基于实验振动分析的数控机床间隙检测

S. Moosavian, Ebrahim Mohammadi Asl
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引用次数: 14

摘要

利用无间隙机构和齿轮箱,可以提高数控机床伺服轴的刚度。实际上,这些轴的刚度会增加,因此可以实现不同类型的前馈控制。此外,无间隙机构有助于设计万无一失的系统,而不会挑战间隙的不稳定性和非线性行为。然而,任何机械故障和松动都会引起反弹,从而可能导致严重的振动。因此,对间隙的检测和利用有效的预防性维护(PM)来防止生产线的中断是有意义的。本文首先建立了数控伺服轴机械系统的简单模型,并给出了其控制系统。这个减少订单系统的速度控制将被详细说明。其次,估计了由于间隙引起的振动频率的带宽,并模拟了具有不同间隙的伺服轴的行为。然后,为了概括齿隙在不同条件下的作用,实证研究了五种机械不同轴、不同伺服增益在不同数控机床上的性能响应。在完全不同的数控机床(小型、中型和重型机床)上获得的这些实验振动频率与估计的频率进行了比较。仿真和实验结果表明,具有间隙的伺服轴的振动频率不受间隙值的影响,而位置控制增益决定了该频率。最后,将开发一个实验方程来估计各种数控机床的频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Backlash Detection in CNC Machines Based on Experimental Vibration Analysis
Exploiting backlash free mechanisms and gearboxes, the stiffness of servo axes in CNC machines can be improved. In fact, the rigidity of these axes will be increased, so that different types of feedforward control can be implemented. Furthermore, backlash free mechanisms facilitate designing foolproof systems without challenging with the instability and nonlinear behavior of backlash. However, any mechanical failure and looseness causes backlash which in turn may lead to severe vibrations. So, backlash detection and exploiting efficient preventive maintenance (PM) to prevent interrupt in the production line is of interest. In this paper, first a simple model for mechanical system of a CNC servo axis, and its control system will be presented. This reduced order system for speed control will be detailed. Next, the bandwidth of vibration frequencies due to backlash is estimated and behavior of a servo axis with various backlashes is simulated. Then, to encapsulate the role of backlash in different conditions, performance response of five mechanically different axes with different servo gains in various CNC machines are empirically investigated. These experimental frequencies of vibration obtained in completely different CNC machines (small, medium and heavy size) are compared with those estimated. Simulation and experimental results show that the frequency of vibration in a servo axis with backlash is not affected by the value of backlash, while the position control gain dictates this frequency. Finally, an experimental equation will be developed that estimates this frequency for various CNC machines.
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