Department of Electronic Engineering, Campus de Burjassot, Universidad de Valencia, CP 46100 Valencia, Spain.
Ford Spain, Poligono Industrial Ford S/N, Almussafes, CP 46440 Valencia, Spain.
Sensors (Basel). 2022 Nov 1;22(21):8412. doi: 10.3390/s22218412.
Electrode misalignment, produced by mechanical fatigue or bad adjustments of the welding gun, leads to an increase in expulsions, deformations and quality problems of the welding joints. Different studies have focused on evaluations of the influence of a misalignment of the electrodes and the final quality of the weld nugget. However, few studies have focused on determining a misalignment of the electrodes to avoid problems caused by this defect, especially in industrial environments. In this paper, a method for performing the condition monitoring of electrode alignment degradation was developed following previous research, which has shown the relationship between the misalignment of short-circuited electrodes and the magnetic field generated by them. This method was carried out by means of a device capable of measuring the magnetic field. Finally, an integral system for the detection of misalignments in real production lines is presented. This system set behavior thresholds based on the experimentation, allowing the condition monitoring of the alignment after each welding cycle.
电极对中不良,由机械疲劳或焊接枪调整不当引起,会导致焊缝的飞溅增加、变形和质量问题。不同的研究集中在评估电极对中不良和焊接熔核最终质量的影响。然而,很少有研究集中在确定电极对中不良以避免由此缺陷引起的问题上,特别是在工业环境中。在本文中,在先前的研究基础上开发了一种用于监测电极对中劣化的状态监测方法,该方法表明了短路电极的对中不良与它们产生的磁场之间的关系。该方法通过一种能够测量磁场的装置来实现。最后,提出了一种用于在实际生产线中检测对中不良的集成系统。该系统根据实验设置了行为阈值,允许在每个焊接循环后对对准情况进行状态监测。