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Development of CFRP mirrors for space telescopes

机译:研发用于太空望远镜的CFRP反射镜

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摘要

CFRP (Caron fiber reinforced plastics) have superior properties of high specific elasticity and low thermal expansion for satellite telescope structures. However, difficulties to achieve required surface accuracy and to ensure stability in orbit have discouraged CFRP application as main mirrors. We have developed ultra-light weight and high precision CFRP mirrors of sandwich structures composed of CFRP skins and CFRP cores using a replica technique. Shape accuracy of the demonstrated mirrors of 150 mm in diameter was 0.8 μm RMS (Root Mean Square) and surface roughness was 5 nm RMS as fabricated. Further optimization of fabrication process conditions to improve surface accuracy was studied using flat sandwich panels. Then surface accuracy of the flat CFRP sandwich panels of 150 mm square was improved to flatness of 0.2 μm RMS with surface roughness of 6 nm RMS. The surface accuracy vs. size of trial models indicated high possibility of fabrication of over 1m size mirrors with surface accuracy of 1μm. Feasibility of CFRP mirrors for low temperature applications was examined for JASMINE project as an example. Stability of surface accuracy of CFRP mirrors against temperature and moisture was discussed.
机译:CFRP(碳纤维增强塑料)具有出色的特性,可为卫星望远镜结构提供高比弹性和低热膨胀性。然而,实现所需表面精度和确保轨道稳定性的困难阻碍了CFRP作为主镜的应用。我们已经使用复制技术开发了由CFRP蒙皮和CFRP芯组成的三明治结构的超轻量级高精度CFRP反射镜。所制造的直径为150 mm的反射镜的形状精度为0.8μmRMS(均方根),表面粗糙度为5 nm RMS。研究了使用平面夹心板进一步优化制造工艺条件以提高表面精度的方法。然后,将150平方毫米的扁平CFRP夹心板的表面精度提高至0.2μmRMS的平坦度,表面粗糙度为6 nm RMS。表面精度与试验模型尺寸的对比表明,制造表面精度为1μm的尺寸超过1m的反射镜的可能性很高。以JASMINE项目为例,研究了CFRP反射镜在低温应用中的可行性。讨论了CFRP反射镜的表面精度对温度和湿度的稳定性。

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