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Fabrication of Surface Nanocrystalline Aluminum Alloys

机译:表面纳米晶铝合金的制造

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摘要

In the present study, the authors aimed to fabricate surface nanocrystalline aluminum alloys by severe plastic deformation. The surface of the various kinds of aluminum alloy sheets were stirred and highly strained by wire-brushing at ambient temperature. The process was applied to 99.99wt.%A1, commercial purity aluminum (1050 and 1100), Al-Mg alloy (5083) and Al-4wt.%Cu alloy. In all the wire-brushed aluminum alloys, nearly equiaxed nanocrystals with grain sizes ranging from 60 nm to 200 nm were observed at surface regions. In case of the 1050-H24 aluminum, the depth of the surface nanocrystalline layer is about 15 μ m. The wire-brushed sheet of 1100-O 1 mm thick with the surface nanocrystalline structure performed the 0.2% proof stress 1.5 times higher than that of the starting sheet.
机译:在本研究中,作者旨在通过严重的塑性变形来制造表面纳米晶铝合金。搅拌各种铝合金片的表面,并通过在环境温度下刷指刷搅拌和高度应变。将该方法应用于99.99wt%A1,商业纯度铝(1050和1100),Al-Mg合金(5083)和Al-4wt。%Cu合金。在所有焊丝铝合金中,在表面区域观察到具有从60nm至200nm的晶粒尺寸的几乎等轴的纳米晶体。在1050-H24铝的情况下,表面纳米晶层的深度为约15μm。具有表面纳米晶体结构的1100-O 1mm厚的线拉丝片材的0.2%的防尘应力比起始片材高1.5倍。

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