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Research on Adiabatic Shear during Serrated Chip Formation of High Speed Turning of Hardened Steel

机译:高速钢锯齿状芯片形成期间绝热剪切研究

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The development of chip morphology, critical cutting condition of adiabatic shear during serrated chip formation and cutting forces were observed and measured by high speed turning experiment for 30CrNi3MoV hardened steel. Results show that the cutting speed and rake angle are leading factors to influence chip morphology and cutting forces. With the increase of cutting speed, the continuous band chip transforms into serrated chip at a certain critical value. As the rake angle is changed from positive to negative, the critical cutting speed of adiabatic shear significantly decreases, the cutting forces abruptly reduces when the serrated chip forms. The results from predicting critical cutting speed using the critical cutting condition criterion of adiabatic shear in metal cutting process show that the leading reason of serrated chip formation is that the adiabatic shear fracture repeatedly occurs in the primary shear zone.
机译:芯片形态的发展,观察到锯齿状芯片形成和切割力期间绝热剪切的临界切割条件,并通过高速转动实验进行30crNi3mov硬化钢。结果表明,切削速度和耙角是影响芯片形态和切割力的主要因素。随着切削速度的增加,连续带芯片以一定临界值变换成锯齿状芯片。由于耙角从正向变为负变化,绝热剪切的临界切削速度显着降低,当锯齿状芯片形式时,切割力突然减少。通过在金属切割过程中预测绝热剪切的临界切割条件标准来预测临界切削速度的结果表明,锯齿状芯片形成的主要原因是在初级剪切区中反复发生绝热剪切断裂。

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