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Research on Modal Analysis of Precision Micro Slitting Turn-Milling Machine Tool Based on Hammer Experimental Method

机译:基于锤实验法的精密微型切割车铣床模态分析研究

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In order to improve the dynamic stability of precision micro slitting turn-milling machine tools, reduce or avoid the vibration problem during the cutting process, optimize the machine structure and processing parameters, the modal analysis of precision micro slitting turn-milling machine tool based on hammer experimental method was researched. In this paper, by analyzing the mechanism of precision micro slitting turn-milling machine tools, the multi degree-of-freedom mathematical vibration model of precision slitting turn-milling machine tools is constructed. The precision micro turn-milling machine tool is analyzed based on the hammer experiment analysis. The modal analysis obtained the first five natural frequencies and resonance speeds of the precision micro slitting turn-milling machine tool, including ST26, NN-25UB8K2 and NN-20UB87. The research results show that hammer experimental method can evaluate the vibration modal analysis of precision micro slitting turn-milling machine tools to some extent. The experimental modal analysis results guide and optimize the structural design and processing technology of precision micro slitting turn-milling machine tools.
机译:为了提高精密微型切割车辆工具的动态稳定性,减少或避免切割过程中的振动问题,优化机器结构和加工参数,基于Precision Micro Slitting-Milling机床的模态分析研究了锤子实验方法。本文通过分析精密微切转向机床的机理,构建了精密切割车辆工具的多自由度数学振动模型。基于锤击实验分析,分析了精密微型车铣床工具。模态分析获得了精密微裂转转动机床的前五个固有频率和共振速度,包括ST26,NN-25UB8K2和NN-20ub87。研究结果表明,锤击实验方法可以在一定程度上评估精密微裂缝转铣机工具的振动模态分析。实验模态分析结果指导和优化精密微裂缝转铣床工具的结构设计和加工技术。

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