Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite

In order to study the fatigue behavior of carbon fiber reinforced composite and the effect of stress level on its fatigue residual stiffness, monotonic tension tests and fatigue tests were conducted and the fracture morphology of carbon fiber composite was observed by using scanning electron microsc...

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Main Authors: QIU Shuang, ZHOU Jinyu
Format: Article
Language:zho
Published: Journal of Aeronautical Materials 2018-04-01
Series:Journal of Aeronautical Materials
Subjects:
Online Access:http://html.rhhz.net/CHXB/html/2018-2-110.htm
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spelling doaj-6793103ee2ae425182d5023c334293e72020-11-24T21:02:15ZzhoJournal of Aeronautical MaterialsJournal of Aeronautical Materials1005-50531005-50532018-04-0138211011710.11868/j.issn.1005-5053.2017.000076201802000076Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced CompositeQIU ShuangZHOU JinyuIn order to study the fatigue behavior of carbon fiber reinforced composite and the effect of stress level on its fatigue residual stiffness, monotonic tension tests and fatigue tests were conducted and the fracture morphology of carbon fiber composite was observed by using scanning electron microscope (SEM). The results show that the fatigue performance of carbon fiber reinforced composite is good at room temperature, and the cycle time is more than 10<sup>6</sup> under 48% ultimate tensile strength. The decline rate of its residual stiffness is different under different stress levels. In the early stage of the fatigue, the decline rate of residual stiffness is relatively lower under high stress level, while it is higher under low stress level. In addition, the boundary characteristics of residual stiffness is also different under different stress levels. The boundaries under low stress are significant, while the boundaries under high stress are obscure. The results of fracture analysis show that with the decrease of stress level, the fatigue failure mode is complicated. Under high stress, the fracture of the fiber cluster is the main feature, while at low stress level the fatigue failure mode includes fiber and matrix fracture, interfacial debonding and fiber pull-out, etc.http://html.rhhz.net/CHXB/html/2018-2-110.htmcarbon fiber reinforced compositefatigue behaviorstress levelresidual stiffnessfracture
collection DOAJ
language zho
format Article
sources DOAJ
author QIU Shuang
ZHOU Jinyu
spellingShingle QIU Shuang
ZHOU Jinyu
Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite
Journal of Aeronautical Materials
carbon fiber reinforced composite
fatigue behavior
stress level
residual stiffness
fracture
author_facet QIU Shuang
ZHOU Jinyu
author_sort QIU Shuang
title Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite
title_short Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite
title_full Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite
title_fullStr Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite
title_full_unstemmed Effect of Different Stress Levels on Fatigue Residual Stiffness of Carbon Fiber Reinforced Composite
title_sort effect of different stress levels on fatigue residual stiffness of carbon fiber reinforced composite
publisher Journal of Aeronautical Materials
series Journal of Aeronautical Materials
issn 1005-5053
1005-5053
publishDate 2018-04-01
description In order to study the fatigue behavior of carbon fiber reinforced composite and the effect of stress level on its fatigue residual stiffness, monotonic tension tests and fatigue tests were conducted and the fracture morphology of carbon fiber composite was observed by using scanning electron microscope (SEM). The results show that the fatigue performance of carbon fiber reinforced composite is good at room temperature, and the cycle time is more than 10<sup>6</sup> under 48% ultimate tensile strength. The decline rate of its residual stiffness is different under different stress levels. In the early stage of the fatigue, the decline rate of residual stiffness is relatively lower under high stress level, while it is higher under low stress level. In addition, the boundary characteristics of residual stiffness is also different under different stress levels. The boundaries under low stress are significant, while the boundaries under high stress are obscure. The results of fracture analysis show that with the decrease of stress level, the fatigue failure mode is complicated. Under high stress, the fracture of the fiber cluster is the main feature, while at low stress level the fatigue failure mode includes fiber and matrix fracture, interfacial debonding and fiber pull-out, etc.
topic carbon fiber reinforced composite
fatigue behavior
stress level
residual stiffness
fracture
url http://html.rhhz.net/CHXB/html/2018-2-110.htm
work_keys_str_mv AT qiushuang effectofdifferentstresslevelsonfatigueresidualstiffnessofcarbonfiberreinforcedcomposite
AT zhoujinyu effectofdifferentstresslevelsonfatigueresidualstiffnessofcarbonfiberreinforcedcomposite
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