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An Efficient Third-Order Full-Discretization Method for Prediction of Regenerative Chatter Stability in Milling

机译:一种高效的三阶全离散化方法,用于预测铣削中的再生颤振稳定性

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The prediction of regenerative chatter stability has long been recognized as an important issue of concern in the field of machining community because it limits metal removal rate below the machine’s capacity and hence reduces the productivity of the machine. Various full-discretization methods have been designed for predicting regenerative chatter stability. The main problem of such methods is that they can predict the regenerative chatter stability but do not efficiently determine stability lobe diagrams (SLDs). Using third-order Newton interpolation and third-order Hermite interpolation techniques, this study proposes a straightforward and effective third-order full-discretization method (called NI-HI-3rdFDM) to predict the regenerative chatter stability in milling operations. Experimental results using simulation show that the proposed NI-HI-3rdFDM can not only efficiently predict the regenerative chatter stability but also accurately identify the SLD. The comparison results also indicate that the proposed NI-HI-3rdFDM is very much more accurate than that of other existing methods for predicting the regenerative chatter stability in milling operations. A demonstrative experimental verification is provided to illustrate the usage of the proposed NI-HI-3rdFDM to regenerative chatter stability prediction. The feature of accurate computing makes the proposed NI-HI-3rdFDM more adaptable to a dynamic milling scenario, in which a computationally efficient and accurate chatter stability method is required.
机译:再生喋喋不休的稳定性预测长期被认为是加工社区领域的一个重要问题,因为它限制了低于机器容量的金属去除率,因此降低了机器的生产率。设计了各种全离散化方法,用于预测再生颤动稳定性。此类方法的主要问题是它们可以预测再生颤振稳定性,但不有效地确定稳定性瓣图(SLD)。使用三阶牛顿插值和三阶Hermite插值技术,本研究提出了一种直接和有效的三阶全离散化方法(称为Ni-Hi-3RDFDM),以预测研磨操作中的再生颤振稳定性。使用仿真的实验结果表明,所提出的Ni-Hi-3RDFDM不仅可以有效地预测再生的颤动稳定性,而且可以精确地识别SLD。比较结果还表明,所提出的Ni-Hi-3RDFDM比其他现有方法更准确地预测铣削操作中的再生颤动稳定性的方法。提供了说明性的实验验证,以说明所提出的Ni-Hi-3RDFDM的用法来再生颤动稳定性预测。精确计算的特征使得提出的NI-HI-3RDFDM更适应于动态铣削场景,其中需要计算高效和准确的颤动稳定性方法。

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