首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Measurement method of Wolter-I type mandrel based on a contact-type profilometer
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Measurement method of Wolter-I type mandrel based on a contact-type profilometer

机译:基于接触式轮廓仪的Wolter-I型心轴的测量方法

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Contraposing the surface quality testing of a Wolter-I type mandrel after ultraprecise turning, we propose a measuring method based on a contact-type profilometer and fabricate an adjusting device to assist in measurements. By coordinating probe translational motion in the Z and Y directions, this device provides 6 degrees of freedom. Extracting the feature point on the curve of a meridian section contour, the measurement data of the two aspherical surfaces that constitute a Wolter-I type mandrel can be segregated. This feature point is used as a reference point to make the measurement coordinate and machine coordinate systems coincide with each other in order to calculate the dimensional errors of the mandrel. By choosing samples of different lengths, some property indexes of the mandrel surface, such as roughness, waviness, and form error, can be extracted from the contour error signals via the wavelet transform method. This proposed method can solve the problem that the aspheric surface dimension error and contour form error of the Wolter-I mandrel surface cannot be measured by the profilometer when the aspheric reference vertex cannot be determined. Using this method, only one measuring instrument is required to evaluate the mandrel after diamond turning, which can improve the measurement efficiency, and cover the full spatial wavelength range from the figure error to the surface roughness. In addition, this method has the potential to achieve the in situ measurement of the surface of the Wolter-I type ultra-precision mandrel.
机译:对超超声转动后的Wolter-I型心轴的表面质量测试,我们提出了一种基于接触式轮廓仪的测量方法,并制造调节装置以辅助测量。通过在Z和Y方向上协调探针平移运动,该装置提供6度的自由度。提取在子午段轮廓的曲线上的特征点,构成Wolter-I型心轴的两个非球面的测量数据可以被分离。该特征点用作参考点,以使测量坐标和机器坐标系彼此一致,以便计算心轴的尺寸误差。通过选择不同长度的样品,可以通过小波变换方法从轮廓误差信号中提取诸如粗糙度,波纹和形成误差的心轴表面的一些特性指标。该提出的方法可以解决问题:当不能确定非球面参考顶点时,通过轮廓仪不能测量Wolter-i心轴表面的非球面尺寸误差和轮廓形式误差。使用这种方法,只需要一个测量仪器来评估金刚石转动后的心轴,这可以提高测量效率,并覆盖从图形误差到表面粗糙度的全部空间波长范围。另外,该方法具有潜力能够实现Wolter-I型超精密心轴表面的原位测量。

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