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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Effects of a drawbar design and force on multipurpose aerostatic spindle dynamics
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Effects of a drawbar design and force on multipurpose aerostatic spindle dynamics

机译:拉杆设计与力对多用途空气轴主轴动力学的影响

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The tool point frequency response function (FRF), or receptance, is an important dynamic condition for machining processes, especially milling and finishing, as it enables users to calculate the most appropriate operating conditions, namely spindle speed and depth of cut, for achieving the best spindle performance. In this paper, we evaluate the effects of the drawbar on the tool point FRF of a multipurpose aerostatic spindle using a new procedure. The drawbar was considered to be nested inside the shaft and the receptance of the assembly was predicted based on a multiple-point receptance coupling approach. We coupled the tool holder and the tool to the receptance, so two types of contact parameter were considered simultaneously. We determined the contact parameters between the shaft and the tool holder, and between the tool holder and the tool, and included the values obtained when coupling with different combinations of tool holder and tool. We also evaluated the shaft-tool holder contact parameter for three different axial pulling forces. Moreover, we investigated the aerostatic bearing dynamics, including the stiffness and damping factor, in three different cases of supplied air pressure. Finally, we estimated the FRF of the tool under several aerostatic bearing and drawbar conditions and calculated stability lobe diagrams based on the estimated FRF. These results show that considering the drawbar improves the estimate of the tool point FRF and, subsequently, the stability lobe diagram. The effect of varying the length and density of the drawbar on the tool point FRF was also investigated.
机译:刀具点频率响应功能(FRF)或接收,是加工工艺的重要动态条件,特别是铣削和整理,因为它使用户能够计算最合适的操作条件,即用于实现的主轴速度和切割深度,以实现最好的主轴性能。在本文中,我们使用新程序评估牵引杆对多用途空气螺柱刀具FRF的影响。认为牵引杆嵌套在轴内,基于多点接收耦合方法预测组件的接收。我们耦合到接收器的刀架和工具,因此同时考虑两种类型的接触参数。我们确定了轴和工具架之间的接触参数,以及刀架和工具之间,并包括与耦合时获得的刀架和工具的不同组合时获得的值。我们还评估了三种不同的轴向拉力的轴刀具接触参数。此外,我们调查了空气静力轴承动力学,包括刚度和阻尼因子,在三种不同的供应空气压力情况下。最后,我们估计了在若干空气静止轴承和绘图条件下工具的FRF,并根据估计的FRF计算稳定性叶片图。这些结果表明,考虑牵引杆改善了刀具FRF的估计,随后,稳定性瓣图。还研究了改变牵引杆上的牵引杆的长度和密度的效果。

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