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Development of Freeform Fabrication of Metals by Three Dimensional Micro-Welding

机译:三维微焊接技术自由加工金属的开发

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摘要

A newly developed freeform fabrication process named 3D Micro-Welding, which is a combined system of a micro-TIG welding and a layered manufacturing method, is demonstrated. Various refractory alloys such as Inconel, stainless steel, and Invar can be freeformed besides elemental metals like titanium. Small metal beads of ~1 mm in diameter are formed by emitting micro arc to the top of a thin metal wire of 0.2mm diameter. A fused bead is welded to a metal substrate or previously formed beads. By continuing this process and building up beads layer by layer under the control of CAD/CAM system, 3D objects were produced. In this study, optimization of micro-welding parameters such as the waveform of pulsed arc current and electrode materials were investigated and simple 3D objects of Inconel 600, SUS 304, Invar 42 were formed. The interfaces between adjacent beads were joined well and no crack or pore existed in the formed objects. The density and Vickers hardness of Inconel 600 objects showed comparable values to the commercial Inconel alloy, however the yield strength and Young's modulus was about 80% and 70% of that alloy, respectively.
机译:演示了一种新开发的称为3D Micro-Welding的自由形式制造工艺,该工艺是micro-TIG焊接和分层制造方法的组合系统。除钛之类的元素金属外,各种耐火合金(如因科镍合金,不锈钢和因瓦合金)均可自由成形。通过向直径为0.2mm的细金属线的顶部发射微弧,形成直径约为1mm的小金属珠。将熔化的焊珠焊接到金属基材或预先形成的焊珠上。通过继续该过程并在CAD / CAM系统的控制下逐层构建小珠,就可以制作3D对象。在这项研究中,研究了微焊接参数的优化,例如脉冲电弧电流的波形和电极材料,并形成了Inconel 600,SUS 304,Invar 42的简单3D对象。相邻的小珠之间的界面连接良好,并且在形成的物体中不存在裂纹或孔隙。 Inconel 600物体的密度和维氏硬度显示出与市售Inconel合金相当的值,但是屈服强度和杨氏模量分别约为该合金的80%和70%。

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