"Impact resistance of silicone rubber/fiber composites for structural protection"

The dynamic mechanical properties of silicone rubber/fiber composites under different strain rates were investigated using Hopkinson pressure bar technique. The results showed that there was a linear relationship between gas pressure and strain rate, and the superimposed waveform of incident wave st...

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Main Author: ZHANG Song, LIU Yan-hui
Format: Article
Language:zho
Published: Editorial Office of China Synthetic Rubber Industry 2025-06-01
Series:Hecheng xiangjiao gongye
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Online Access:http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202503013
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author ZHANG Song, LIU Yan-hui
author_facet ZHANG Song, LIU Yan-hui
author_sort ZHANG Song, LIU Yan-hui
collection DOAJ
description The dynamic mechanical properties of silicone rubber/fiber composites under different strain rates were investigated using Hopkinson pressure bar technique. The results showed that there was a linear relationship between gas pressure and strain rate, and the superimposed waveform of incident wave strain and reflected wave strain were consistent with the waveform of transmitted wave strain, which proved that the composites were in dynamic stress equilibrium, and the stress equilibrium could be maintained during the loading process. The stress and energy absorption capacity of the composites both increased with the increase of strain rate, and the stress-strain curves and the dynamic modulus had an obvious strain rate effect.
format Article
id doaj-art-f97f633c427e47f0888e5b95b542b8e5
institution Kabale University
issn 1000-1255
language zho
publishDate 2025-06-01
publisher Editorial Office of China Synthetic Rubber Industry
record_format Article
series Hecheng xiangjiao gongye
spelling doaj-art-f97f633c427e47f0888e5b95b542b8e52025-08-20T03:51:25ZzhoEditorial Office of China Synthetic Rubber IndustryHecheng xiangjiao gongye1000-12552025-06-0148323123410.19908/j.cnki.ISSN1000-1255.2025.03.0231"Impact resistance of silicone rubber/fiber composites for structural protection"ZHANG Song, LIU Yan-hui0School of Materials Science and Engineering, Shenyang Ligong University,Shenyang 110159,ChinaThe dynamic mechanical properties of silicone rubber/fiber composites under different strain rates were investigated using Hopkinson pressure bar technique. The results showed that there was a linear relationship between gas pressure and strain rate, and the superimposed waveform of incident wave strain and reflected wave strain were consistent with the waveform of transmitted wave strain, which proved that the composites were in dynamic stress equilibrium, and the stress equilibrium could be maintained during the loading process. The stress and energy absorption capacity of the composites both increased with the increase of strain rate, and the stress-strain curves and the dynamic modulus had an obvious strain rate effect. http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202503013silicone rubber/fiber composite,dynamic mechanical property, hopkinson pressure bar technique, impact resistance, energy absorption capacity,
spellingShingle ZHANG Song, LIU Yan-hui
"Impact resistance of silicone rubber/fiber composites for structural protection"
Hecheng xiangjiao gongye
silicone rubber/fiber composite,dynamic mechanical property, hopkinson pressure bar technique, impact resistance, energy absorption capacity,
title "Impact resistance of silicone rubber/fiber composites for structural protection"
title_full "Impact resistance of silicone rubber/fiber composites for structural protection"
title_fullStr "Impact resistance of silicone rubber/fiber composites for structural protection"
title_full_unstemmed "Impact resistance of silicone rubber/fiber composites for structural protection"
title_short "Impact resistance of silicone rubber/fiber composites for structural protection"
title_sort impact resistance of silicone rubber fiber composites for structural protection
topic silicone rubber/fiber composite,dynamic mechanical property, hopkinson pressure bar technique, impact resistance, energy absorption capacity,
url http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202503013
work_keys_str_mv AT zhangsongliuyanhui impactresistanceofsiliconerubberfibercompositesforstructuralprotection