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Investigation of the effects of spindle unbalance induced error motion on machining accuracy in ultra-precision diamond turning

机译:主轴不平衡引起的误差运动对超精密金刚石车削加工精度影响的研究

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摘要

In ultra-precision machining, error motions of the aerostatic bearing spindle (ABS) have significant effects on the machining accuracy. Spindle unbalance is a critical factor attributing to error motions of the ABS. Much work currently has been focused on the measurement of error motions and spindle balancing. However, the unbalance induced spindle error motion (UISEM) and the corresponding effects on machining accuracy are not well understood. In this paper, a dynamics model of the ABS was established to characterize the UISEM and its dynamic behavior with consideration of the unbalance effects. A series of groove turning experiments were especially designed to investigate the UISEM. Good agreement between theoretical and experimental results was achieved, demonstrating the low frequency enveloping phenomenon of the error motions of the ABS, identified as the unique superposition effects of two motion components at high frequency in the spindle vibration. In addition, the experimental result reveals that the relative distance between the rotational axis of the ABS and the tool tip varies with respect to the different spindle speeds, significantly degrading the machining accuracy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在超精密加工中,空气静压轴承主轴(ABS)的误差运动会对加工精度产生重大影响。主轴不平衡是导致ABS误差运动的关键因素。当前,许多工作都集中在误差运动和主轴平衡的测量上。但是,人们对不平衡引起的主轴误差运动(UISEM)及其对加工精度的影响还知之甚少。在本文中,建立了ABS动力学模型来表征UISEM及其动力学行为,同时考虑了不平衡效应。特别设计了一系列凹槽车削实验来研究UISEM。理论和实验结果之间取得了很好的一致性,表明了ABS误差运动的低频包络现象,这被认为是主轴振动中两个运动分量在高频下的独特叠加效应。另外,实验结果表明,ABS的旋转轴和刀尖之间的相对距离会随主轴转速的不同而变化,从而大大降低了加工精度。 (C)2015 Elsevier Ltd.保留所有权利。

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