Rusinek Rafał, Lajmert Paweł
Faculty of Mechanical Engineering, Lublin University of Technology, 36 Nadbystrzycka Str, 20-618 Lublin, Poland.
Faculty of Mechanical Engineering, Lodz University of Technology, 1/15 Stefanowskiego Str, 94-040 Łódź, Poland.
Materials (Basel). 2020 Sep 16;13(18):4105. doi: 10.3390/ma13184105.
In the paper, the problem of chatter vibration detection in the milling process of carbon fiber-reinforced plastic is investigated. Chatter analysis may be considered theoretically based on data from impact test of an end mill cutter. However, a stability region obtained in such way may not agree with the real one. Therefore, this paper presents a method that can predict chatter vibrations based on cutting force components measurements. At the beginning, a stability lobe diagram is created to establish the range of experimental test in the plane of tool rotational speed and depth of cut. Next, an experiment of composite milling is performed. The experimentally-measured time series of cutting forces are decomposed with the use of the improved Hilbert-Huang transform (HHT). To detect chatter, statistical methods and recurrence quantification analysis (RQA) are used. However, much better results are obtained when new chatter indexes are proposed. The indexes, derived directly from the HHT and RQA methods, can be used to build an effective chatter prediction system.
本文研究了碳纤维增强塑料铣削过程中的颤振振动检测问题。颤振分析理论上可基于立铣刀冲击试验的数据进行。然而,通过这种方式获得的稳定区域可能与实际情况不一致。因此,本文提出了一种基于切削力分量测量来预测颤振振动的方法。首先,创建稳定性叶瓣图以确定刀具转速和切削深度平面内的实验测试范围。接下来,进行复合材料铣削实验。利用改进的希尔伯特 - 黄变换(HHT)对实验测量的切削力时间序列进行分解。为了检测颤振,使用了统计方法和递归定量分析(RQA)。然而,当提出新的颤振指标时,能获得更好的结果。这些直接从HHT和RQA方法得出的指标可用于构建有效的颤振预测系统。