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Error Compensation Software to Remove the Low-Frequency Error of Aluminum Freeform Mirror for an Infrared Off-Axis Telescope

Journal of the Korean Society for Precision Engineering 2021;38(5):329-336.
Published online: May 1, 2021

1 경희대학교 대학원 우주탐사학과

2 한국천문연구원 천문우주기술센터

3 한국기초과학지원연구원 연구장비개발운영본부

4 한국천문연구원 대형망원경사업단

5 한밭대학교 기계소재융합시스템공학과

6 아리조나대학교 천문학과 및 스튜어드 천문대

1 School of Space Research, Kyung Hee University

2 Technology Center for Astronomy and Space Science, Korea Astronomy & Space Science Institute

3 Science Instrumentation & Management Division, Korea Basic Science Institute

4 Center for Large Telescopes, Korea Astronomy & Space Science Institute

5 Department of Mechanics-Materials Convergence System Engineering, Hanbat National University

6 Department of Astronomy and Steward Observatory, The University of Arizona

#E-mail: wjpark@kasi.re.kr, TEL: +82-42-865-2162
• Received: December 16, 2020   • Revised: March 16, 2021   • Accepted: March 25, 2021

Copyright © The Korean Society for Precision Engineering

This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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Citations

Citations to this article as recorded by  Crossref logo
  • Ultra-precision Machining Process for Free-form Space Reflectors Composed of Aluminum Alloy Materials
    Seong Hyeon Park, Hwan Ho Maeng, Hoo Cheon Lee, Jin Yong Heo, Seo Hyun Kim, Geon Hee Kim
    Journal of the Korean Society of Manufacturing Process Engineers.2026; 25(5): 1.     CrossRef

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Error Compensation Software to Remove the Low-Frequency Error of Aluminum Freeform Mirror for an Infrared Off-Axis Telescope
J. Korean Soc. Precis. Eng.. 2021;38(5):329-336.   Published online May 1, 2021
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Error Compensation Software to Remove the Low-Frequency Error of Aluminum Freeform Mirror for an Infrared Off-Axis Telescope
J. Korean Soc. Precis. Eng.. 2021;38(5):329-336.   Published online May 1, 2021
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Error Compensation Software to Remove the Low-Frequency Error of Aluminum Freeform Mirror for an Infrared Off-Axis Telescope
Image Image Image Image Image Image Image Image
Fig. 1 The flow chart of error compensation algorithm for high-precision aluminum freeform mirror fabrications
Fig. 2 Nanotech 450 UPL (Left) and SPDT machining of an aluminum mirror (Right)
Fig. 3 Concept design of a mirror (a) and measurement jig (b) for off-machine measurement
Fig. 4 The software architecture of ECS shows the data flow between the functions and parameters. The yellow and red boxes represent the main functions. The blue and green boxes indicate the outputs and global variables respectively (Color online)
Fig. 5 The ECS provides an intuitive and easy-to-use user interface. It allows an engineer to easily produce the data file
Fig. 6 Surface measurement of a freeform mirror using UA3P
Fig. 7 The surface distribution plot using raw data from UA3P before (Left) and after compensations (Right)
Fig. 8 Freeform mirror after the error compensation process
Error Compensation Software to Remove the Low-Frequency Error of Aluminum Freeform Mirror for an Infrared Off-Axis Telescope
Parameters Cutting condition
Material Al6061-T6
RPM [rev/min] 120
Feed [μm /rev] 10
Nose radius [mm] 0.3
Depth of cut [μm] 2
Cutting fluid Mist
Number of points 1,800,000
Table 1 Machining conditions for the ultra-precision machining of the aluminum freeform mirror using Nanotech 450 UPL