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The Effect of Diode Laser Beam Shape and Traverse Direction on the Direct Metal Deposition Process

机译:二极管激光束形状和横向方向对直接金属沉积工艺的影响

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The use of CO{sub}2 and Nd:YAG lasers for Direct Metal Deposition (DMD) has mainly focussed on using a circular laser beam. However, the use of the more energy efficient high powered diode laser (HPDL) allows multiple layer cladding to be performed with a rectangular beam, traversed at different angles to the fast axis, or with a circular beam with even intensity distribution. These factors may all have an advantage, so there is a need to investigate the effect that they have on the process and final product characteristics. This paper reports such an investigation. The dimensions, microstructure, surface finish and hardness of multiple layer walls produced using a 1.5 kW HPDL and 316L stainless steel powder produced using rectangular and circular beams under a range of conditions are compared. Results show little difference in the microstructural and physical properties due to beam shape or traverse direction, but track dimensions are dependent on beam geometry. Wall width is particularly dependent on beam size orthogonal to the traverse direction. Fibre coupling seems to provide a benefit if even thin wall dimensions are required, while using the rectangular beam provides advantages for bulk material addition.
机译:用于直接金属沉积(DMD)的CO {SUB} 2和ND:YAG激光器主要集中在使用圆激光束上。然而,使用更节能的高功率二极管激光器(HPDL)允许用矩形梁执行多层包层,以与快速轴线的不同角度横穿,或者具有甚至强度分布的圆形光束。这些因素可能都具有优势,因此需要研究它们对过程和最终产品特性的影响。本文报告了这样的调查。使用1.5 kW HPDL和316L不锈钢粉末制备的多层壁的尺寸,微观结构,表面光洁度和使用矩形和圆形梁在一系列条件下产生的多层壁。结果表明由于梁形状或横向方向,微观结构和物理性质的差异很小,但轨道尺寸取决于梁几何形状。壁宽特别依赖于与横向方向正交的光束尺寸。如果需要薄壁尺寸,光纤耦合似乎提供了一种益处,而使用矩形光束的同时为散装材料添加提供优势。

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