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Fractal and Wavelet Methods Used in the Feature Extraction of Machining Processing from 3D Machined KDP Surfaces

机译:分形和小波方法在3D加工KDP曲面加工加工特征提取中的应用

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Fractal and wavelet methods have been used in this study to analyze the KDP surfaces machined by accurate milling and SPDT (Single Point Diamond Turning) method respectively. Through the 2D wavelet method, the 3D origin machined surfaces were separated into the 3D overlaying roughness surfaces and 3D material structure surfaces. The overlaying roughness surfaces were composed of a large number of length scales superimposed roughness surfaces that are generated from the various vibrations in the machining process. The wavelet method can analyze the information of spatial frequency (vibrations in the machining process) and fractal method can reveal the intrinsic properties of roughness topography. Compared with the conventional methods, the integration of wavelet and fractal is more suitable to characterize the machined crystal KDP surface.
机译:分形和小波方法已用于本研究中,分别分析了通过精确铣削和SPDT(单点金刚石车削)方法加工的KDP表面。通过2D小波方法,将3D原点加工的表面分为3D重叠粗糙度表面和3D材料结构表面。覆盖的粗糙表面由大量的长度尺度叠加的粗糙表面组成,这些表面是由加工过程中的各种振动产生的。小波方法可以分析空间频率信息(加工过程中的振动),分形方法可以揭示粗糙度形貌的内在特性。与常规方法相比,小波和分形的积分更适合表征加工的晶体KDP表面。

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