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Contactless excitation and response system for analysis of high precision rotor dynamic properties

机译:用于分析高精度转子动态特性的非接触式激励和响应系统

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The spindle system is a critical part of a machine tool structure and its dynamic properties are important for the performance of the whole machining system. Currently the only way to extract the dynamic properties of a given structure is via experimental modal analysis. This approach, however, can only be employed on idle systems and is performed with the assumption that the dynamics of a system are independent of rotational speed. The latter assumption cannot be applied to spindle systems. This paper introduces a novel testing system for analysing machine tool spindles dynamic properties, consisting of real-time recursive estimation of modal and operational dynamic parameters, employed alongside a contactless excitation and response system. The presented approach allows analysing the spindle system condition and dynamic properties not only at discrete rotational speed intervals but also during continuous sweep of rotational speed.
机译:主轴系统是机床结构的关键部分,其动态特性对于整个加工系统的性能很重要。目前,提取给定结构的动态属性的唯一方法是通过实验模态分析。然而,这种方法只能在空闲系统上使用,并且假设系统的动态与转速无关。后一种假设不能应用于主轴系统。本文介绍了一种新型检测系统,用于分析机床主轴动态特性,包括模态和操作动态参数的实时递归估计,与非接触式励磁和响应系统一起使用。所提出的方法允许在连续扫描旋转速度期间不仅以离散转速间隔分析主轴系统条件和动态性能。

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