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Automatic Surface Characterization for Micro-Structured Surfaces Fabricated by Fast Tool Servo Diamond Turning

机译:快速工具伺服金刚石车削加工的微结构表面的自动表面表征

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摘要

Fast tool servo diamond turning is a promising machining method for precision and complex micro-structured surfaces with spatial wavelength above tens of microns. It is crucial to measure and characterize the micro-structured surfaces to sub-micrometer form accuracy. The general purpose measurement instruments are not able to evaluate the true form accuracy between the measured surface and designed surface. Therefore, in this paper an automatic surface characterization method is proposed to evaluate the form accuracy for micro-structured surfaces. The fabricated surfaces can be measured by any high-resolution measurement instruments. After the surface measurement, an iterative closest point (ICP) algorithm is modified to align the measured surfaces to the designed surfaces with the form error evenly distributed over the whole surface. After alignment, the designed surface height corresponding to each measured point is calculated to form the areal error map. 3D surface parameters are chosen and calculated from the error map to characterize the surface form error. Experimental results demonstrate the effectiveness of the proposed surface characterization method.
机译:快速的工具伺服金刚石车削是一种有前途的加工方法,适用于空间波长大于数十微米的精密和复杂的微结构表面。测量和表征微结构表面至亚微米形式的精度至关重要。通用测量仪器无法评估被测表面和设计表面之间的真实形状精度。因此,本文提出了一种自动表面表征方法来评估微结构表面的形状精度。可以通过任何高分辨率测量仪器来测量所制造的表面。在表面测量之后,修改了迭代最近点(ICP)算法,以使测量的表面与设计的表面对齐,并且形状误差均匀地分布在整个表面上。对准后,计算与每个测量点相对应的设计表面高度,以形成面误差图。从误差图中选择3D表面参数并进行计算,以表征表面形状误差。实验结果证明了所提出的表面表征方法的有效性。

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