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Stabilizing wave attenuation effects in turning process

机译:车削过程中稳定波衰减效应

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Efforts have been made and continue to be made to understand the self-excited vibrations of machine tools called regenerative chatter. Theory of stabilizing wave attenuation effects in machining process presented in another work is expanded in this work to postulate the behaviour of turning stability lobes to changes in material, process and structural parameters. The wave attenuation theory simply stated that rise in attenuating forces suppresses chatter instability. Analysis in this work showed that rise in tool natural frequency , damping ratio or feed speed causes a rise in attenuating forces thus suppressing chatter. As expected from the wave attenuation theory harder workpiece materials with higher cutting coefficients will better resist wave attenuation, and thus exhibit more chatter instability. Numerical verification of postulations is given.
机译:为了理解称为再生颤振的机床的自激振动,已经做出并继续做出努力。在另一项工作中提出的在加工过程中稳定波衰减效应的理论在这项工作中得到了扩展,以推测转弯稳定性凸角随材料,过程和结构参数变化的行为。波动衰减理论简单地指出,衰减力的上升抑制了颤振的不稳定性。这项工作的分析表明,刀具固有频率,阻尼比或进给速度的提高会引起衰减力的提高,从而抑制颤振。正如波衰减理论所预期的那样,具有较高切削系数的较硬工件材料将更好地抵抗波衰减,从而表现出更大的颤动不稳定性。给出了假设的数值验证。

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