首页> 外文会议>International Manufacturing Science and Engineering Conference >SENSITIVITY ANALYSIS BETWEEN ERROR MOTIONS AND MACHINED SHAPE ERRORS IN FIVE-AXIS MACHINING CENTERS: IN CASE OF S-SHAPED MACHINING TEST BY A SQUARE END MILL
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SENSITIVITY ANALYSIS BETWEEN ERROR MOTIONS AND MACHINED SHAPE ERRORS IN FIVE-AXIS MACHINING CENTERS: IN CASE OF S-SHAPED MACHINING TEST BY A SQUARE END MILL

机译:五轴加工中心误差运动与机加工形状误差的敏感性分析:方形铣刀S形加工试验的情况下

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Five-axis machining center, combined three linear and two rotary axes, has been increasingly used in complex surface machining. However, as the two additional axes, the machined surface under table coordinate system is usually different from the tool motion under machine coordinate system, and as a result, it is very tough to predict the machined shape errors caused by each axes error motions. This research presents a new kind of sensitivity analysis method, to find the relationship between error motions of each axis and geometric errors of machined shape directly. In this research, the S-shaped machining test is taken as a sample to explain how the sensitivity analysis makes sense. The results show that the presented sensitivity analysis can investigate how the error motions affect the S-shaped machining accuracy and predicted the influence of error motions on certain positions, such as the reversal errors of the axes around motion reversal points. It can be proved that the presented method can help the five-axis machining center users to predict the machining errors on the designed surface of each axes error motions.
机译:五轴加工中心,组合三个线性和两个旋转轴,越来越多地用于复杂的表面加工。然而,作为两个额外的轴,下台坐标系下的加工表面通常与机器坐标系下的刀具运动不同,结果是预测由每个轴误差运动引起的加工形状误差非常难以。本研究提出了一种新的敏感性分析方法,可以直接找到每个轴的误差运动与机加工形状的几何误差之间的关系。在本研究中,S形加工试验作为样品,以解释敏感性分析如何有意义。结果表明,所呈现的灵敏度分析可以研究误差运动如何影响S形加工精度,并预测误差运动对某些位置的影响,例如运动反转点周围的轴的反转误差。可以证明所提出的方法可以帮助五轴加工中心用户预测每个轴误差运动的设计表面上的加工误差。

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