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Frequency domain identification of grinding stiffness and damping

机译:磨削刚度和阻尼的频域识别

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摘要

As equivalent stiffness and damping of the grinding process dominate cutting stability, their identification is essential to predict and avoid detrimental chatter occurrence. The identification of these process constants is not easy in large cylindrical grinding machines, e.g. roll grinders, since there are no practical ways to measure cutting force normal component. This paper presents a novel frequency domain approach for identifying these process parameters, exploiting in-process system response, measured via impact testing. This method adopts a sub-structuring approach to couple the wheel-workpiece relative dynamic compliance with a two-dimensional grinding force model that entails both normal and tangential directions. The grinding specific energy and normal force ratio, that determine grinding stiffness and damping, are identified by fitting the closed loop FRF (Frequency Response Function) measured during specific plunge-grinding tests. The fitting quality supports the predictive capability of the model. Eventually, the soundness of the proposed identification procedure is further assessed by comparing the grinding specific energy identified through standard cutting power measurements.
机译:由于等效的刚度和磨削过程的阻尼支配着切削稳定性,因此对它们的识别对于预测和避免有害的颤振现象至关重要。在大型外圆磨床中,例如在磨床中很难识别这些过程常数。辊磨机,因为没有实际的方法来测量切削力的正常分量。本文提出了一种新颖的频域方法,用于识别这些过程参数,利用通过冲击测试测量的过程中系统响应。该方法采用子结构化方法,将车轮工件的相对动态柔度与需要法向和切向的二维磨削力模型耦合。决定磨削刚度和阻尼的磨削比能和法向力比通过拟合在特定切入磨削测试期间测得的闭环FRF(频率响应函数)来确定。拟合质量支持模型的预测能力。最终,通过比较通过标准切削功率测量确定的磨削比能,进一步评估了所提出的识别程序的正确性。

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