Laser cladding powder flow field detection system based on ISR optimization algorithm

Yuan Tong, Hongbo Wang, Zhaowen Jin
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Abstract

In coaxial powder feeding laser cladding, the morphology of the powder flow field is crucial for the forming quality. Therefore, this study utilizes high-speed imaging technology and an Image Super Resolution algorithm to create a laser cladding powder flow field detection system that is capable of detecting and tracking powder particles in the laser cladding environment. The experiment shows that the optimized algorithm has significant improvement in structural similarity indicators, with an improvement rate of nearly 11 %. For powder particle tracking, the distance accuracy of the optimized model is 1.5 lower than that of the unimproved model. In addition, by combining with the Kalman filtering algorithm, the tracking effect of powder particles has been further improved. This paper also found a relationship between powder transfer rate and powder utilization rate. In summary, the powder flow field analysis based on visual detection and image processing technology designed in this study can effectively reflect and predict the trend of changes in cladding quality.
基于 ISR 优化算法的激光熔覆粉末流场检测系统
在同轴送粉激光熔覆中,粉末流场的形态对成形质量至关重要。因此,本研究利用高速成像技术和图像超分辨率算法创建了激光熔覆粉末流场检测系统,该系统能够检测和跟踪激光熔覆环境中的粉末颗粒。实验结果表明,优化后的算法在结构相似性指标上有明显改善,改善率接近 11%。在粉末颗粒跟踪方面,优化模型的距离精度比未改进模型低 1.5。此外,通过与卡尔曼滤波算法相结合,进一步提高了粉末颗粒的跟踪效果。本文还发现了粉末转移率与粉末利用率之间的关系。综上所述,本研究设计的基于视觉检测和图像处理技术的粉末流场分析能有效反映和预测覆层质量的变化趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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