Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann

Reinforced polyurethane composites provide possibility for tailoring material stiffness and combine the mechanical properties of fillers with behavior of matrix. This research work focuses on analyzing the mechanical behavior of polyurethanes filled with carbon nanotubes. Multi-walled carbon nanotub...

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Main Authors: Abdullah, Shahrul Azam, Frormann, Lars
Format: Article
Language:English
Published: Universiti Teknologi MARA 2022
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Online Access:https://ir.uitm.edu.my/id/eprint/60655/1/60655.pdf
https://ir.uitm.edu.my/id/eprint/60655/
https://jmeche.uitm.edu.my/
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spelling my.uitm.ir.606552022-06-13T03:23:19Z https://ir.uitm.edu.my/id/eprint/60655/ Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann Abdullah, Shahrul Azam Frormann, Lars TP Chemical technology Reinforced polyurethane composites provide possibility for tailoring material stiffness and combine the mechanical properties of fillers with behavior of matrix. This research work focuses on analyzing the mechanical behavior of polyurethanes filled with carbon nanotubes. Multi-walled carbon nanotube-filled polyurethane nanocomposites containing 7.8 to 30.5 vol%-MWNTs have been formulated by mixing and injection molding and their mechanical spectroscopy has been investigated. Tests including Dynamic Mechanical Analysis (DMA) and Thermogravimetric Analysis (TGA) were conducted at a frequency range of 1-50 Hz and the attributes were measured as a function of the intensity of the filler. With the concentration of the fillers, the storage modulus of nanocomposites increased, which also implies an increase in stiffness, inferring a good adherence between fillers and the matrix of polyurethane. The addition of more MWNTs to the nanocomposites broadened and lowered tan peak specifies that the polyurethane nanocomposite is more elastic as the fillers and the matrix are well adhered to. The reliance of the storage modulus is more pronounced in initial glassy region of the polymer. The presence of MWNTs has also improved the activation energy of the polymer. In addition, thermogravimetric analysis shows that the inclusion of MWMTs fillers enhances the thermal stability of the nanocomposites. This work has suggested that the incorporation of MWNTs into polyurethanes matrix can improved the mechanical properties well as their thermal stability. Universiti Teknologi MARA 2022-04 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/60655/1/60655.pdf Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann. (2022) Journal of Mechanical Engineering (JMechE), 19 (2): 13. pp. 205-218. ISSN (eISSN): 2550-164X https://jmeche.uitm.edu.my/
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Abdullah, Shahrul Azam
Frormann, Lars
Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann
description Reinforced polyurethane composites provide possibility for tailoring material stiffness and combine the mechanical properties of fillers with behavior of matrix. This research work focuses on analyzing the mechanical behavior of polyurethanes filled with carbon nanotubes. Multi-walled carbon nanotube-filled polyurethane nanocomposites containing 7.8 to 30.5 vol%-MWNTs have been formulated by mixing and injection molding and their mechanical spectroscopy has been investigated. Tests including Dynamic Mechanical Analysis (DMA) and Thermogravimetric Analysis (TGA) were conducted at a frequency range of 1-50 Hz and the attributes were measured as a function of the intensity of the filler. With the concentration of the fillers, the storage modulus of nanocomposites increased, which also implies an increase in stiffness, inferring a good adherence between fillers and the matrix of polyurethane. The addition of more MWNTs to the nanocomposites broadened and lowered tan peak specifies that the polyurethane nanocomposite is more elastic as the fillers and the matrix are well adhered to. The reliance of the storage modulus is more pronounced in initial glassy region of the polymer. The presence of MWNTs has also improved the activation energy of the polymer. In addition, thermogravimetric analysis shows that the inclusion of MWMTs fillers enhances the thermal stability of the nanocomposites. This work has suggested that the incorporation of MWNTs into polyurethanes matrix can improved the mechanical properties well as their thermal stability.
format Article
author Abdullah, Shahrul Azam
Frormann, Lars
author_facet Abdullah, Shahrul Azam
Frormann, Lars
author_sort Abdullah, Shahrul Azam
title Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann
title_short Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann
title_full Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann
title_fullStr Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann
title_full_unstemmed Mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / Shahrul Azam Abdullah and Lars Frormann
title_sort mechanical spectroscopy of multiwalled carbon nanotube-filled polyurethane nanocomposites / shahrul azam abdullah and lars frormann
publisher Universiti Teknologi MARA
publishDate 2022
url https://ir.uitm.edu.my/id/eprint/60655/1/60655.pdf
https://ir.uitm.edu.my/id/eprint/60655/
https://jmeche.uitm.edu.my/
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