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北京航空精密机械研究所
收稿日期:2007-06-06,
修回日期:2007-08-13,
网络出版日期:2008-01-22,
纸质出版日期:2008-01-22
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杨志甫. 基于HHT变换的微晶玻璃超光滑表面抛光工艺技术研究[J]. 光学精密工程, 2008,16(1):35-41
Study on Supersmooth Surface Polishing Process Technology for Zerodur Based on HHT[J]. Optics and precision engineering, 2008, 16(1): 35-41.
杨志甫. 基于HHT变换的微晶玻璃超光滑表面抛光工艺技术研究[J]. 光学精密工程, 2008,16(1):35-41 DOI:
Study on Supersmooth Surface Polishing Process Technology for Zerodur Based on HHT[J]. Optics and precision engineering, 2008, 16(1): 35-41. DOI:
为了稳定地获得高质量的微晶玻璃超光滑表面,采用一种先进的超光滑表面抛光方法——定偏心浸液式抛光方法。首先分析了微晶玻璃的性能和微观结构,得出实现其超光滑表面抛光所必须的技术条件;然后,论述了浸液式超光滑表面抛光方法的基本原理及其抛光工艺过程。采用该方法稳定地获得了亚纳米量级粗糙度的超光滑表面,粗糙度达到Ra0.3nm;最后,采用HHT方法,通过粗糙度分布曲线到Hilbert谱的数学变换,得出主要抛光工艺参数与表面粗糙度之间的相互影响关系。结果表明,HHT用于超光滑表面的检测和评价,对实际抛光过程提出有效指导,有助于获得高质量的超光滑表面。
In order to obtain high quality supersmooth surface of zerodur
a sophisticated supersoomth surface polishing method—stable eccentric immersed polishing was adopted. Firstly
the property and microstructure of zerodur were analysed
and the technical condition for supersoomth surface polishing was proposed. Secondly
the principle and technical process of the polishing method were discussed. By this polishing technology
the sub-nano scale supersmooth surface of zerodur was successfully and stably obtained. Roughness reached to Ra0.3nm. Lastly
through the transform from roughness curve to Hilbert spectrum
the effects between polishing technological parameters and surface roughness were found. The results show that
the adoption of HHT for the measurement and evaluation of supersmooth surface can provide effective instruction to the practical polishing process
and redounds to obtain high quality supersmooth surface.
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