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Micro laser metal wire deposition for additive manufacturing of thin-walled structures

机译:微激光金属丝沉积,用于增材制造薄壁结构

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In this work, the micro laser metal wire deposition (mu LMWD) process is studied as an additive manufacturing process for manufacturing thin walled structures with high aspect ratio. The developed mu LMWD system consisted of a flash-pumped Nd:YAG laser source operating with ms-long pulses and an in-house developed wire feeding system. Processing conditions were investigated for single and multi-layer deposition in terms of geometry, microhardness and material use efficiency. Thin-walled structures with aspect ratio up to 20 were manufactured successfully, where layer width was between 700 and 800 mu m. In multi-layer deposition conditions, the material use efficiency was observed to be close to 100%. The microhardness over the build direction was homogenous. The results show that the mu LMWD process yields geometrical resolution close to powder-bed additive manufacturing processes, while maintaining the benefits of using wire feedstock. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,微激光金属线沉积(mu LMWD)工艺被研究为增材制造工艺,用于制造高纵横比的薄壁结构。研发的mu LMWD系统由一个以ms毫秒长的脉冲工作的Np:YAG闪光灯泵浦激光源和一个内部研发的送丝系统组成。研究了单层和多层沉积的加工条件,包括几何形状,显微硬度和材料使用效率。成功制造了纵横比高达20的薄壁结构,其层宽在700至800微米之间。在多层沉积条件下,观察到材料使用效率接近100%。在构建方向上的显微硬度是均匀的。结果表明,mu LMWD工艺产生的几何分辨率接近粉末床增材制造工艺,同时保持了使用线材给料的好处。 (C)2017 Elsevier Ltd.保留所有权利。

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