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Control of a Thermal Actuator for UP-milling with Multiple Cutting Edges

机译:用多个切削刃向上铣削的热致动器的控制

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Ultra-precision (UP) milling processes can be dramatically sped up, and thus made more cost-efficient, by utilizing tools with multiple cutting edges. This, however, requires a dedicated actuating mechanism to interactively control the cutting radius of the individual cutting edges with nanometer precision. This paper presents recent advances in developing a tool holder for diamond fly-cutting that enables the alignment of two or more cutting edges via thermal elongation of the substrate material. After building a comprehensive model of the actuator and verifying it in a static test setup, a closed-loop control was developed that allows setting the elongation in a static setup with nanometer accuracy.
机译:通过利用具有多个切削刃的工具,可以显着地加速超精度(上升)铣削过程,从而使得更具成本效益。然而,这需要专用的致动机构以交互地控制具有纳米精度的各个切削刃的切割半径。本文介绍了开发钻石飞行工具支架的最新进展,这使得通过基板材料的热伸长伸长两种或更多种切削刃。在构建执行器的全面模型并在静态测试设置中验证时,开发了闭环控制,允许以纳米精度设置静态设置的伸长率。

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