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Temperature analysis by moving heat source during plasma arc cutting process: an analytical approach

机译:通过等离子体弧切割过程中移动热源的温度分析:分析方法

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摘要

Purpose - This paper aims to work exhibits the temperature distribution over the surface of the workpiece during plasma arc cutting process. Design/methodology/approach - The moving heat source is taken into consideration for calculating the heat created by plasma arc. The heat is generated at the plasma - liquid metal boundary. The heat of fusion is also considered for estimation because of molten layer separates the plasma and solid layer. This causes to hamper the heat transfer towards the melting front. Eliminating the heat resistance may calculation error at high cutting speed. Power required to melt the material depends on the speed of the cut. Findings - Higher cutting speed increases the power required. The temperature drop over the tayer of molten front increases as the speed of cut increases at higher Peclet number. Different thickness of the molten layer was taken for calculation i.e. zero thickness, 10 and 20 per cent. Originality/value - The estimated results are shown in non-dimensional form. So, the method can be applied for any other types of material.
机译:目的 - 本文旨在在等离子弧切割过程中在工件表面上显示温度分布。设计/方法/方法 - 考虑到移动热源,以计算等离子体弧产生的热量。在等离子体 - 液态金属边界处产生热量。由于熔融层分离等离子体和固体层,还考虑融合的热量。这导致妨碍热传递朝向熔化前面。消除耐热性可以以高切削速度计算误差。熔化材料所需的功率取决于切割的速度。调查结果 - 更高的切割速度会增加所需的功率。随着较高Peclet数在较高的Peclet数下的速度增加,熔融前沿的纺织器的温度降低。熔融层的不同厚度用于计算,即零厚度,10和20%。原创性/值 - 估计结果以非维度形式显示。因此,该方法可以应用于任何其他类型的材料。

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