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Intelligent identification of turning process based on pattern recognition of cutting states

机译:基于切削状态模式识别的车削过程智能识别

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摘要

A method has been developed to monitor and identify the cutting states for CNC turning by utilizing the dynamic cutting forces based on proposed pattern recognition technique. The method proposed introduces three parameters, which are calculated and obtained by taking the ratio of the average variances of the dynamic cutting forces, to classify the cutting states of continuous chip formation, broken chip formation, and chatter. The broken chip formation is required for the stable and reliable machining process. The algorithm was developed to calculate the values of three parameters during the process in order to obtain the reference feature spaces and determine the proper threshold values for classification of the cutting states. It is proved by series of cutting experiments that the states of cutting are well identified by the method developed and proposed here even though the cutting conditions are changed. The algorithm is proposed to obtain the broken chips by changing the cutting conditions during the process.
机译:已经开发了一种方法,该方法基于提出的模式识别技术利用动态切削力来监视和识别CNC车削的切削状态。所提出的方法引入了三个参数,这些参数通过获取动态切削力的平均方差之比来计算和获得,以对连续切屑形成,断屑形成和颤动的切削状态进行分类。碎屑的形成对于稳定可靠的加工过程是必需的。开发了该算法来计算过程中三个参数的值,以获得参考特征空间并确定用于分类切削状态的适当阈值。通过一系列切割实验证明,即使改变了切割条件,通过此处开发和提出的方法也可以很好地识别切割状态。提出了通过在加工过程中改变切削条件来获得断屑的算法。

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