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Optimal Parameters Analysis of Dynamical Vibration Absorption Lathe Tool with Large Length to Diameter Ratio

机译:大长度与直径比具有大长度的动态振动吸收车床的最佳参数分析

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The multi flexible body dynamical simulation model of dynamical vibration absorption lathe tool with large length to diameter ratio is built up according to the actual experiment lathe tool by using the software ADAMS and ANSYS.The experiment data which are consistent with the simulation result verify the correctness of the multi flexible body dynamical model.Aiming at reducing the peak value of system frequency response,the dynamical vibration absorption system is optimized.The optimized frequency curve shows that the system frequency response is improved obviously.On this basis the influence of the mass of heavy turning body on the vibration system is discussed.Also,the relationship of the mass of heavy turning body and the optimal system parameters including equivalent stiffness coefficient and equivalent viscous damping coefficient is studied.This offers the design considerations about the structure of the dynamical vibration absorption lathe tool with large length to diameter ratio.
机译:根据实际实验车床工具使用软件ADAMS和ANSYS,建立了大长度为直径比的动力振动吸收车床工具的多柔性体动力模拟模型。与仿真结果一致的实验数据验证了正确性在多柔性体动力学模型中。优化动力振动吸收系统在减小系统频率响应的峰值时,优化的频率曲线表明,系统频率响应明显提高。这依据了质量的影响讨论了振动系统上的重型车身。研究了重型转动体质量和最佳系统参数的关系,包括等效刚度系数和等效粘性阻尼系数。这提供了关于动态振动结构的设计考虑因素吸收车床工具,长度为直径率Ø。

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