Optimization of GMAW Processes in Robotic Welding: A Case Study from Automotive Manufacturing

Krishna Mohan Kumar, Siddharth, Vimlesh Kumar Ojha
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Abstract

The optimization of Gas Metal Arc Welding (GMAW) processes in robotic welding has become crucial for enhancing efficiency and quality in automotive manufacturing. This paper explores the integration of advanced robotic welding technologies, focusing on the use of the KUKA KR8 L8 Arc HW robot in GMAW applications. By leveraging artificial intelligence and sensor integration, this study demonstrates significant improvements in welding precision and process stability. Key advancements include the use of geometric and process sensors for real-time adaptive control, and the implementation of Fronius CMT for superior arc control and penetration. Detailed case studies from automotive manufacturing illustrate the practical benefits of these technologies, showcasing enhanced productivity, reduced cycle times, and improved weld quality. The findings underscore the importance of continuous innovation and optimization in robotic welding processes to meet the evolving demands of the automotive industry.
优化机器人焊接中的 GMAW 工艺:汽车制造案例研究
在机器人焊接中优化气体金属弧焊(GMAW)工艺对于提高汽车制造的效率和质量至关重要。本文探讨了先进机器人焊接技术的集成,重点是库卡 KR8 L8 Arc HW 机器人在 GMAW 应用中的使用。通过利用人工智能和传感器集成,本研究展示了焊接精度和工艺稳定性的显著改善。主要进步包括使用几何和过程传感器进行实时自适应控制,以及采用 Fronius CMT 实现出色的电弧控制和穿透。来自汽车制造业的详细案例研究说明了这些技术的实际效益,展示了提高生产率、缩短周期时间和改善焊接质量的效果。研究结果强调了持续创新和优化机器人焊接工艺以满足汽车行业不断发展的需求的重要性。
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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