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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >A parametric modeling method for the pose-dependent dynamics of bi-rotary milling head
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A parametric modeling method for the pose-dependent dynamics of bi-rotary milling head

机译:双旋转铣头姿势依赖动态的参数建模方法

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摘要

Bi-rotary milling head is one of the core components of five-axis machining center, and its dynamic characteristics directly affect the machining stability and accuracy. During the sculptured surface machining, the bi-rotary milling head exhibits varying dynamics in various machining postures. To facilitate rapid evaluation of the dynamic behavior of the bi-rotary milling head within the whole workspace, this article presents a method for parametrically establishing dynamic equation at different postures. The rotating and swing shafts are treated as rigid bodies. The varying stiffness of the flexible joints (such as bearings and hirth coupling) affected by gravity and cutting force at different swing angles is analyzed and then a multi-rigid-body dynamic model of the bi-rotary milling head considering the pose-varying joint stiffness is established. The Lagrangian method is employed to deduce the parametric dynamic equation with posture parameters. The static stiffness, natural frequencies and frequency response functions at different postures are simulated using the parametric equation and verified by the impact testing experiments. The theoretical and experimental results show that the dynamics of the bi-rotary milling head vary with the machining postures, and the proposed method can be used for efficient and accurate evaluation of the pose-dependent dynamics at the design stage.
机译:双旋转铣头是五轴加工中心的芯部件之一,其动态特性直接影响加工稳定性和精度。在雕刻表面加工过程中,双旋转铣头在各种加工姿势中表现出不同的动态。为了便于在整个工作空间内快速评估双旋转铣头的动态行为,本文提出了一种在不同姿势处参数建立动态方程的方法。旋转和摆动轴被视为刚性体。分析了由不同摆动角度影响的柔性关节(例如轴承和围绕耦合)的变化刚度,然后考虑到姿势不同的关节的双旋转铣头的多刚体动态模型僵硬成立。采用拉格朗日方法用姿势参数推导参数动态方程。使用参数方程模拟不同姿势的静态刚度,自然频率和频率响应函数,并通过冲击测试实验验证。理论和实验结果表明,双旋转铣头的动态随机械加工姿势而变化,并且所提出的方法可用于设计阶段的姿势依赖动态的高效和准确评估。

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