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Effect of welding speed and electrode extension on the approximate entropy of welding current in short-circuiting GMAW

机译:短路GMAW中焊接速度和电极延伸对焊接电流近似熵的影响

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摘要

Based on the phase space reconstruction of welding current in short-circuiting transfer arc welding under carbon dioxide, the approximate entropy of welding current and its standard deviation have been calculated and analyzed at different welding speeds and different electrode extensions respectively. The experimental and calculated results show that at a certain arc voltage, wire feeding rate and gas flow rate, welding speed and electrode extension have significant effects not only on the approximate entropy of welding current, but also on the stability of welding process. Further analysis proves that when the welding speed and electrode extension are in an appropriate range respectively, the welding current approximate entropy attains maximum and its standard deviation minimum. Just under such circumstances, the welding process is in the most stable state.
机译:基于二氧化碳在短路转移弧焊中焊接电流的相空间重构,分别计算和分析了在不同的焊接速度和不同的电极延伸下,焊接电流的近似熵及其标准偏差。实验和计算结果表明,在一定的电弧电压,送丝速度和气体流量下,焊接速度和焊条延伸不仅对焊接电流的近似熵有很大影响,而且对焊接过程的稳定性也有显着影响。进一步分析证明,当焊接速度和焊条延伸量分别在适当范围内时,焊接电流的近似熵达到最大值,其标准偏差最小。正是在这种情况下,焊接过程才处于最稳定的状态。

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