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Measurement and Analysis of the Welding Arc Current Density and Pressure Distribution based on Split Anode Method

机译:基于分裂阳极法的焊电弧电流密度和压力分布的测量与分析

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摘要

The distribution characteristics of the current density and arc pressure have an important effect on the welding process. Based on the split anode method, the combined measurement system developed by Beijing University of technology is used to perform high-accuracy data collection of arc current and arc persure. The data is collected from one of the anodes, and some appropriate processes are taken to smooth the data. The distribution characteristics of the arc current density and pressure are obtained by circular segmentation calculation. The tests were carried out on the DC-TIG and DC-plasma by the combined measurement system. The result shows that the current density and the arc pressure increase as the current increasing, the area having the higher current density and arc pressure are also increasing slightly; and the diminution happened on the peak valuation of the current density and arc pressure in the centre while arc length increasing, meanwhile, obvious decrease can be found in the region where current density and arc pressure are high but the distribution radius of the arc extend; although the arc pressure of the plasma arc is obviously larger than the TIG arc, there is no evident impact on the peak valuation of current density in the end of part.
机译:电流密度和电弧压力的分布特性对焊接过程具有重要作用。基于分离阳极方法,北京工业大学开发的组合测量系统用于执行电弧电流和电弧延迟的高精度数据集。从其中一个阳极收集数据,并采取一些适当的进程来平滑数据。通过圆形分割计算获得电弧电流密度和压力的分布特性。通过组合测量系统在DC-TIG和DC等离子体上进行测试。结果表明,电流密度和电弧压力随着电流的增加而增加,具有较高电流密度和电弧压力的区域略有增加;并且在电流长度增加的电流密度和电弧压力下的电流密度和电弧压力的峰值估值发生的升高发生在电流密度和电弧压力高但电弧的分布半径延伸的区域中可以找到明显的降低;虽然等离子体弧的电弧压力明显大于TIG弧,但对部件末端的电流密度的峰值估值没有明显的影响。

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