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Combining wire and coaxial powder feeding in laser direct metal deposition for rapid prototyping

机译:结合金属丝和同轴粉末进料进行激光直接金属沉积,以快速成型

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摘要

Powder and wire deposition have been used separately in many laser-cladding, rapid prototyping and other additive manufacturing applications. In this paper, a new approach is investigated by simultaneously feeding powder from a coaxial nozzle and wire from an off-axis nozzle into the deposition melt pool. Multilayer parts are built from 316L steel using a 1.5 kW diode laser and different configurations of the powder and wire nozzles are compared in terms of surface roughness, deposition rate, porosity and microstructure. The parts are analysed using scanning electron microscopy (SEM), X-ray diffraction (XRD) and optical microscopy techniques. Results show that deposition efficiency increased and surface roughness decreased with the combined process; some porosity was present in samples produced by this method, but it was 20-30% less than in samples produced by powder alone. Wire injection angles into the melt pool in both horizontal and vertical planes were found to be significant for attaining high deposition efficiency and good surface quality. Reasons for the final sample characteristics and differences between the combined process and the separate powder and wire feeding techniques are discussed. (c) 2005 Elsevier B.V. All rights reserved.
机译:粉末和金属丝沉积已分别用于许多激光熔覆,快速成型和其他增材制造应用中。在本文中,研究了一种新方法,该方法是将同轴喷嘴中的粉末和偏轴喷嘴中的焊丝同时送入沉积熔池中。多层零件由316L钢制成,使用1.5 kW二极管激光器制造,比较了粉末和金属丝喷嘴的不同配置,包括表面粗糙度,沉积速率,孔隙率和微观结构。使用扫描电子显微镜(SEM),X射线衍射(XRD)和光学显微镜技术对零件进行分析。结果表明,组合工艺提高了沉积效率,降低了表面粗糙度。用这种方法生产的样品中存在一些孔隙,但比仅用粉末生产的样品少20-30%。发现在水平和垂直平面上向熔池中的金属丝注入角对于实现高沉积效率和良好的表面质量都是重要的。讨论了最终样品特性的原因以及组合过程与单独的粉末和送丝技术之间的差异。 (c)2005 Elsevier B.V.保留所有权利。

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