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Arc Behaviour and Cathode Melting Process during VAR: an Experimental and Numerical Study

机译:var期间电弧行为和阴极熔化过程:实验和数值研究

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The present study aims to understand the melting of the consumable electrode in the VAR process and gain some insight into the influence of an ensemble arc motion on the melting behaviour. In a previous study, a 2D axisymmetric model of the heat transfer in the cathode had been developed. Using the operating parameters as model inputs, it enabled prediction of the melt rate and the evolution of the melting area. Model results were successfully compared to melt rate measurements in an industrial VAR furnace. In recent years, it has been claimed that the electric arc may not be considered as steady and axisymmetric. Our experimental investigation of the luminosity recorded during an actual VAR heat confirms that a transient 3D behaviour may take place. Therefore, a 3D version of the previous model was set up to predict the heat transfer and melting of the electrode, using the unknown ensemble arc motion as an input. The arc is assimilated to a transient distribution of energy flux density. Results evidence that the influence of the arc motion on the shape of the electrode tip can be very important. In industrial practice, the cathode tip usually remains relatively flat during melting. The shapes of the computed electrode tips enable us to propose some arc parameters which remain compatible with both the periodic behaviour of the light emitted and the flatness of the electrode.
机译:本研究旨在了解VAR过程中消耗电极的熔化,并对集成电弧运动对熔化行为的影响有所了解。在先前的研究中,已经开发了阴极中的热传递的2D轴对称模型。使用操作参数作为模型输入,它使能使熔融率的预测和熔化区域的演变。模型结果与工业VUR炉中的熔融速率测量成功。近年来,已声称电弧可能不被认为是稳定和轴对称的。我们对实际VAR热量记录的亮度的实验研究证实了可能发生瞬态3D行为。因此,建立了先前模型的3D版本以使用作为输入的未知集合电弧运动来预测电极的传热和熔化。电弧被同化为能量通量密度的瞬态分布。结果证据表明电弧运动对电极尖端形状的影响非常重要。在工业实践中,阴极尖端通常在熔化过程中保持相对平坦。计算电极提示的形状使我们能够提出一些电弧参数,其与发射的光的周期性和电极的平坦度保持兼容。

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