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Evaluation of Sensor-less Identification Method for Stable Spindle Rotation against Chatter with Milling Simulation Analysis

机译:铣削仿真分析评估无颤振稳定主轴的无传感器辨识方法

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Although chatter stability analysis is necessary to enhance cutting accuracy and efficiency, a reliable prediction is difficult to achieve because of the analysis error of frequency response function. Therefore, the investigation proposes an experiment-based identification method for stable spindle rotations in milling by gradually changing the spindle rotation and capturing chatter frequency shift from servo information. In order to evaluate the identification accuracy, this paper presents theoretical approaches to analyze time-dependent variation in chatter and the expected identification error of proposed method by using a time-domain simulator and a frequency-domain model considering amplitude ratio between inner and outer modulations of the chip.
机译:尽管颤振稳定性分析对于提高切削精度和效率是必需的,但是由于频率响应函数的分析误差,难以实现可靠的预测。因此,本研究提出了一种基于实验的识别方法,该方法可通过逐渐改变主轴旋转并从伺服信息中捕获颤振频率偏移来实现铣削中主轴稳定旋转。为了评估识别精度,本文提出了一种使用时域仿真器和考虑内外调制幅度比的频域模型来分析颤动随时间变化和建议的识别误差的理论方法。芯片。

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