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Effect of dual swirling plasma arc cutting parameters on kerf characteristics

机译:双旋流等离子弧切割参数对切缝特性的影响

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摘要

A numerical control 3-D processing system was constituted for dual swirling plasma arc cutting. The effect of cutting energy parameters and operating gases on kerf characteristics was then investigated experimentally, so as to provide a reference for appropriately selecting process parameters to improve cut quality. It is shown that kerf widths reduce, and the bevel angle and the straightness increase with an increase of cutting speed and a decrease of arc current. Moreover, a smaller bevel angle, together with greater straightness and more dross, exhibits on the low speed side of the cut. As the oxygen content of the operating gas decreases, kerf widths decrease and the dross increases, while the bevel angle varies slightly on the high speed side of the cut. For the pure oxygen and pure air processes, the bevel angle on the low speed side and the straightness of cut surface are the smallest, but the pure oxygen cut surface is the roughest due to the occurrence of a saw-like kerf.
机译:构造了用于双涡旋等离子弧切割的数控3-D处理系统。然后通过实验研究了切割能量参数和工作气体对切缝特性的影响,从而为适当选择工艺参数以提高切割质量提供参考。结果表明,随着切削速度的增加和电弧电流的减小,切缝宽度减小,斜角和直线度增加。此外,在切削的低速侧表现出较小的斜角,以及更大的直线度和更多的渣s。随着工作气体中氧气含量的减少,切缝宽度减小,浮渣增加,而斜角在切割的高速侧略有变化。对于纯氧气和纯空气工艺,低速侧的斜角和切割面的平直度最小,但由于出现锯齿状切缝,纯氧气切割面最粗糙。

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