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Analysis and simulation of radial chatter in drilling and reaming

机译:扩孔钻radial颤的分析与仿真

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At high cutting speeds, self-excited regenerative vibrations ("chatter") of drilling and reaming tools may occur. Chatter is an instability in which oscillation of the tool causes variation in the chip load, which in turn amplifies tool motion. This phenomenon is well known in turning and milling, and has also been studied in boring. In drilling and reaming, both axial motion and radial (bending) motion of the tool may affect the chip load, but dynamic stiffness is often much higher axially. Analysis of radial chatter requries consideration of at least two degrees of freedom as well as consideration of the special geometry of the drilling and reaming tools. In this paper we find analytical stability boundaries for drilling; the analysis extends a boring model developed by Li and Ulsoy (1998). We also show that it is necessary to use a different approach to predict instability in reaming. Stability boundaries for reaming were found by a method proposed for milling by Altintas and Budak (1995). A dynamic time-domain simulation suitable for both drilling and reaming was used to confirm analytical predictions and obtain qualitative insight into the instabilities, which involve both forward and backward whirling modes.
机译:在高切削速度下,钻孔和铰孔工具可能会发生自激的再生振动(“颤振”)。颤动是一种不稳定现象,其中刀具的振动会引起切屑负载的变化,从而加剧刀具的运动。这种现象在车削和铣削中是众所周知的,并且也已在镗孔中进行了研究。在钻孔和铰孔中,刀具的轴向运动和径向(弯曲)运动都可能影响切屑载荷,但轴向的动态刚度通常要高得多。径向颤振要求的分析至少要考虑两个自由度,还要考虑钻孔和铰孔工具的特殊几何形状。在本文中,我们找到了钻井的分析稳定性边界;该分析扩展了由Li和Ulsoy(1998)开发的无聊模型。我们还表明,有必要使用另一种方法来预测铰孔的不稳定性。铰孔的稳定性边界是通过Altintas和Budak(1995)提出的铣削方法找到的。使用适用于钻孔和铰孔的动态时域仿真来确认分析预测并获得对不稳定性的定性见解,其中涉及前向和后向旋转模式。

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