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Investigation of the Dynamic Characteristics and Machining Stability of a Bi-rotary Milling Tool

机译:双旋转铣刀的动态特性和加工稳定性的研究

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Bi-rotary milling head is the primary component of multiple-axis machine tool toward the multiply machining operation. The machining performance is greatly related to the structure characteristics and positioning precisions of the swivel head. This study was aimed to develop the bi-rotary milling head module, which is composed of direct drive motor, cross roller bearings and motorized spindle unit. In order to evaluate the machining stability at design phase, the dynamic characteristics of the rotary milling was first analyzed by finite element method. Especially, the variations of the dynamic characteristics of the spindle tool with the changing of the titling configuration of swivel axis were examined. To consider the accurate presentation of a spindle tool system and swivel mechanism, the bearings in the rolling components are also included in the finite element model and simulated with surface contact elements with adequate contact stiffness. The dynamic frequency response function of the spindle tool at different swinging positions were predicted for comparisons, which were further used to calculate the machining stability based on the machining mechanics. Current results show that the feeding direction and swinging positions of rotary milling head have significant influences on the dynamic characteristics and machining ability of the spindle tool. The variations of the cutting depth with the swinging of A axis fall in the range of 11 to 40 %, depending on the feeding direction and swinging angle. The analysis results are expected to clearly demonstrate the variation of the machining performance of the spindle tool under different milling configurations. The developed model and modeling approach can be applied to develop a five axis milling machine with desired dynamic and machining performance.
机译:双旋转铣头是多轴机床朝着多重加工操作的主要组成部分。加工性能与旋转头的结构特性和定位精度密切相关。这项研究旨在开发双旋转铣头模块,该模块由直接驱动马达,交叉滚子轴承和电动主轴单元组成。为了评估设计阶段的加工稳定性,首先通过有限元方法分析了旋转铣削的动态特性。特别地,研究了主轴工具的动态特性随旋转轴的倾斜配置的变化。为了考虑主轴工具系统和旋转机构的精确表示,滚动部件中的轴承也包括在有限元模型中,并使用具有足够接触刚度的表面接触元件进行模拟。预测了主轴工具在不同摆动位置上的动态频率响应函数,以便进行比较,然后根据加工力学将其用于计算加工稳定性。目前的结果表明,旋转铣头的进给方向和摆动位置对主轴刀具的动态特性和加工能力有重大影响。随着进给方向和摆动角度的变化,切削深度随A轴摆动的变化范围在11%至40%之间。预期分析结果将清楚地表明主轴刀具在不同铣削配置下的加工性能的变化。所开发的模型和建模方法可用于开发具有所需动力和加工性能的五轴铣床。

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