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Evolutionary diamond turning of optics for error correction covering a wide spatial spectrum

机译:光学镜片的渐进式金刚石车削,可在广阔的空间范围内进行纠错

摘要

To improve the quality of diamond turned optics, it is necessary to employ a laborious postprocessing approach. However, the approach is often very hard to implement on freeform surfaces, and it greatly decreases the processing efficiency even for simple optics. An evolutionary diamond turning method is first proposed to comprehensively improve the quality of the turned optics. The evolutionary goal is to attenuate the peak value of the power spectral density of residual tool marks, and the special mutation point is observed during the evolution. Taking advantage of the modulation operation of a diamond tool in the spatial frequency domain, form accuracy, surface roughness, and surface reflectivity are all significantly improved, demonstrating the superiority of the EDT method for optics fabrication.
机译:为了提高金刚石车削光学器件的质量,有必要采用费力的后处理方法。但是,该方法通常很难在自由曲面上实施,并且即使对于简单的光学器件,也大大降低了处理效率。首先提出了一种进化的金刚石车削方法,以全面提高车削光学器件的质量。进化的目标是衰减残留工具标记的功率谱密度的峰值,并在进化过程中观察到特殊的突变点。利用金刚石工具在空间频域中的调制操作,可以显着提高形状精度,表面粗糙度和表面反射率,这证明了EDT方法在光学制造中的优越性。

著录项

  • 作者

    To S; Zhu Z; Wang P;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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