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Fabrication of ultra-thin nanostructured bimetallic foils by Accumulative Roll Bonding and Asymmetric Rolling

机译:累积辊压结合和不对称辊压制备超薄纳米结构双金属箔

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摘要

This paper reports a new technique that combines the features of Accumulative Roll Bonding (ARB) and Asymmetric Rolling (AR). This technique has been developed to enable production of ultra-thin bimetallic foils. Initially, 1.5 mm thick AA1050 and AA6061 foils were roll-bonded using ARB at 200°C, with 50% reduction. The resulting 1.5 mm bimetallic foil was subsequently thinned to 0.04 mm through four AR passes at room temperature. The speed ratio between the upper and lower AR rolls was 1:1.3. The tensile strength of the bimetallic foil was seen to increase with reduction in thickness. The ductility of the foil was seen to reduce upon decreasing the foil thickness from 1.5 mm to 0.14 mm, but increase upon further reduction in thickness from 0.14 mm to 0.04 mm. The grain size was about 140 nm for the AA6061 layer and 235 nm for the AA1050 layer, after the third AR pass.
机译:本文报告了一种新技术,该技术结合了累积辊压粘合(ARB)和不对称辊压(AR)的功能。已经开发出该技术以能够生产超薄双金属箔。最初,使用ARB在200°C下将1.5 mm厚的AA1050和AA6061箔辊压粘合,压下率降低50%。随后在室温下通过四次AR焊缝将所得的1.5 mm双金属箔薄至0.04 mm。上下AR辊之间的速度比为1:1.3。观察到双金属箔的抗拉强度随着厚度的减小而增加。观察到箔的延展性在箔厚度从1.5mm减小到0.14mm时减小,但是在厚度从0.14mm减小到0.04mm时增加。在第三次AR通过之后,AA6061层的晶粒尺寸约为140 nm,而AA1050层的晶粒尺寸约为235 nm。

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