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Temperature distribution and thermal error prediction of a CNC feed system under varying operating conditions

机译:各种工况下数控进给系统的温度分布和热误差预测

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摘要

In high-speed and high-precision feed systems, the thermal errors are mainly caused by the non-uniform temperature variations and time-varying thermal deformations under different operating conditions. The research work undertaken herein ultimately aims to develop a generic method which is capable of evaluating the temperature rises of heat sources (such as supporting bearings and ball screw nut) and thermal positioning error of the feed system induced by varying operating conditions (feed speed, cutting load, and preload of ball screw). Experiments were carried out on a high-speed feed system experimental bench, and the influences of operating conditions on temperature rises of supporting bearings and ball screw nut were analyzed. Based on wavelet neural network and NARMA-L2 model, the relationship between temperature rise of supporting bearings and operating conditions was established. Furthermore, with the temperature of ball screw nut set to be a moving heating source load, the temperature and thermal deformation distributions of ball screw under bearings and ball screw nut heat sources were simulated. The experiment and simulation results show that the recommended modeling method can be used to predict thermal positioning errors of feed system with good accuracy. The work described lays a solid foundation of thermal error prediction and compensation in a feed system under varying operating conditions.
机译:在高速,高精度进给系统中,热误差主要是由不同操作条件下温度变化不均匀和时变热变形引起的。本文进行的研究工作最终旨在开发一种通用方法,该方法能够评估热源(例如支撑轴承和滚珠丝杠螺母)的温度升高以及由变化的工作条件(进给速度,切割负荷和滚珠丝杠的预负荷)。在高速进给系统实验台上进行了实验,并分析了工作条件对支撑轴承和滚珠丝杠螺母温升的影响。基于小波神经网络和NARMA-L2模型,建立了支承轴承温升与工作条件之间的关系。此外,以滚珠丝杠螺母的温度为移动热源负荷,模拟了轴承和滚珠丝杠螺母热源作用下滚珠丝杠的温度和热变形分布。实验和仿真结果表明,所推荐的建模方法可以较好地预测供料系统的热定位误差。所描述的工作为在变化的工作条件下进料系统中的热误差预测和补偿奠定了坚实的基础。

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