Evaluation for Thermal Deformation of Large Segmented Mirror Structure Based on STOP Analysis
Author:
Affiliation:
1. 連絡先著者(Corresponding author):masuoka.tadashi@jaxa. jp
2. 宇宙航空研究開発機構
Publisher
Japan Society for Aeronautical and Space Sciences
Link
https://www.jstage.jst.go.jp/article/jjsass/72/4/72_72_107/_pdf
Reference18 articles.
1. 1) Chanan, G., Troy, M., Dekens, F., Michaels, S., Nelson, J., Mast, T. and Kirkman, D.: Phasing the Mirror Segments of the Keck Telescopes: the Broadband Phasing Algorithm, Applied Optics, 37, 1 (1998), pp. 140-155.
2. 2) Menzel, M., Davis, M., Parrish, K., Lawrence, J., Stewar, A., Cooper, J., Irish, S., Mosier, G., Levine, M., Pitman, J., Walsh, G., Maghami, P., Thomson, S., Wooldridge, E., Boucarut, R., Feinberg, L., Turner, G., Kalia, P. and Bower, C.: The Design, Verification, and Performance of the James Webb Space Telescope, Publications of the Astronomical Society of the Pacific, 135:058002, 2023.
3. 3) Lu, G., Zhou, J., Cai, G., Fang, G., Lu, L. and Peng, F.: Studies of Thermal Deformation and Shape Control of a Space Planar Phased Array Antenna, Aerospace Science and Technology, 93 (2019), 105311.
4. 4) Arao, Y., Koyanagi, J., Utsunomiya, S. and Kawada, H.: Analysis of Thermal Deformation on a Honeycomb Sandwich CFRP Mirror, Mechanics of Advanced Materials and Structures, 17 (2010), pp. 328-334.
5. 5) Zhengchun, D., Mengrui, Z., Zhinguo, W. and Jianguo, Y.: Design and Application of Composite Platform with Extreme Low Thermal Deformation for Satellite, Composite Structures, 152 (2016), pp. 693-703.
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