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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Suppression of iegenerative Chatter In a Plunge-Grinding Process by Spindle Speed
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Suppression of iegenerative Chatter In a Plunge-Grinding Process by Spindle Speed

机译:主轴转速在切入磨削过程中抑制再生颤动

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摘要

This paper utilizes an effective control strategy to suppress the regenerative chatter in a plunge-grinding process. To begin with, the dynamical interaction between the workpiece and the grinding wheel is considered as a major factor influencing the grinding stability. Mathematically, the grinding stability is studied through numerical eigenvalue analysis. Consequently, critical chatter boundaries are obtained to distinguish the chatter-free and the chatter regions. As known, the grinding is unstable and the chatter happens in the chatter region. To observe the chatter vibrations, an analytical method and numerical simulations are employed. As a result, chatter vibrations both with and without losing contact between the workpiece and the wheel are obtained. Meanwhile, the coexistence of the chatter and the stable grinding is also found in the chatter-free region. Finally, a control strategy involving spindle speed variation (SSV) is introduced to suppress the chatter. Then, its effectiveness is analytically investigated in terms of the method of multiple scales (MMS).
机译:本文采用有效的控制策略来抑制突入磨削过程中的再生颤动。首先,工件和砂轮之间的动力相互作用被认为是影响磨削稳定性的主要因素。在数学上,通过数值特征值分析研究磨削稳定性。因此,获得了关键的颤动边界以区分无颤动区域和颤动区域。众所周知,磨削是不稳定的,并且震颤发生在震颤区域中。为了观察颤振,采用了一种分析方法和数值模拟。结果,获得了在和不损失工件与轮之间的接触的情况下的颤振。同时,在无振颤的区域也发现了振颤的共存和稳定的磨削。最后,引入了一种涉及主轴速度变化(SSV)的控制策略来抑制颤动。然后,根据多尺度方法(MMS)对它的有效性进行了分析研究。

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