激光增强GMAW中的液滴测量

Y. Shao, Zhenzhou Wang, Yuming Zhang
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引用次数: 1

摘要

在最近开发的激光增强气体金属弧焊(GMAW)工艺中,在激光提供的辅助力的帮助下,在相对较低的电流下,熔化的金属液滴可以从电线上分离出来。提高了焊接焊缝的稳定性、弧度和质量。为了与生产率低得多的气体钨极电弧焊(GTAW)在连接精度上竞争,液滴的尺寸可以预先定义和控制,以满足不同应用的要求。为此,开发了图像处理算法来测量激光增强GMAW过程中生长液滴的尺寸。相对较低的对比度,由激光引起的强照明和反射,以及来自电弧的强辐射使得图像的自动处理具有挑战性。对图像进行分析,了解其特征,并设计相应的图像处理和识别算法。特别地,采用基于模型的方法滤除非液滴边缘点,并在极坐标系中引入二阶方程对液滴进行建模。实验结果验证了算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Droplet measurement in laser enhanced GMAW
In the laser enhanced gas metal arc welding (GMAW) process developed recently, droplets of melted metal can be detached from the wire under relatively low currents with the assistance of an auxiliary force provided by a laser. The stability and the arc and the quality of the resultant welds are improved. To compete with the gas tungsten arc welding (GTAW) of the much lower productivity in joining precision, the size of the droplet can be pre-defined and be controlled to meet the requirements from different applications. For this purpose, image processing algorithms are developed to measure the size of a growing droplet during the laser enhanced GMAW process. The relatively low contrast, strong illumination and reflection caused by the laser, and strong radiation from the arc make an automatic processing of the image challenging. Images are analyzed to understand its characteristics and design the image processing and recognition algorithms accordingly. In particular, a model based method is used to filter out non-droplet edge points and a second order equation in the polar coordinate system is introduced to model the droplet. Experimental results verified the effectiveness of the developed algorithms.
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