Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles

At present, ablation is still considered as one of the most effective, reliable, mature and economical thermal protection methods, which is widely used in thermal protection systems (TPS) of aerospace flight vehicles. Recent years, series of advanced lightweight ablative composites (LAC) were develo...

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Main Authors: FENG Zhi-hai, SHI Jian-jun, KONG Lei, LUO Li-juan, LIANG Xin, KUANG Song-lian
Format: Article
Language:zho
Published: Journal of Materials Engineering 2020-08-01
Series:Cailiao gongcheng
Subjects:
Online Access:http://jme.biam.ac.cn/CN/Y2020/V48/I8/14
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author FENG Zhi-hai
SHI Jian-jun
KONG Lei
LUO Li-juan
LIANG Xin
KUANG Song-lian
author_facet FENG Zhi-hai
SHI Jian-jun
KONG Lei
LUO Li-juan
LIANG Xin
KUANG Song-lian
author_sort FENG Zhi-hai
collection DOAJ
description At present, ablation is still considered as one of the most effective, reliable, mature and economical thermal protection methods, which is widely used in thermal protection systems (TPS) of aerospace flight vehicles. Recent years, series of advanced lightweight ablative composites (LAC) were developed driven by major projects such as manned space flight, lunar exploration program, deep space exploration, and near space flight vehicles. Particularly, material's developing, engineering application and corresponding applied basic research of LACs filled in honeycombs and new LAC integrated ablation & insulation were emphatically introduced. Furthermore, complicated ablative mechanisms and synergistic effects of multiple thermal protection methods were explored. With the development of advanced TPS demand, multi-functionalization, compatibility and integration are the main development tendency of LAC for earth reentry or atmospheric entry aerospace flight vehicles.
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spelling doaj.art-90a44b790e154524911e205a47fae8482023-01-03T06:24:16ZzhoJournal of Materials EngineeringCailiao gongcheng1001-43811001-43812020-08-01488142410.11868/j.issn.1001-4381.2020.00020620200802Research progress in low-density ablative materials for thermal protection system of aerospace flight vehiclesFENG Zhi-hai0SHI Jian-jun1KONG Lei2LUO Li-juan3LIANG Xin4KUANG Song-lian5Science and Technology on Advanced Functional Composites Laboratory, Aerospace Research Institute of Materials&Processing Technology, Beijing 100076, ChinaScience and Technology on Advanced Functional Composites Laboratory, Aerospace Research Institute of Materials&Processing Technology, Beijing 100076, ChinaScience and Technology on Advanced Functional Composites Laboratory, Aerospace Research Institute of Materials&Processing Technology, Beijing 100076, ChinaScience and Technology on Advanced Functional Composites Laboratory, Aerospace Research Institute of Materials&Processing Technology, Beijing 100076, ChinaScience and Technology on Advanced Functional Composites Laboratory, Aerospace Research Institute of Materials&Processing Technology, Beijing 100076, ChinaScience and Technology on Advanced Functional Composites Laboratory, Aerospace Research Institute of Materials&Processing Technology, Beijing 100076, ChinaAt present, ablation is still considered as one of the most effective, reliable, mature and economical thermal protection methods, which is widely used in thermal protection systems (TPS) of aerospace flight vehicles. Recent years, series of advanced lightweight ablative composites (LAC) were developed driven by major projects such as manned space flight, lunar exploration program, deep space exploration, and near space flight vehicles. Particularly, material's developing, engineering application and corresponding applied basic research of LACs filled in honeycombs and new LAC integrated ablation & insulation were emphatically introduced. Furthermore, complicated ablative mechanisms and synergistic effects of multiple thermal protection methods were explored. With the development of advanced TPS demand, multi-functionalization, compatibility and integration are the main development tendency of LAC for earth reentry or atmospheric entry aerospace flight vehicles.http://jme.biam.ac.cn/CN/Y2020/V48/I8/14ablationlow-densityaerogelmultiple thermal protectionmultifunctional integration
spellingShingle FENG Zhi-hai
SHI Jian-jun
KONG Lei
LUO Li-juan
LIANG Xin
KUANG Song-lian
Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles
Cailiao gongcheng
ablation
low-density
aerogel
multiple thermal protection
multifunctional integration
title Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles
title_full Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles
title_fullStr Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles
title_full_unstemmed Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles
title_short Research progress in low-density ablative materials for thermal protection system of aerospace flight vehicles
title_sort research progress in low density ablative materials for thermal protection system of aerospace flight vehicles
topic ablation
low-density
aerogel
multiple thermal protection
multifunctional integration
url http://jme.biam.ac.cn/CN/Y2020/V48/I8/14
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AT shijianjun researchprogressinlowdensityablativematerialsforthermalprotectionsystemofaerospaceflightvehicles
AT konglei researchprogressinlowdensityablativematerialsforthermalprotectionsystemofaerospaceflightvehicles
AT luolijuan researchprogressinlowdensityablativematerialsforthermalprotectionsystemofaerospaceflightvehicles
AT liangxin researchprogressinlowdensityablativematerialsforthermalprotectionsystemofaerospaceflightvehicles
AT kuangsonglian researchprogressinlowdensityablativematerialsforthermalprotectionsystemofaerospaceflightvehicles