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Analysis on the droplet transfer control of arc welding

机译:电弧焊熔滴传递控制分析

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摘要

It is important to get stable arc and droplet transferring in arc welding such as MIG and CO_2 protecting welding because the stability of welding process have great influences on the weld bead formation and weld defect. However, researchers have different opinions on that. Some researchers believe that one pulse one droplet is the best, others think that one pulse multi-droplet can also provide satisfy weld. This paper systemically analyzes the reasons for that and provides an overview result of the transferring modes based on that. The result shows that both methods have its application fields and one pulse one droplet is more widely used in the world. Furthermore, different methods for testing and controlling of the droplet transfer mode are given in the paper. Electrical signal, sound signal, light signal and spectral signal and magnetic signal are the most widely used methods. Based on the electrical signal and spectrum signal, the paper analyzes the theory of the methods and provides the advantages and disadvantages of the methods. In order to get enough information from the signal, all the study is based on mathematic methods such as fourier series and wavelet methods. It is found that the methods with spectral signal as the control base have promising future application fields. The spectral signal can give better signal quality with low noise rate than others and it can also provide abundant information of the welding process. All the process above can be verified by the synchronization high-speed video testing system. At last, the paper points out the future applications of the different methods in automatic producing line.
机译:重要的是,在电弧焊(例如MIG和CO_2保护焊)中获得稳定的电弧和熔滴转移非常重要,因为焊接过程的稳定性会严重影响焊缝的形成和焊缝缺陷。但是,研究人员对此有不同的看法。一些研究人员认为,一个脉冲一滴是最好的,而另一些研究人员则认为一个脉冲多滴也可以提供令人满意的焊接效果。本文系统地分析了造成这种情况的原因,并在此基础上概述了转移模式。结果表明,这两种方法都有其应用领域,在世界范围内,一脉冲一液滴的应用更为广泛。此外,在本文中给出了用于测试和控制液滴转移模式的不同方法。电信号,声音信号,光信号以及频谱信号和磁信号是使用最广泛的方法。基于电信号和频谱信号,分析了该方法的原理,并给出了方法的优缺点。为了从信号中获得足够的信息,所有的研究都是基于诸如傅立叶级数和小波方法的数学方法。发现以频谱信号为控制基础的方法具有广阔的应用前景。频谱信号可以提供比其他信号更好的信号质量和较低的噪声率,并且还可以提供丰富的焊接过程信息。同步高速视频测试系统可以验证上述所有过程。最后指出了不同方法在自动生产线中的未来应用。

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