Toughening Mechanism of Unidirectional Stretchable Composite
Composite materials have been long developed to improve the mechanical properties such as strength and toughness. Most composites are non-stretchable which hinders the applications in soft robotics. Recent papers have reported a new design of unidirectional soft composite with superior stretchabilit...
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Frontiers Media S.A.
2021-04-01
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doaj-f696d1d6a9154d50ae601b00874ae3e52021-04-30T07:17:01ZengFrontiers Media S.A.Frontiers in Robotics and AI2296-91442021-04-01810.3389/frobt.2021.673307673307Toughening Mechanism of Unidirectional Stretchable CompositeXiaochun JiangZhengjin WangDanqi SunTongqing LuTiejun WangComposite materials have been long developed to improve the mechanical properties such as strength and toughness. Most composites are non-stretchable which hinders the applications in soft robotics. Recent papers have reported a new design of unidirectional soft composite with superior stretchability and toughness. This paper presents an analytical model to study the toughening mechanism of such composite. We use the Gent model to characterize the large deformation of the hard phase and soft phase of the composite. We analyze how the stress transfer between phases deconcentrates the stress at the crack tip and enhances the toughness. We identify two types of failure modes: rupture of hard phase and interfacial debonding. We calculate the average toughness of the composite with different physical and geometric parameters. The experimental results in literature agree with our theoretical predictions very well.https://www.frontiersin.org/articles/10.3389/frobt.2021.673307/fullstretchable compositelarge deformationinterfacial debondingstress concentrationtoughness |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiaochun Jiang Zhengjin Wang Danqi Sun Tongqing Lu Tiejun Wang |
spellingShingle |
Xiaochun Jiang Zhengjin Wang Danqi Sun Tongqing Lu Tiejun Wang Toughening Mechanism of Unidirectional Stretchable Composite Frontiers in Robotics and AI stretchable composite large deformation interfacial debonding stress concentration toughness |
author_facet |
Xiaochun Jiang Zhengjin Wang Danqi Sun Tongqing Lu Tiejun Wang |
author_sort |
Xiaochun Jiang |
title |
Toughening Mechanism of Unidirectional Stretchable Composite |
title_short |
Toughening Mechanism of Unidirectional Stretchable Composite |
title_full |
Toughening Mechanism of Unidirectional Stretchable Composite |
title_fullStr |
Toughening Mechanism of Unidirectional Stretchable Composite |
title_full_unstemmed |
Toughening Mechanism of Unidirectional Stretchable Composite |
title_sort |
toughening mechanism of unidirectional stretchable composite |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Robotics and AI |
issn |
2296-9144 |
publishDate |
2021-04-01 |
description |
Composite materials have been long developed to improve the mechanical properties such as strength and toughness. Most composites are non-stretchable which hinders the applications in soft robotics. Recent papers have reported a new design of unidirectional soft composite with superior stretchability and toughness. This paper presents an analytical model to study the toughening mechanism of such composite. We use the Gent model to characterize the large deformation of the hard phase and soft phase of the composite. We analyze how the stress transfer between phases deconcentrates the stress at the crack tip and enhances the toughness. We identify two types of failure modes: rupture of hard phase and interfacial debonding. We calculate the average toughness of the composite with different physical and geometric parameters. The experimental results in literature agree with our theoretical predictions very well. |
topic |
stretchable composite large deformation interfacial debonding stress concentration toughness |
url |
https://www.frontiersin.org/articles/10.3389/frobt.2021.673307/full |
work_keys_str_mv |
AT xiaochunjiang tougheningmechanismofunidirectionalstretchablecomposite AT zhengjinwang tougheningmechanismofunidirectionalstretchablecomposite AT danqisun tougheningmechanismofunidirectionalstretchablecomposite AT tongqinglu tougheningmechanismofunidirectionalstretchablecomposite AT tiejunwang tougheningmechanismofunidirectionalstretchablecomposite |
_version_ |
1721499037695213568 |