Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites

The polyimide fiber/ bismaleimide resin composites were prepared by the autoclave molding process. Effects of volume fraction of polyimide fiber and ambient temperature on the high speed impact properties were investigated using the air cannon impact test. The results demonstrate that the anti-high...

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Main Authors: GU Shan-qun, ZHANG Dai-jun, LIU Yan-feng, ZOU Qi, CHEN Xiang-bao, LI Jun, FU Shan-long
Format: Article
Language:zho
Published: Journal of Materials Engineering 2021-01-01
Series:Cailiao gongcheng
Subjects:
Online Access:http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2020.000034
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author GU Shan-qun
ZHANG Dai-jun
LIU Yan-feng
ZOU Qi
CHEN Xiang-bao
LI Jun
FU Shan-long
author_facet GU Shan-qun
ZHANG Dai-jun
LIU Yan-feng
ZOU Qi
CHEN Xiang-bao
LI Jun
FU Shan-long
author_sort GU Shan-qun
collection DOAJ
description The polyimide fiber/ bismaleimide resin composites were prepared by the autoclave molding process. Effects of volume fraction of polyimide fiber and ambient temperature on the high speed impact properties were investigated using the air cannon impact test. The results demonstrate that the anti-high speed impact property of S35 polyimide fiber reinforced composites is superior to that of TC4 titanium alloy under equal area mass.And polyimide fiber composites have excellent high temperature anti-high speed impact property. Meanwhile, the results also indicate that the volume fraction of polyimide fiber can improve the anti-high speed impact property of the composites. Also, the ballistic energy absorption of polyimide fiber reinforced composites with 73% volume fraction at room temperature can reach 227.0 J, which is 240% higher than that of TC4 titanium alloy under equal area mass. Furthermore, when the impact velocity is low, the composites appear a circular pit with fiber delamination around on the impact surface, while the back surface appears delamination along the fiber direction. Also, when the impact velocity is high, a circular hole with fiber delamination around is formed on the impact surface of composites, and large area fiber delamination along the fiber direction is observed on the back surface.
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spelling doaj.art-aff0fa8f89234f98b1a7ec4f0eb595462023-01-02T02:21:51ZzhoJournal of Materials EngineeringCailiao gongcheng1001-43811001-43812021-01-0149111912510.11868/j.issn.1001-4381.2020.00003420210114Anti-high speed impact properties of polyimide fiber/bismaleimide resin compositesGU Shan-qun0ZHANG Dai-jun1LIU Yan-feng2ZOU Qi3CHEN Xiang-bao4LI Jun5FU Shan-long6Soft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSoft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSoft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSoft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSoft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSoft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSoft Materials Technology Center, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaThe polyimide fiber/ bismaleimide resin composites were prepared by the autoclave molding process. Effects of volume fraction of polyimide fiber and ambient temperature on the high speed impact properties were investigated using the air cannon impact test. The results demonstrate that the anti-high speed impact property of S35 polyimide fiber reinforced composites is superior to that of TC4 titanium alloy under equal area mass.And polyimide fiber composites have excellent high temperature anti-high speed impact property. Meanwhile, the results also indicate that the volume fraction of polyimide fiber can improve the anti-high speed impact property of the composites. Also, the ballistic energy absorption of polyimide fiber reinforced composites with 73% volume fraction at room temperature can reach 227.0 J, which is 240% higher than that of TC4 titanium alloy under equal area mass. Furthermore, when the impact velocity is low, the composites appear a circular pit with fiber delamination around on the impact surface, while the back surface appears delamination along the fiber direction. Also, when the impact velocity is high, a circular hole with fiber delamination around is formed on the impact surface of composites, and large area fiber delamination along the fiber direction is observed on the back surface.http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2020.000034polyimide fiber/bismaleimide resin compositestc4 titanium alloyfan containment caseautoclave moldinganti-high speed impact property
spellingShingle GU Shan-qun
ZHANG Dai-jun
LIU Yan-feng
ZOU Qi
CHEN Xiang-bao
LI Jun
FU Shan-long
Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites
Cailiao gongcheng
polyimide fiber/bismaleimide resin composites
tc4 titanium alloy
fan containment case
autoclave molding
anti-high speed impact property
title Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites
title_full Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites
title_fullStr Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites
title_full_unstemmed Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites
title_short Anti-high speed impact properties of polyimide fiber/bismaleimide resin composites
title_sort anti high speed impact properties of polyimide fiber bismaleimide resin composites
topic polyimide fiber/bismaleimide resin composites
tc4 titanium alloy
fan containment case
autoclave molding
anti-high speed impact property
url http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2020.000034
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AT zouqi antihighspeedimpactpropertiesofpolyimidefiberbismaleimideresincomposites
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