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Spindle Speed Selection for High-Speed Milling of Titanium Alloy Curved Surface

机译:钛合金曲面高速铣削的主轴转速选择

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摘要

The development of high-speed milling technology provides an effective processing method for titanium alloy curved surface with high quality, and the spindle speed is an important machining parameter for the high-speed milling of titanium alloy curved surface. The variation of the geometric features of the titanium alloy curved surface results in the sharp fluctuation of the cutting force as well as the vibration of machine tool, which not only makes a severe impact on the surface machining quality and the tool life but also greatly affects the efficiency of the high-speed milling. An experimental study is carried out to determine the spindle speed for high-speed milling of the titanium alloy curved surface based on the cutting force. The experimental results indicate that in high-speed milling process, the cutting force is associated with the geometric feature of the curved surface and the change of cutting force is relatively smooth when the spindle speed is in the range from 9000 to 13,000 rpm for the machining of titanium alloy curved surface.
机译:高速铣削技术的发展为高质量的钛合金曲面提供了一种有效的加工方法,主轴转速是钛合金曲面高速铣削的重要加工参数。钛合金曲面几何特征的变化导致切削力的急剧波动以及机床的振动,不仅严重影响了表面加工质量和刀具寿命,而且极大地影响了机床的使用寿命。高速铣削的效率。进行了实验研究,以确定基于切削力的钛合金曲面高速铣削的主轴转速。实验结果表明,在高速铣削过程中,切削力与曲面的几何特征有关,并且当主轴转速在9000至13,000 rpm范围内进行切削时,切削力的变化相对平滑。钛合金曲面。

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