Casanueva Rosario, Brañas Christian, Diaz F Javier, Azcondo Francisco J, Ferreño Diego, Setien Jesus
Dept. of Electronics Technology, Systems and Automation Engineering. Universidad de Cantabria, Avda. de los Castros, 46. 39005 Santander, Spain.
Laboratory of Science and Engineering of Materials. Universidad de Cantabria, Avda. de los Castros, 44. 39005 Santander, Spain.
Heliyon. 2023 Sep 4;9(9):e19819. doi: 10.1016/j.heliyon.2023.e19819. eCollection 2023 Sep.
This paper presents the characterization of a TIG welding process carried out by means of an arc welding power supply able to provide dc or pulsed current. The arc welding power supply is based on resonant power converters and an FPGA-based control circuit. Dc and multiple pulsed operations up to 1 kHz with different pulse widths have been tested. The operation of the proposed welding power supply has been compared to that of a high-quality commercial welding machine. Regarding performance, the investigated electrical parameters are: power factor, power conversion efficiency and the energy consumption of the process. The radiography and mechanical properties of the welds have been examined. The mechanical properties of the welded joints characterized through tensile tests are the yield stress, tensile strength and the strain under maximum stress. In addition, the impact properties of the joints were determined through Charpy tests and the curves relating energy absorbed and temperature were obtained. The results show an improved performance of the proposed arc welding power supply over the commercial counterpart, with higher efficiency and power factor, as well as lower energy consumption. The yield stress and tensile strength results indicate that the welded plates using pulsed modes with the proposed power supply are comparable to the reference weld performed with dc operation using the commercial welder. Remarkably, it was observed that the ductility of the welded plates using pulsed modes with the proposed power supply outperforms those of the reference weld carried out with dc arc using the commercial welder.
本文介绍了一种采用能够提供直流或脉冲电流的弧焊电源进行的钨极惰性气体保护焊(TIG)工艺的特性。该弧焊电源基于谐振功率变换器和基于现场可编程门阵列(FPGA)的控制电路。已测试了高达1kHz的直流和不同脉冲宽度的多脉冲操作。将所提出的焊接电源的运行情况与一台高质量商用焊接机的运行情况进行了比较。关于性能,所研究的电参数有:功率因数、功率转换效率和该工艺的能耗。已检查了焊缝的射线照相和力学性能。通过拉伸试验表征的焊接接头的力学性能有屈服应力、抗拉强度和最大应力下的应变。此外,通过夏比试验确定了接头的冲击性能,并获得了能量吸收与温度相关的曲线。结果表明,所提出的弧焊电源的性能优于商用同类产品,具有更高的效率和功率因数,以及更低的能耗。屈服应力和抗拉强度结果表明,使用所提出的电源以脉冲模式焊接的板材与使用商用焊机以直流操作进行的参考焊接相当。值得注意的是,观察到使用所提出的电源以脉冲模式焊接的板材的延展性优于使用商用焊机以直流电弧进行的参考焊接。