首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Design of a turning cutting tool with large length-diameter ratio based on three-element type vibration absorber
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Design of a turning cutting tool with large length-diameter ratio based on three-element type vibration absorber

机译:基于三元振动吸收器的大长直径比设计转动切削工具

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摘要

The vibration absorber has been effective in vibration control. From the demand of manufacturing structural parts with a deep hole, the design of a turning cutting tool with large length-diameter ratio is presented. An analytical approach of acquiring frequency response of primary structure equipped with typical single-degree-of-freedom vibration absorbers is formulated, and background modes are incorporated with the purpose of achieving an accurate tuning of vibration absorber. Specifically, the three-element type is investigated as the damping element of the vibration absorber embedded in the cutting tool contributes to the stiffness, although it demonstrates medium performance of vibration suppression according to non-dimensional analysis. The experimentally tuned frequency response function of the turning cutting tool with three-element vibration absorber achieves 87.1% reduction on the amplitude of the target mode. Finally, several configurations of internal turning operations are carried out to validate the design of the vibration absorber.
机译:减振器在振动控制方面都是有效的。从制造结构部件的需求,呈现了具有大长直径比的转动切削工具的设计。制定了配备有典型的单级自由度减振器的主要结构的频率响应的分析方法,并结合了振动吸收器精确调整的目的。具体地,研究了三元件类型作为嵌入切削刀具中的振动吸收器的阻尼元件有助于刚度,尽管根据不尺寸分析,它表明了振动抑制的介质性能。具有三元振动吸收器的转动切削工具的实验调谐频率响应函数达到目标模式的幅度的87.1%。最后,执行内部转动操作的若干配置以验证振动吸收器的设计。

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