Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber
Natural fiber polymer composites are gaining focus as low cost and light weight composite material due to the availability and ecofriendly nature of the natural fiber. Fiber composites are widely used in civil engineering, marine and aerospace industries where dynamic loads and environmental loads p...
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Polish Academy of Sciences
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doaj-ad367b3b1a85499eb8104d0e7918121b2020-11-25T03:12:11ZengPolish Academy of SciencesArchive of Mechanical Engineering 2300-18952020-03-01671577210.24425/ame.2020.131683Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber Muralidhar N.0Kaliveeran Vadivuchezhian1Arumugam V.2Reddy I. Srinivasula 3Department of Applied Mechanics and Hydraulics, National Institute of Technology Karnataka, Mangalore, IndiaDepartment of Applied Mechanics and Hydraulics, National Institute of Technology Karnataka, Mangalore, IndiaDepartment of Aerospace Engineering, Madras Institute of Technology, Anna University, Chennai, IndiaDepartment of Applied Mechanics and Hydraulics, National Institute of Technology Karnataka, Mangalore, IndiaNatural fiber polymer composites are gaining focus as low cost and light weight composite material due to the availability and ecofriendly nature of the natural fiber. Fiber composites are widely used in civil engineering, marine and aerospace industries where dynamic loads and environmental loads persist. Dynamic analysis of these composites under different loading and environmental conditions is essential before their usage. The present study focuses on the dynamic behavior of areca nut husk reinforced epoxy composites under different loading frequencies (5 Hz, 10 Hz and 15 Hz) and different temperatures (ranging from 28ºC to 120ºC). The effect of loading and temperature on storage modulus, loss modulus and glass transition temperature was analyzed. Increase in storage modulus is observed with increase in loading frequency. The storage modulus decreases with increase in temperature. The glass transition temperature of the composite is determined to be 105ºC. The elastic modulus calculated from the DMA data is compared with three point bending test. http://journals.pan.pl/dlibra/publication/131683/edition/115015/contentareca nut husk fiberdynamic mechanical analysisstorage modulusloss moduluselastic modulusdamping factor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Muralidhar N. Kaliveeran Vadivuchezhian Arumugam V. Reddy I. Srinivasula |
spellingShingle |
Muralidhar N. Kaliveeran Vadivuchezhian Arumugam V. Reddy I. Srinivasula Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber Archive of Mechanical Engineering areca nut husk fiber dynamic mechanical analysis storage modulus loss modulus elastic modulus damping factor |
author_facet |
Muralidhar N. Kaliveeran Vadivuchezhian Arumugam V. Reddy I. Srinivasula |
author_sort |
Muralidhar N. |
title |
Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber |
title_short |
Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber |
title_full |
Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber |
title_fullStr |
Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber |
title_full_unstemmed |
Dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber |
title_sort |
dynamic mechanical characterization of epoxy composite reinforced with areca nut husk fiber |
publisher |
Polish Academy of Sciences |
series |
Archive of Mechanical Engineering |
issn |
2300-1895 |
publishDate |
2020-03-01 |
description |
Natural fiber polymer composites are gaining focus as low cost and light weight composite material due to the availability and ecofriendly nature of the natural fiber. Fiber composites are widely used in civil engineering, marine and aerospace industries where dynamic loads and environmental loads persist. Dynamic analysis of these composites under different loading and environmental conditions is essential before their usage. The present study focuses on the dynamic behavior of areca nut husk reinforced epoxy composites under different loading frequencies (5 Hz, 10 Hz and 15 Hz) and different temperatures (ranging from 28ºC to 120ºC). The effect of loading and temperature on storage modulus, loss modulus and glass transition temperature was analyzed. Increase in storage modulus is observed with increase in loading frequency. The storage modulus decreases with increase in temperature. The glass transition temperature of the composite is determined to be 105ºC. The elastic modulus calculated from the DMA data is compared with three point bending test. |
topic |
areca nut husk fiber dynamic mechanical analysis storage modulus loss modulus elastic modulus damping factor |
url |
http://journals.pan.pl/dlibra/publication/131683/edition/115015/content |
work_keys_str_mv |
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