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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Theory of Torsional Chatter in Twist Drills: Model, Stability Analysis and Composition to Test
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Theory of Torsional Chatter in Twist Drills: Model, Stability Analysis and Composition to Test

机译:麻花钻扭振理论:模型,稳定性分析和组成测试

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摘要

The mechanism of torsional chatter in drilling differs qualitatively and quantitatively from other types of chatter. In this paper we show that torsional chatter can be explained by the torsional-axial coupling inherent in a twisted beam; the beam "untwists" and extends in response to an increase in cutting torque. Based on a model of this mechanism, predictions of stability boundaries and chatter frequencies are derived by frequency domain analysis, and confirmed by numerical simulation and experimental tests The effect of the torsional-axial coupling is opposite that of traditional cutting in that an increase in cutting forces leads to axial extension and greater chip load. Because of this sign difference, the limiting depth of cut is governed by the positive real part of the frequency response function, which explains the unexpected fact that torsional chatter occurs below the natural frequency of the tool.
机译:钻削中的扭振颤动机制在质量和数量上与其他类型的颤动有所不同。在本文中,我们表明扭转颤振可以用扭转梁中固有的扭转-轴向耦合来解释。光束“解开”并随着切割扭矩的增加而延伸。在这种机制的模型的基础上,通过频域分析得出稳定性边界和颤振频率的预测,并通过数值模拟和实验测试加以证实。扭转-轴向耦合的影响与传统切削相反,因为切削的增加力导致轴向延伸和更大的切屑载荷。由于这种符号差异,极限切削深度由频率响应函数的正实数部分决定,这解释了在刀具的固有频率以下发生扭转颤振这一意想不到的事实。

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