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Calculating of the Temperature Distribution of Primary Shear Zone in Orthogonal High Speed Cutting Based on the Non-uniform Volume Moving Heat Source

机译:基于非均匀体积移动热源的正交高速切削一次剪切区温度分布计算。

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A method was presented for calculating the temperature distribution of primary shear zone in orthogonal high speed cutting based on the non-uniform volume moving heat source. The temperature distribution of primary shear zone in orthogonal high speed cutting was calculated by the dynamic plastic constitutive relationship and the distribution of strain and strain rate of primary shear zone. The results show that the temperature distribution of primary shear zone is uneven, from the original plane to the cutoff plane, the cutting temperature increases continuously. In the middle of primary shear zone, the change of cutting temperature is larger, at the position near to original plant and cutoff plane, the change of cutting temperature is smaller. The cutting temperature increases with the increase of cutting speed and cutting depth, but decreases with the increase of rake angle. The comparison with existing method shows that the method presented in this paper is not only available, but also simple, convenient and more accord with the fact of orthogonal high speed cutting.
机译:提出了一种基于不均匀体积运动热源的正交高速切削中主剪切区温度分布的计算方法。通过动态塑性本构关系以及主剪切区的应变和应变率分布,计算出正交高速切削中主剪切区的温度分布。结果表明,一次剪切带的温度分布不均匀,从原始平面到截止平面,切割温度不断升高。在一次剪切带的中部,切割温度的变化较大,在接近原始植物和切割面的位置,切割温度的变化较小。切削温度随着切削速度和切削深度的增加而增加,但随着前角的增加而降低。与现有方法的比较表明,本文提出的方法不仅可用,而且简单,方便,更符合正交高速切削的事实。

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