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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Machine chattering identification based on the fractional-order chaotic synchronization dynamic error
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Machine chattering identification based on the fractional-order chaotic synchronization dynamic error

机译:基于分数秩序混沌同步动态误差的机器抖动识别

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The topic of this study is using the fractional-order chaotic synchronization system to identify chattering that CNC machines produce during production. The appearance of chattering indicates instability during the metal milling process which will not only cause abnormal wear on the tool, but can also decrease the precision of the work piece significantly. Thus, identification of chattering has always been a very important research topic. However, previous chattering identification mostly relied on the experience of the operator. Most past studies were based on the energy perspective. When the main frequency in the frequency domain analysis to the existing spindle rotation frequency ratio is a non-integer multiple, then chattering has occurred. We propose a brand new chattering identification method which uses the synchronization error plane centroid in fractional-order chaotic synchronization system to find chattering. Thus, we can simply use position of the chaotic centroid to determine whether or not the current cutting status has chattering. The result of this study shows that the method we proposed can effectively identify chattering and that the identification result is very accurate and useful.
机译:本研究的主题正在使用分数秩序的混沌同步系统来识别CNC机器在生产过程中产生的喋喋不休。抖动的外观表示在金属铣削过程中不稳定,这不仅会导致工具上的异常磨损,而且还可以显着降低工件的精度。因此,识别喋喋不休一直是一个非常重要的研究主题。然而,之前的喋喋不休的识别主要依赖于操作员的经验。大多数过去的研究都是基于能量观点。当频域分析的主频率对现有主轴旋转频率比是非整数多个时,则发生了抖动。我们提出了一种全新的喋喋不休的识别方法,它使用分数阶混沌同步系统中的同步错误平面质心来找到抖动。因此,我们可以简单地使用混沌质心的位置来确定当前的切割状态是否具有抖动。本研究结果表明,我们提出的方法可以有效地识别抖动,并且识别结果非常准确和有用。

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