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Selective laser melting of aluminum die-cast alloy-Correlations between process parameters, solidification conditions, and resulting mechanical properties

机译:在工艺参数,凝固条件下的铝压铸合金相关性的选择性激光熔化,并导致机械性能

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摘要

The additive production technology selective laser melting (SLM) is used for direct fabrication of metal-based functional components. SLM is one of the powder-bed based AM technologies. SLM is well established in serial production for dental restoration as well as for tooling. Main concern for industrial application remains the scope of processible materials and resulting mechanical properties. Toward processing of aluminum alloys commercially available systems exist with comparability in terms of applied process parameters and resulting mechanical properties remaining a challenge. Often no data are available concerning process parameters and mechanical properties. This holds especially for high-power SLM systems with increased build rates as a result of extended laser powers of up to 1 kW. Especially when processing aluminum alloys, the solidification conditions significantly affect the resulting microstructure in terms of size of dendrites and grains. Consequently, the present paper systematically investigates and correlates the process parameters (e.g., laser power, scan speed, layer orientation, preheating, etc.) on the microstructure (electron backscatter diffraction and texture) and resultant mechanical properties (hardness, tensile strength, yield strength, and breaking elongation) for aluminum die-cast alloys. At this, underlying phenomena for typically observed anisotropy of mechanical properties in dependence on layer orientation are further specified. (C) 2015 Laser Institute of America.
机译:添加剂生产技术选择性激光熔融(SLM)用于直接制造金属基功能组分。 SLM是基于粉末的AM技术。 SLM在连续生产中建立了很好的牙科修复和工具。产业应用主要关注仍然是可行性材料的范围,并导致机械性能。朝向铝合金加工铝合金以施加工艺参数的可比性存在可商购的系统,并产生留下挑战的机械性能。通常没有任何数据有关进程参数和机械性能。这适用于高功率SLM系统,由于扩展激光功率高达1 kW,具有增加的构建速率。特别是当加工铝合金时,凝固条件在树突和晶粒的尺寸方面显着影响得到的微观结构。因此,本文系统地研究并将过程参数(例如,激光功率,扫描速度,层取向,预热等)上的微观结构(电子反向散射衍射和质地)和所得的机械性能(硬度,拉伸强度,产率)相关联铝压铸合金的强度和断裂伸长率。这样,进一步指定了用于依赖层取向的潜在观察到的机械性能各向异性的基础现象。 (c)2015年激光研究所。

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