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A study on the feasibility of in-process compensation of cutting force induced errors using axes motors absorbed current

机译:使用轴电机吸收轴电机的过程诱导误差的过程补偿可行性研究

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Portable machine tools are developed to address specific applications needs, such as machining of large components. However, they lack in performance such as stiffness. For such a low-stiffness portable machine tool, in this work, it is analysed the possibility and feasibility of employing the motors absorbed current measurements during actual machining operations as a means to monitor the cutting process and eventually compensate the tool deformations due to the cutting forces. In-process tool-path compensation achieved through a sensorized machine is of extreme interest from the costs point of view, especially for portable or dedicated task machine tool. In this paper, measurements of cutting forces, feed axes and spindle motors absorbed currents were carried out simultaneously for different cutting conditions. It is found that good correlations can be established between specific feature of the cutting force and axis motors absorbed current, the result demonstrates that the absorbed current measurements are reliable indirect measurements of the cutting forces and can therefore be employed in an in-process tool-path compensation.
机译:开发了便携式机床以满足特定的应用需求,例如加工大型组件。然而,它们缺乏刚度等性能。对于这种低刚度便携式机床,在这项工作中,分析了采用电动机在实际加工操作期间吸收电流测量的可能性和可行性作为监测切割过程的装置,最终通过切割来补偿刀具变形势力。通过传感器机器实现的过程工具路径补偿具有极端的兴趣,从成本的角度来看,特别是对于便携式或专用任务机床。在本文中,针对不同的切削条件,同时进行切割力,进料轴和主轴电机的测量。结果发现,在吸收电流的切割力和轴电动机的特定特征之间可以建立良好的相关性,结果表明,吸收的电流测量是可靠的切割力的间接测量,因此可以在进行的工具中使用 - 路径补偿。

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