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A new process chain for ultra-precision machining potassium dihydrogen phosphate (KDP) crystal parts

机译:超精密加工磷酸二氢钾(KDP)晶体零件的新工艺链

摘要

Potassium dihydrogen phosphate (KDP) crystal parts used in high power laser systems require high figure accuracy and high laser induced damage threshold (LIDT). However KDP crystal is extremely soft, hygroscopic, brittle and thermally sensitive, which make it difficult to meet the requirements via conventional processing methods. This paper puts forward a new process chain for ultra-precision machining KDP crystals, including single point diamond turning (SPDT), magnetorheological finishing (MRF) polishing and ion beam figuring (IBF) polishing processes. A compensation SPDT process is developed as the first step of the process chain to reduce machining errors (due to vacuum suction force, spindle unbalance, etc.). As a result high shape accuracy and fine surface roughness is obtained with high machining efficiency Non-aqueous and abrasive-free MRF polishing process is then employed to remove the diamond turning marks and further improve shape accuracy and increase the LIDT. Ion beam figuring (IBF) polishing is introduced as the final step of the process chain to remove the impurity layer. Experiments are carried out to evaluate the effectiveness of the proposed ultra-precision process chain.
机译:高功率激光系统中使用的磷酸二氢钾(KDP)晶体零件需要较高的图形精度和较高的激光诱导损伤阈值(LIDT)。然而,KDP晶体极其柔软,吸湿,易碎且对热敏感,这使得通过常规加工方法难以满足要求。本文提出了一种用于超精密加工KDP晶体的新工艺链,包括单点金刚石车削(SPDT),磁流变精加工(MRF)抛光和离子束图形(IBF)抛光工艺。补偿式SPDT工艺被开发为工艺链的第一步,以减少加工误差(由于真空吸力,主轴不平衡等)。结果,以高加工效率获得了较高的形状精度和良好的表面粗糙度,然后采用了无水且无磨料的MRF抛光工艺来去除金刚石车削痕迹,并进一步提高了形状精度并提高了LIDT。在工艺链的最后步骤中引入了离子束图形(IBF)抛光,以去除杂质层。实验进行了评估所提出的超精密工艺链的有效性。

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