Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications

Polyimide diffractive membrane lens can be used in space optical telescope to reduce the size and mass of an imaging system. However, traditional commercial aromatic polyimide membrane is hard to meet the challenging requirements of dimensional stability and optical homogeneity for optical use. Base...

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Main Authors: Jiajia Yin, Danbo Mao, Bin Fan
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/7/1001
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spelling doaj-ece47556623b4fb3a5d88d7e03569b002021-03-25T00:06:48ZengMDPI AGPolymers2073-43602021-03-01131001100110.3390/polym13071001Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical ApplicationsJiajia Yin0Danbo Mao1Bin Fan2Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, ChinaInstitute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, ChinaInstitute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, ChinaPolyimide diffractive membrane lens can be used in space optical telescope to reduce the size and mass of an imaging system. However, traditional commercial aromatic polyimide membrane is hard to meet the challenging requirements of dimensional stability and optical homogeneity for optical use. Based on molecular structure design and the optimization of fabrication process, the prepared copolyamide-imide membrane achieved the desired performance of membrane as an optical material. It showed a very low coefficient of thermal expansion (CTE), which is 0.95 ppm/°C over a temperature range of −150–100 °C and relatively low coefficient of moisture expansion (CME), which is only 13.30 ppm/% RH (0~90% RH). For the optical use, the prepared copolyamide-imide membrane (φ200 mm) achieved good thickness uniformity with wave-front error smaller than λ/30 (λ = 632 nm) in RMS (root mean square). Besides, it simultaneously meets the optical, thermal, and mechanical requirements for space telescope use. Copolyamide-imide membranes in this research with good comprehensive performance can be used as large aperture membrane optical system architectures.https://www.mdpi.com/2073-4360/13/7/1001copolyamide-imide membraneoptical homogeneitythermal expansion behaviormoisture expansion behavior
collection DOAJ
language English
format Article
sources DOAJ
author Jiajia Yin
Danbo Mao
Bin Fan
spellingShingle Jiajia Yin
Danbo Mao
Bin Fan
Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications
Polymers
copolyamide-imide membrane
optical homogeneity
thermal expansion behavior
moisture expansion behavior
author_facet Jiajia Yin
Danbo Mao
Bin Fan
author_sort Jiajia Yin
title Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications
title_short Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications
title_full Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications
title_fullStr Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications
title_full_unstemmed Copolyamide-Imide Membrane with Low CTE and CME for Potential Space Optical Applications
title_sort copolyamide-imide membrane with low cte and cme for potential space optical applications
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2021-03-01
description Polyimide diffractive membrane lens can be used in space optical telescope to reduce the size and mass of an imaging system. However, traditional commercial aromatic polyimide membrane is hard to meet the challenging requirements of dimensional stability and optical homogeneity for optical use. Based on molecular structure design and the optimization of fabrication process, the prepared copolyamide-imide membrane achieved the desired performance of membrane as an optical material. It showed a very low coefficient of thermal expansion (CTE), which is 0.95 ppm/°C over a temperature range of −150–100 °C and relatively low coefficient of moisture expansion (CME), which is only 13.30 ppm/% RH (0~90% RH). For the optical use, the prepared copolyamide-imide membrane (φ200 mm) achieved good thickness uniformity with wave-front error smaller than λ/30 (λ = 632 nm) in RMS (root mean square). Besides, it simultaneously meets the optical, thermal, and mechanical requirements for space telescope use. Copolyamide-imide membranes in this research with good comprehensive performance can be used as large aperture membrane optical system architectures.
topic copolyamide-imide membrane
optical homogeneity
thermal expansion behavior
moisture expansion behavior
url https://www.mdpi.com/2073-4360/13/7/1001
work_keys_str_mv AT jiajiayin copolyamideimidemembranewithlowcteandcmeforpotentialspaceopticalapplications
AT danbomao copolyamideimidemembranewithlowcteandcmeforpotentialspaceopticalapplications
AT binfan copolyamideimidemembranewithlowcteandcmeforpotentialspaceopticalapplications
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