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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Geometric and force errors compensation in a 3-axis CNC milling machine
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Geometric and force errors compensation in a 3-axis CNC milling machine

机译:三轴CNC铣床中的几何和力误差补偿

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摘要

This paper proposes a new off line error compensation model by taking into accounting of geometric and cutting force induced errors in a 3-axis CNC milling machine. Geometric error of a 3-axis milling machine composes of 21 components, which can be measured by laser interferometer within the working volume. Geometric error estimation determined by back-propagation neural network is proposed and used separately in the geometric error compensation model. Likewise, cutting force induced error estimation by back-propagation neural network determined based on a flat end mill behavior observation is proposed and used separately in the cutting force induced error compensation model. Various experiments over a wide range of cutting conditions are carried out to investigate cutting force and machine error relation. Finally, the combination of geometric and cutting force induced errors is modeled by the combined back-propagation neural network. This unique model is used to compensate both geometric and cutting force induced errors simultaneously by a single model. Experimental tests have been carried out in order to validate the performance of geometric and cutting force induced errors compensation model.
机译:本文提出了一种新的离线误差补偿模型,该模型考虑了三轴CNC铣床中几何和切削力引起的误差。三轴铣床的几何误差由21个组件组成,可以通过激光干涉仪在工作区内进行测量。提出了由反向传播神经网络确定的几何误差估计,并将其分别用于几何误差补偿模型中。同样,提出了基于平端铣刀行为观察确定的基于反向传播神经网络的切削力引起的误差估计,并将其分别用于切削力引起的误差补偿模型中。在广泛的切削条件下进行了各种实验,以研究切削力与机器误差的关系。最后,通过组合的反向传播神经网络对几何和切削力引起的误差的组合进行建模。这个独特的模型用于通过单个模型同时补偿几何和切削力引起的误差。为了验证几何和切削力引起的误差补偿模型的性能,已经进行了实验测试。

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