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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Nonlinear dynamics of the milling head drive mechanism in five-axis CNC machine tools
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Nonlinear dynamics of the milling head drive mechanism in five-axis CNC machine tools

机译:五轴CNC机床中铣头驱动机构的非线性动力学

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摘要

As an essential assembly in five-axis CNC machine tools, the milling head with high-power and high-torque is used in processing the titanium, superalloy, and other high hardness materials. However, nonlinear friction, structural flexibility, and other factors affect the positioning precision and dynamic characteristics of the milling head seriously. To achieve perfect performance, dynamics investigation is necessary in the initial design. Firstly, considering the nonlinear friction and structural flexibility, a nonlinear dynamics model is established. Secondly, based on least squares method and genetic algorithm, static and dynamic parameters are identified for the LuGre friction model, and the axial elastic coefficients are calculated by the pressure tests. Finally, the dynamics model is solved by Newton-Simpson algorithm and Newmark-beta algorithm. Additionally, influences of related parameters on dynamics performance of the milling head drive mechanism are investigated. The theoretical model and experimental results derived in this paper provide basis for the optimal design and error compensation control of the milling head drive system.
机译:作为五轴CNC机床中的主要组件,具有大功率和高扭矩的铣头用于加工钛,超合金和其他高硬度材料。然而,非线性摩擦,结构性灵活性和其他因素严重影响铣削头的定位精度和动态特性。为了实现完美的性能,在初始设计中是必要的动力学调查。首先,考虑到非线性摩擦和结构性灵活性,建立了非线性动力学模型。其次,基于最小二乘法和遗传算法,识别用于Lugre摩擦模型的静态和动态参数,并且通过压力测试计算轴向弹性系数。最后,Dynamics模型由Newton-Simpson算法和Newmark-Beta算法解决。另外,研究了相关参数对铣头驱动机构的动力学性能的影响。本文得出的理论模型和实验结果为铣头驱动系统的最佳设计和误差补偿控制提供了基础。

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