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Efficient thermal error prediction in a machine tool using finite element analysis

机译:使用有限元分析的机床中有效热误差预测

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摘要

Thermally induced errors have a major significance on the positional accuracy of a machine tool. Heat generated during the machining process produces thermal gradients that flow through the machine structure causing linear and nonlinear thermal expansions and distortions of associated complex discrete structures, producing deformations that adversely affect structural stability. The heat passes through structural linkages and mechanical joints where interfacial parameters such as the roughness and form of the contacting surfaces affect the thermal resistance and thus the heat transfer coefficients. This paper presents a novel offline technique using finite element analysis (FEA) to simulate the effects of the major internal heat sources such as bearings, motors and belt drives of a small vertical milling machine (VMC) and the effects of ambient temperature pockets that build up during the machine operation. Simplified models of the machine have been created offline using FEA software and evaluated experimental results applied for offline thermal behaviour simulation of the full machine structure. The FEA simulated results are in close agreement with the experimental results ranging from 65percent to 90percent for a variety of testing regimes and revealed a maximum error range of 70 (mu)m reduced to less than 10 (mu)m.
机译:热引起的误差对机床的位置精度具有重要意义。在加工过程中产生的热量产生流经机器结构的热梯度,从而引起线性和非线性热膨胀以及相关的复杂离散结构的变形,从而产生对结构稳定性产生不利影响的变形。热量通过结构链接和机械接头传递,其中界面参数(例如接触表面的粗糙度和形状)会影响热阻,从而影响传热系数。本文提出了一种使用有限元分析(FEA)的新型离线技术,以模拟主要内部热源(例如小型立式铣床(VMC)的轴承,电机和皮带驱动器)的影响以及周围积聚的环境温度的影响在机器运行期间启动。已使用FEA软件离线创建了机器的简化模型,并评估了用于整个机器结构的离线热行为模拟的实验结果。 FEA模拟结果与各种测试方案的实验结果(65%至90%)非常吻合,并显示最大误差范围从70μm减小到小于10μm。

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