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Experimental Evaluation of Tool Run-Out in Micro Milling

机译:微铣削刀具的实验评价

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This paper deals with micro milling cutting process focusing the attention on tool run-out measurement. In fact, among the effects of the scale reduction from macro to micro (i.e., size effects) tool run-out plays an important role. This research is aimed at developing an easy and reliable method to measure tool run-out in micro milling based on experimental tests and an analytical model. From an Industry 4.0 perspective this measuring strategy can be integrated into an adaptive system for controlling cutting forces, with the objective of improving the production quality, the process stability, reducing at the same time the tool wear and the machining costs. The proposed procedure estimates the tool run-out parameters from the tool diameter, the channel width, and the phase angle between the cutting edges. The cutting edge phase measurement is based on the force signal analysis. The developed procedure has been tested on data coming from micro milling experimental tests performed on a Ti6A14V sample. The results showed that the developed procedure can be successfully used for tool run-out estimation.
机译:本文涉及微型铣削切割过程,将注意力集中在刀具输出测量上。事实上,在从宏观到微量(即尺寸效应)的效果中,刀具的效果起到了重要作用。该研究旨在开发一种简单可靠的方法,可根据实验测试和分析模型在微铣刀中测量刀具输出。从行业4.0透视图,这种测量策略可以集成到用于控制切割力的自适应系统中,目的是提高生产质量,过程稳定性,同时减少工具磨损和加工成本。所提出的程序估计从刀具直径,沟道宽度和切削刃之间的相位角的刀具输出参数。切削刃相位测量基于力信号分析。已经测试了开发的程序对来自Ti6a14V样品进行的微铣削实验试验的数据进行了测试。结果表明,开发的程序可以成功地用于刀具耗尽估计。

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