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超轻超薄反射镜制造过程中的变形控制研究 被引量:6

Controlling Distortion in the Process of Ultra-thin Mirror Manufacture
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摘要 针对超轻超薄反射镜(超薄镜)径厚比大、自身刚度小、单独加工难度大的问题,采用基底支撑方式对超薄镜进行加工。我们研究了在加工过程中粘接、温度、应力等因素所导致的超薄镜变形的控制手段并对变形控制效果提出了评判方法。通过195mm口径超薄镜工艺实验对控制变形的工艺进行改进,用改进后的加工工艺进行了340mm口径的超薄镜制造,得到了比较理想的面形,下盘后PV值5.74λ,RMS值1.02λ(λ=632.8nm)。这表明在超薄镜制造过程中变形控制的技术方案可行,工艺改进方向正确。同时,实验结果表明,超薄镜制造过程中的变形最终表现为镜面出现非重力因素引起的像散。 Because of the difficulty to fabricate the ultra-thin mirror individually, we proposed a base supporting method. Methods which were applied to control the distortion caused by adhesion, heat, and stress during ultra-thin mirror fabricating were researched, and means to estimate the effect was put forward. Technology of controlling mirror distortion was improved based on the experience on Ф195 mm ultra-thin mirror manufacture; Then a Ф340 mm ultra-thin mirror was fabricated by improved technics. When it was de-blocked from blocking body, the surface error of PV=5.74λ, RMS=1.02λ (λ=632.8 nm) caused by distortion is acceptable. Those experiments indicate that those technics can control distortion effectively and technical improvement is correct. Results of these experiments also indicate that the final error on ultra-thin mirror surface is astigmatism, which is not caused by gravity.
出处 《光电工程》 EI CAS CSCD 北大核心 2008年第8期128-133,共6页 Opto-Electronic Engineering
基金 江苏省高校自然科学研究计划项目(05KJA14003)
关键词 空间光学 超薄镜 加工工艺 变形控制 space optics ultra-thin mirror fabrication technics distortion control
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  • 1J, Burge, S. Perigne, R. Angel el al.. NGST mirror system demonstrator from the University of Arizona[C]. Proc. ,SPIE.2001, 4451: 27-38. 被引量:1
  • 2Su Ding-qiang, Jiang Shengtao, Zou Weiyao et al.. Experiment system of thin-mirror active optics[C]. Proc. SPIE, 1994, 2199:609-621. 被引量:1
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