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Processability of high strength Aluminium-Copper alloys AW-2022 and 2024 by Laser Beam Melting in Powder Bed

机译:粉末床中激光束熔化对高强度铝铜合金AW-2022和2024的加工性

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Additive Manufacturing offers geometric freedom excellently suited for topology optimized light weight designs. Ideally these should be produced from materials of high strength to weight ratio such as aluminium-copper alloys. Yet these are considered unsuitable for welding. With Laser Beam Melting of Metals in powder bed (LBM), the only class of aluminium alloys widely processed is that of aluminium-silicon alloys, which are easily weldable and castable, too. In this contribution we present results of LBM high-strength aluminium-copper alloys AW-2022 and AW-2024 under variation of laser power, scan speed and hatch distance. We achieved relative densities well above 99 %. We analyzed thin walls, compared process windows as well as microstructures observed using etched metallographic microsections. We analyzed the chemical constitution of powders and produced samples using ICP-OES.
机译:增材制造提供的几何自由度非常适合拓扑优化的轻型设计。理想地,它们应该由高强度重量比的材料制成,例如铝铜合金。然而,这些被认为不适合焊接。通过粉末床中的金属激光束熔化(LBM),被广泛加工的唯一一类铝合金是铝硅合金,它们也易于焊接和浇铸。在这项贡献中,我们介绍了LBM高强度铝铜合金AW-2022和AW-2024在激光功率,扫描速度和孵化距离变化下的结果。我们获得的相对密度远高于99%。我们分析了薄壁,比较了加工窗口以及使用蚀刻金相显微切片观察到的微观结构。我们使用ICP-OES分析了粉末的化学成分并生产了样品。

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