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Metallurgical aspects of chip morphology control in machining of steel

机译:钢铁加工中切屑形态控制的冶金学方面

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The influence of workpiece microstructure on chip morphology was investigated using a number of iron alloys both in the hardened and unhardened condition. Previous work has shown the importance of work-hardening capacity of the alloy in serrated chip formation through shear angle rotationin the primary shear zone within each periodic cycle of serration. In the present work, the approach is extended to include the effects of matrix hardening (thermal softening potential), second phase particles (geometric softening potential), temperature corrected strain rate (cutting speed and feed) and tribological conditions of seizure at the tool-chip interface. The mechanism of shear localised chip formation and its consequences on tool wear are discussed.
机译:在硬化和未硬化条件下,使用多种铁合金研究了工件微观结构对切屑形态的影响。先前的工作表明了在锯齿的每个周期性循环内,通过在主剪切区内的剪切角旋转,合金在锯齿状切屑形成中加工硬化能力的重要性。在目前的工作中,该方法已扩展为包括基体硬化(热软化电位),第二相颗粒(几何软化电位),温度校正的应变率(切削速度和进料)以及工具的咬合的摩擦学条件的影响,芯片接口。讨论了剪切局部切屑形成的机理及其对刀具磨损的影响。

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