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High-pressure torsion for fabrication of high-strength and high-electrical conductivity Al micro-wires

机译:用于制造高强度和高导电率的铝微丝的高压扭转

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摘要

Iron (Fe) is commonly found in aluminum (Al), but its contents are usually kept as low as possible, because the formation of intermetallic phases may induce fracture. In this study, high-pressure torsion (HPT) was used to control the microstructure in an Al-2 %Fe alloy in conjunction with wire drawing and an aging treatment, in order to improve not only their mechanical properties but also the electrical conductivity. It is shown that HPT processing of ring-shaped samples produced ultrafine grains with a size of ~150 nm in the matrix, while intermetallic phases were fragmented to nanosizes with some Fe fraction dissolved in the matrix. Semi-rings were extracted from the HPT-processed samples and swaged to a round section with 0.4-mm diameter. The HPT-processed sample was successfully drawn to a final diameter of 0.08 mm (25:1 ratio, 96 % reduction in area), whereas the sample without HPT processing failed after drawing to 0.117-mm diameter (12:1 ratio, 91 % reduction in area). The electrical conductivity increased to ~65 IACS % in the HPT-processed rings and to ~54 IACS % in the wires by aging for 1 h after the drawing.
机译:铁(Fe)通常存在于铝(Al)中,但由于金属间相的形成可能引起断裂,因此其含量通常应保持尽可能低。在这项研究中,高压扭力(HPT)与拉丝和时效处理相结合,用于控制Al-2%Fe合金的微观结构,以不仅改善其机械性能,而且改善其导电性。结果表明,环形样品的HPT处理在基体中产生了〜150 nm尺寸的超细晶粒,而金属间相则碎裂成纳米尺寸,其中有部分Fe溶解在基体中。从HPT处理过的样品中提取半环,并锻造成直径为0.4毫米的圆形截面。经HPT处理的样品成功拉制成最终直径为0.08毫米(比率为25:1,面积减少96%),而未经HPT处理的样品拉制成直径为0.117毫米(比率为12:1,比例为91%)失败减少面积)。在拉拔后老化1小时,在经过HPT处理的环中,电导率增加到〜65 IACS%,在电线中增加到〜54 IACS%。

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