Industrial applications of chatter stability prediction and monitoring system for turning processes

Kaibo Lu, Minqing Jing, Yongqiang Zhang, Heng Liu
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引用次数: 4

Abstract

Chatter vibrations result in poor surface finish, reduced productivity, and shortened tool life in metal cutting. Although chatter stability and monitoring techniques are broadly studied in literature, the deployment of process monitoring system in the shop floor still presents a challenge. In this paper, we have constructed an online prototype system for industrial applications including two independent modules of chatter stability prediction and monitoring cooperatively. Turning processes are considered. Firstly, the stability charts are evaluated analytically by the application of the Laplace transform. The charts obtained can assist the operators in choosing appropriate cutting parameters before machining. Secondly, the characteristics of chatter are extracted in the time and frequency domains. The norm of chatter arising is formulated in accordance with the variance and spectrum of vibration signals. The corresponding threshold is confirmed relatively in comparison with the characteristics of stable cutting states recorded in the reference database. Thirdly, the algorithms and modules introduced are implemented with the combination of the advantages of MATLAB and C# programming, in which delay strategy and overlap processing can improve the accuracy and performance of the system. Finally, the effectiveness of the techniques and system presented here was verified by experimental results of the industrial machining trials.
车削过程颤振稳定性预测与监测系统的工业应用
在金属切削中,颤振振动导致表面光洁度差,生产率降低,刀具寿命缩短。虽然颤振稳定性和监测技术在文献中得到了广泛的研究,但在车间部署过程监测系统仍然是一个挑战。在本文中,我们构建了一个工业应用的在线原型系统,包括颤振稳定性预测和监测两个独立的模块。考虑车削过程。首先,应用拉普拉斯变换对稳定性图进行分析评价。所得到的图表可以帮助操作者在加工前选择合适的切削参数。其次,在时域和频域提取颤振特征;根据振动信号的方差和频谱,给出了颤振的范数。通过对比参考数据库中记录的稳定切削状态特征,相对确定相应的阈值。第三,结合MATLAB和c#编程的优势实现了所介绍的算法和模块,其中延迟策略和重叠处理可以提高系统的精度和性能。最后,通过工业加工试验验证了所提技术和系统的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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