基于能量守恒的机床导轨热凸变形优化方法

Wang Ruoda, Fan Kaiguo, Qiang Li, Li Yifei
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引用次数: 0

摘要

随着加工精度和加工效率的提高,导轨的热生成成为引起热凸变形的关键问题。导轨热凸变形是影响机床加工精度的主要因素之一,约占总误差的22.7%。为了平衡温度场,减小热凸变形,提出了一种基于能量守恒的优化方法。这种方法的主要策略是通过传热系统将热量从高温区域传递到较低温度区域。根据导轨的输出和输入热比确定传热系统的结构和接触面积。仿真和实验结果表明,优化后的导轨温度场更加均匀,热凸变形减少了50%左右,对减少导轨的热凸变形,提高机床的加工精度具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Optimization Method for Thermal Convex Deformation of Machine Tool's Guideway Based on the Conservation of Energy
With the improvement of machining accuracy and efficiency, heat generation of guideway becomes the crucial problem which will cause thermal convex deformation. Thermal convex deformation of guideway which accounts for about 22.7% of the total errors is one of the main factors affecting the machining accuracy of machine tool. A conservation of energy-based optimization method is proposed to balance the temperature field and reduce the thermal convex deformation. The main strategy of this method is to transfer the heat from high temperature regions to the lower temperature regions through a heat transfer system. The structure and contact area of the heat transfer system are determined according to the output and input heat ratio of the guideway. The simulation and experimental results show that the temperature field of the guideway is more uniform after optimized, the thermal convex deformation is reduced about 50%, it is of great significance to reduce the thermal convex deformation of the guideway and improve the machining accuracy of machine tool.
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