Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels

Foam-filled composite sandwich structures have demonstrated superior thermal insulation performance, making them highly suitable for cryogenic tanks in launch vehicles. This study focused on the cryogenic insulation characteristics of carbon fiber-reinforced plastic (CFRP) fluted-core sandwich panel...

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Main Authors: Li, Xinyu, Xiao, Sihang, Wen, Tianhua, Xiao, Zhongmin, Lei, Hongshuai
Other Authors: School of Mechanical and Aerospace Engineering
Format: Article
Language:English
Published: 2024
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Online Access:https://hdl.handle.net/10356/175805
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1758052024-05-07T01:15:33Z Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels Li, Xinyu Xiao, Sihang Wen, Tianhua Xiao, Zhongmin Lei, Hongshuai School of Mechanical and Aerospace Engineering Engineering Fluted-core sandwich panel Approximate analytical method Foam-filled composite sandwich structures have demonstrated superior thermal insulation performance, making them highly suitable for cryogenic tanks in launch vehicles. This study focused on the cryogenic insulation characteristics of carbon fiber-reinforced plastic (CFRP) fluted-core sandwich panels filled with polyimide foam. The fluted-core sandwich panel was simplified into a homogeneous multilayer plate to establish a one-dimensional heat transfer theoretical model. This model was used to predict steady-state temperature approximate solutions by linearizing the temperature-dependent thermal conductivity. The sandwich specimens were fabricated using an integrated forming co-cured method. Self-developed cryogenic insulation experiment and finite element simulations were conducted to acquire temperature distributions and validated the precision of the theoretical model. Results showed that the specimens achieved insulation temperature difference exceeding 143.05 °C, with effective thermal conductivity reaching 0.0326 W/(m·°C), significantly lower than that of CFRP. The temperature distributions along the thickness direction displayed a nonlinear increasing trend. The cryogenic thermal short effect was noticeable at the junction of the bottom facesheet and web. An analysis of geometric parameter influences revealed that increasing the short span, core height, or reducing web thickness could enhance thermal insulation characteristics with minimum effective thermal conductivity of 0.0276 W/(m·°C) and lead to a more uniform distribution of bottom temperatures with minimum temperature difference of 3.30 °C. These findings provide a foundational analysis for designing cryogenic insulation structures. This work was supported by the National Key Research and Development of China (2018YFA0702804) and the National Natural Science Foundation of China (12122202). 2024-05-07T01:15:33Z 2024-05-07T01:15:33Z 2024 Journal Article Li, X., Xiao, S., Wen, T., Xiao, Z. & Lei, H. (2024). Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels. Applied Thermal Engineering, 246, 122917-. https://dx.doi.org/10.1016/j.applthermaleng.2024.122917 1359-4311 https://hdl.handle.net/10356/175805 10.1016/j.applthermaleng.2024.122917 2-s2.0-85187686070 246 122917 en Applied Thermal Engineering © 2024 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
Fluted-core sandwich panel
Approximate analytical method
spellingShingle Engineering
Fluted-core sandwich panel
Approximate analytical method
Li, Xinyu
Xiao, Sihang
Wen, Tianhua
Xiao, Zhongmin
Lei, Hongshuai
Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
description Foam-filled composite sandwich structures have demonstrated superior thermal insulation performance, making them highly suitable for cryogenic tanks in launch vehicles. This study focused on the cryogenic insulation characteristics of carbon fiber-reinforced plastic (CFRP) fluted-core sandwich panels filled with polyimide foam. The fluted-core sandwich panel was simplified into a homogeneous multilayer plate to establish a one-dimensional heat transfer theoretical model. This model was used to predict steady-state temperature approximate solutions by linearizing the temperature-dependent thermal conductivity. The sandwich specimens were fabricated using an integrated forming co-cured method. Self-developed cryogenic insulation experiment and finite element simulations were conducted to acquire temperature distributions and validated the precision of the theoretical model. Results showed that the specimens achieved insulation temperature difference exceeding 143.05 °C, with effective thermal conductivity reaching 0.0326 W/(m·°C), significantly lower than that of CFRP. The temperature distributions along the thickness direction displayed a nonlinear increasing trend. The cryogenic thermal short effect was noticeable at the junction of the bottom facesheet and web. An analysis of geometric parameter influences revealed that increasing the short span, core height, or reducing web thickness could enhance thermal insulation characteristics with minimum effective thermal conductivity of 0.0276 W/(m·°C) and lead to a more uniform distribution of bottom temperatures with minimum temperature difference of 3.30 °C. These findings provide a foundational analysis for designing cryogenic insulation structures.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Li, Xinyu
Xiao, Sihang
Wen, Tianhua
Xiao, Zhongmin
Lei, Hongshuai
format Article
author Li, Xinyu
Xiao, Sihang
Wen, Tianhua
Xiao, Zhongmin
Lei, Hongshuai
author_sort Li, Xinyu
title Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
title_short Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
title_full Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
title_fullStr Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
title_full_unstemmed Cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
title_sort cryogenic insulation performance of polyimide foam-filled fluted-core composite sandwich panels
publishDate 2024
url https://hdl.handle.net/10356/175805
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