Pringle Adam M, Oberloier Shane, Petsiuk Aliaksei L, Sanders Paul G, Pearce Joshua M
Department of Materials Science & Engineering, Michigan Technological University, Houghton, MI 49931-1295, USA.
Department of Electrical & Computer Engineering, Michigan Technological University, Houghton, MI 49931-1295, USA.
HardwareX. 2020 Sep 2;8:e00137. doi: 10.1016/j.ohx.2020.e00137. eCollection 2020 Oct.
Low-cost high-resolution metal 3-D printing remains elusive for the scientific community. Low-cost gas metal arc wire (GMAW)-based 3-D printing enables wire arc additive manufacturing (WAAM) for near net shape applications, but has limited resolution due to the complexities of the arcing process. To begin to monitor and thus control these complexities, the initial designs of the open source GMAW 3-D printer have evolved to include current and voltage monitoring. Building on this prior work, in this study, the design, fabrication and use of the open source arc analyzer is described. The arc analyzer is a multi-sensor monitoring system for quantifying the processing during WAAM, which includes voltage, current, sound, light intensity, radio frequency, and temperature data outputs. The open source arc analyzer is tested here on aluminum WAAM by varying wire feed rate and measuring the resultant changes in the sensor data. Visual inspection and microstructural analysis of the printed samples looking for the presence of porosity are used as the physical indicators of quality. The value of the sensors was assessed and the most impactful sensors were found to be the light and radio frequency sensors, which showed arc extinction events and a characteristic "good weld" peak frequency.
低成本的高分辨率金属3D打印对科学界来说仍然难以实现。基于低成本气体金属电弧焊丝(GMAW)的3D打印能够实现用于近净形应用的电弧增材制造(WAAM),但由于电弧过程的复杂性,其分辨率有限。为了开始监测并进而控制这些复杂性,开源GMAW 3D打印机的初始设计已发展到包括电流和电压监测。在这项前期工作的基础上,本研究描述了开源电弧分析仪的设计、制造和使用。电弧分析仪是一种多传感器监测系统,用于量化WAAM过程中的加工情况,包括电压、电流、声音、光强度、射频和温度数据输出。在此,通过改变送丝速度并测量传感器数据的相应变化,对开源电弧分析仪在铝WAAM上进行了测试。对打印样品进行目视检查和微观结构分析以寻找孔隙的存在,将其用作质量的物理指标。对传感器的值进行了评估,发现最有影响力的传感器是光传感器和射频传感器,它们显示出电弧熄灭事件和特征性的“良好焊接”峰值频率。