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Decoupling of Fluid and Thermo-elastic Simulations on Machine tools Using Characteristic Diagrams

机译:使用特征图解耦机床上的流体和热弹性模拟

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Thermo-elastic effects are one of the major reasons for positioning errors in machine tools. Next to friction and waste heat from drives, the heat exchange with the machine's surroundings influences the temperature field inside the machine tool significantly. The thermal parameters necessary to describe this heat transfer can be obtained through computational fluid dynamics (CFD) simulations. This paper presents a new method aimed at decoupling these CFD simulations from the thermo-elastic simulations in order to provide the heat transfer parameters quickly and efficiently for transient environmental conditions. This is done by defining a suitable set of load scenarios for the CFD simulations, clustering the resulting parameters with radial basis functions and interpolating them using characteristic diagrams.
机译:热弹性效应是机床定位误差的主要原因之一。除了驱动器产生摩擦和废热外,与机床周围环境的热交换还会显着影响机床内部的温度场。可以通过计算流体动力学(CFD)模拟获得描述这种热传递所必需的热参数。本文提出了一种新方法,旨在将这些CFD模拟与热弹性模拟分离,以便为瞬态环境条件快速有效地提供传热参数。这是通过为CFD仿真定义一组合适的载荷方案,将结果参数与径向基函数聚类并使用特性图对它们进行插值来完成的。

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