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Abrasion monitoring and automatic chatter detection in cylindrical plunge grinding

机译:圆柱切入磨削中的磨损监测和自动振颤检测

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摘要

Using conventional grinding wheels, wheel-sided chatter vibration is one of the limiting factors in terms of productivity and surface finish. Initial vibration related to the dynamic behavior of the machine tool copy on the grinding wheel and its amplitude amplifies by abrasion. To ensure high workpiece quality many expensive truing cycles are needed. In this context, we suggest a new set-up for the automatic chatter detection and elimination for external cylindrical grinding machines, reducing not only the high amount of true running cycles, but also improving the efficiency. In order to suppress the generation of the waviness on the grinding wheel the effect has to be identified during an early stage of its development. Therefore, a grinding machine is equipped with different types of sensors, i.e., eddy current, force, acoustic emission, acceleration sensors, and a tactile probe. Experimental results show, that exclusively measuring the displacement at the workpiece is sufficient for online computing wheel's waviness. Based on a model of the grinding process the other redundant sensors are used for validation. In addition, a robust online chatter detector based on the wavelet transformation is developed recognizing an instable grinding process. This model-based detection and estimation of waviness delivers solid results, it should be used for suppression of chatter in further work.
机译:使用常规砂轮,砂轮侧颤振是生产率和表面光洁度方面的限制因素之一。与机床仿形在砂轮上的动态行为有关的初始振动及其振幅会因磨损而放大。为了确保高质量的工件,需要许多昂贵的整修周期。在这种情况下,我们建议一种新的设置,用于自动检测和消除外部外圆磨床的颤振,不仅可以减少大量的实际运行周期,而且可以提高效率。为了抑制在砂轮上产生波纹,必须在其发展的早期阶段就确定其效果。因此,磨床装备有不同类型的传感器,即,涡电流,力,声发射,加速度传感器和触觉探头。实验结果表明,仅测量工件的位移就足以在线计算砂轮的波纹度。基于磨削过程的模型,其他冗余传感器用于验证。另外,基于小波变换的鲁棒在线颤动检测器被开发出来,用于识别不稳定的磨削过程。这种基于模型的波度检测和估计可提供可靠的结果,应将其用于抑制进一步工作中的颤动。

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