通过声发射监测车床稳定性图表

J. Keraita, Hj Oyango, G. K. Misoi
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引用次数: 8

摘要

表征金属切削过程中检测到的声发射(AE)的信号参数在理论上以一种简单的方式与工作材料特性、切削条件和刀具几何形状相关联。在颤振过程中,切削条件和刀具几何形状发生了很大的变化。自激颤振是切削加工过程中与机床结构结合产生的一种不稳定性,是机床性能的一个基本限制。在本文提出的研究成果中,AE信号参数的变化被用来检测颤振的开始,从而绘制稳定性图,在转向操作期间。除了显示稳定性的边界外,这种图表还可以用来确定在最小限度或不损失生产的情况下消除颤振所需的必要变化。研究的信号参数包括声发射平均强度、功率谱的偏度和峰度;以及排放的计数率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lathe stability charts via acoustic emission monitoring
Signal parameters characterizing acoustic emission (AE) detected during metal cutting have been theoretically correlated in a simple manner, to the work material properties, cutting conditions, and tool geometry. During chatter, the cutting conditions and the tool geometry change considerably. Self-exited chatter, an instability of the cutting process in combination with the machine structure, is a basic performance limitation of machine tools. In the research findings presented in this paper, changes occurring to AE signal parameters have been used to detect the onset of chatter and hence plot stability charts, during a turning operation. Apart from showing the borderlines of stability, such charts can be used to identify the necessary changes required to eliminate chatter at minimum or no loss of production. The signal parameters investigated include AE mean intensity level, the skew and kurtosis of the power spectrum; as well as the count rate of the emissions.
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