Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading

UHMWPE composites were prepared by hot pressing process with micro-crystal muscovite as reinforced particulates. The mechanical behaviors of composites to impact loading was evaluated by split Hopkinson bar. The results demonstrated that dynamic yield stress and failure stress of UHMWPE composites w...

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Main Authors: Hu Huarong, Guo Yuanjun, Wu Haoran, Yang Run, Chen Youming
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:http://dx.doi.org/10.1051/matecconf/20166706051
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author Hu Huarong
Guo Yuanjun
Wu Haoran
Yang Run
Chen Youming
author_facet Hu Huarong
Guo Yuanjun
Wu Haoran
Yang Run
Chen Youming
author_sort Hu Huarong
collection DOAJ
description UHMWPE composites were prepared by hot pressing process with micro-crystal muscovite as reinforced particulates. The mechanical behaviors of composites to impact loading was evaluated by split Hopkinson bar. The results demonstrated that dynamic yield stress and failure stress of UHMWPE composites were gradually increased when the filling amount was less than 20%; when the filling content of muscovite was around 15%, the energy absorption efficiency of the composite reaches maximum value. It was also found that when strain rate within 3200/s, the dynamic yield stress, failure stress and energy absorption efficiency of UHMWPE composites increased with the increase of strain rate and display strain rate enhancement effect.
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spelling doaj.art-79943bd16e1040c58bf15d26a1610e352022-12-21T22:43:01ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01670605110.1051/matecconf/20166706051matecconf_smae2016_06051Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact LoadingHu Huarong0Guo Yuanjun1Wu Haoran2Yang Run3Chen Youming4Hunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and TechnologyHunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and TechnologyHunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and TechnologyHunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and TechnologyHunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and TechnologyUHMWPE composites were prepared by hot pressing process with micro-crystal muscovite as reinforced particulates. The mechanical behaviors of composites to impact loading was evaluated by split Hopkinson bar. The results demonstrated that dynamic yield stress and failure stress of UHMWPE composites were gradually increased when the filling amount was less than 20%; when the filling content of muscovite was around 15%, the energy absorption efficiency of the composite reaches maximum value. It was also found that when strain rate within 3200/s, the dynamic yield stress, failure stress and energy absorption efficiency of UHMWPE composites increased with the increase of strain rate and display strain rate enhancement effect.http://dx.doi.org/10.1051/matecconf/20166706051UHMWPE compositesimpact loadingdynamic behavior
spellingShingle Hu Huarong
Guo Yuanjun
Wu Haoran
Yang Run
Chen Youming
Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading
MATEC Web of Conferences
UHMWPE composites
impact loading
dynamic behavior
title Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading
title_full Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading
title_fullStr Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading
title_full_unstemmed Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading
title_short Research on Mechanical Behaviors of Micro-crystal Muscovite/UHMWPE Composites to Impact Loading
title_sort research on mechanical behaviors of micro crystal muscovite uhmwpe composites to impact loading
topic UHMWPE composites
impact loading
dynamic behavior
url http://dx.doi.org/10.1051/matecconf/20166706051
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