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首页> 外文期刊>Journal of Materials Processing Technology >Thermal error optimization modeling and real-time compensation on a CNC turning center
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Thermal error optimization modeling and real-time compensation on a CNC turning center

机译:CNC车削中心的热误差优化建模和实时补偿

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摘要

Thermal errors are the largest contributor to the dimensional errors of a workpiece in precision machining. The error compensation technique is an effective way of reducing thermal errors. Accurate modeling of errors is a key part of error compensation. The thermal errors of a machine tool can be treated as the superposition of a series of thermal error modes. In this paper, five key temperature points of a turning center were obtained based on the thermal error mode analysis. A thermal error model based on the five key temperature points was proposed by using genetic algorithm-based back propagation neural network (GA-BPN). The GA-BPN method improves the accuracy and reduces computational cost for the prediction of thermal deformation in the turning center. A thermal error real-time compensation system was developed based on the proposed model. An experiment was carried out to verify the performance of the compensation system. The experimental results show that the diameter error of the workpiece reduced from about 27-10 μm after implementation of the compensation.
机译:在精密加工中,热误差是造成工件尺寸误差的最大因素。误差补偿技术是减少热误差的有效方法。误差的准确建模是误差补偿的关键部分。可以将机床的热误差视为一系列热误差模式的叠加。本文基于热误差模式分析获得了车削中心的五个关键温度点。利用基于遗传算法的反向传播神经网络(GA-BPN),提出了基于五个关键温度点的热误差模型。 GA-BPN方法提高了精度,并降低了预测车削中心热变形的计算成本。基于该模型开发了一种热误差实时补偿系统。进行了一项实验,以验证补偿系统的性能。实验结果表明,实施补偿后,工件的直径误差从27-10μm减小。

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