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Vision based real-time monitoring and control of metal transfer in laser enhanced gas metal arc welding.

机译:基于视觉的激光增强气体金属电弧焊中金属转移的实时监控。

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摘要

Laser enhanced gas metal arc welding (GMAW) is a novel welding process where a laser is applied to provide an auxiliary detaching force to help detach the droplet such that welds may be made in gas tungsten arc welding high quality at GMAW high speeds. The current needed to generate the electromagnetic (detaching) force is thus reduced. The reduction in the current helps reduce the impact on the weld pool and over-heat fumes/smokes. However, in the previous studies, a continuous laser is applied. Since the auxiliary is only needed each time the droplet needs to be detached and the detachment time is relatively short in the transfer cycle, the laser energy is greatly wasted in the rest of the transfer cycle. In addition, the unnecessary application of the laser on the droplet causes additional over-heat fumes. Hence, this study proposes to use a pulsed laser such that the peak pulse is applied only when the droplet is ready to detach. To this end, the state of the droplet development needs to be closely monitored in real-time. Since the metal transfer is an ultra-high speed process and the most reliable method to monitor should be based on visual feedback, a high imaging system has been proposed to monitor the real-time development of the droplet. A high-speed image processing system has been developed to real-time extract the developing droplet. A closed-loop control system has been established to use the real-time imaging processing result on the monitoring of the developing droplet to determine if the laser peak pulse needs to be applied. Experiments verified the effectiveness of the proposed methods and established system. A controlled novel process -- pulsed laser-enhanced GMAW - is thus established for possible applications in producing high-quality welds at GMAW speeds.;KEYWORDS: GMAW, Laser, Metal Transfer, Machine Vision, Real-Time.
机译:激光增强气体金属电弧焊(GMAW)是一种新颖的焊接工艺,其中应用激光以提供辅助分离力以帮助分离熔滴,从而可以在GMAW高速下以高质量的气体钨极电弧焊进行焊接。因此,减小了产生电磁(分离)力所需的电流。电流的减少有助于减少对焊池和过热烟气/烟的影响。但是,在先前的研究中,使用了连续激光。由于仅在每次需要分离液滴时才需要辅助装置,并且在传输周期中分离时间相对较短,因此在其余的传输周期中大大浪费了激光能量。另外,在液滴上不必要地施加激光会导致额外的过热烟雾。因此,本研究建议使用脉冲激光,以便仅在液滴准备分离时才施加峰值脉冲。为此,需要实时监控液滴的形成状态。由于金属转移是超高速过程,并且最可靠的监测方法应基于视觉反馈,因此提出了一种高成像系统来监测液滴的实时显影。已经开发了高速图像处理系统以实时提取显影液滴。已经建立了一种闭环控制系统,以将实时成像处理结果用于监视显影液滴,以确定是否需要施加激光峰值脉冲。实验验证了所提方法和建立系统的有效性。因此,建立了一种受控的新颖工艺-脉冲激光增强GMAW-以可能以其以GMAW速度生产高质量焊缝的应用。关键词:GMAW,激光,金属转移,机器视觉,实时。

著录项

  • 作者

    Shao, Yan.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Engineering Electronics and Electrical.;Engineering General.;Engineering Computer.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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