝的特征在于缺乏空隙,裂缝和畸变,因为该技术不涉及任何材料融合。焊接接头的颗粒结构通常比基材更精细。特别地,块区(NZ)在FSW期间经历动态再结晶过程,通常保证稳定的非常细细粒结构。在本研究中,效果在可成形性限制上的冷轧(Cr),得到了FSW的微观结构和机械响应,但接头进行了研究。为此目的,使用AA5754铝合金。使用旋转和焊接速度等于1200rpm进行FSW进行FSW进行。分别为100mm / min,初始工具下沉为0.1 mm.strips从FSWED纸张中提取的滚动,垂直于焊接线的滚动方向。它们在CR实验中使用ETUP。常规以确定FSW AA5754片材的可成形性极限;在CR设定中执行的第二个,其设计用于通过CR计量的单个通道诱导等效应变ε〜1。这一目标是使FSW CR能够在NZ中引起进一步粒度的结构减少。

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