Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.

In this study, we attempt to investigate the effect of the addition of fillers into a polymer matrix. The fillers chosen for the study is Carbon nanotubes (CNTs). Carbon nanotubes are chosen as they have high tensile strength. MWCNT/PCL fibre composites have an increase in tensile strength compared...

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主要作者: Tan, Grace Wan Chiu.
其他作者: Liao Kin
格式: Final Year Project
語言:English
出版: 2009
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在線閱讀:http://hdl.handle.net/10356/16555
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機構: Nanyang Technological University
語言: English
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spelling sg-ntu-dr.10356-165552023-03-03T15:37:33Z Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres. Tan, Grace Wan Chiu. Liao Kin Wang Kean School of Chemical and Biomedical Engineering DRNTU::Engineering::Nanotechnology In this study, we attempt to investigate the effect of the addition of fillers into a polymer matrix. The fillers chosen for the study is Carbon nanotubes (CNTs). Carbon nanotubes are chosen as they have high tensile strength. MWCNT/PCL fibre composites have an increase in tensile strength compared to the neat PCL fibres. The neat PCL fibres had an ultimate tensile stress of 1.4248 MPa, while the PCL fibres with 5% MWCNTs incorporated had an increase in ultimate tensile stress with a value of 7.59006 MPa. The Young’s modulus of the MWCNT/PCL composites is measured and compared with the Young’s modulus of the neat PCL fibres. Through this comparison, the Young’s modulus of the MWCNTs used can be determined. In this experiment, the fibres were produced by electrospinning, and the fibres fabricated were subjected to tensile tests. It was found that with an increasing amount of MWCNT incorporated into the polymer matrix, the greater the Young’s modulus of the composite fabricated. The composite with 5% MWCNTs incorporated had a Young’s modulus of 66.225 MPa compared to that of the neat fibre having a Young’s modulus of 6.8818 MPa. This shows the reinforcing effect that the MWCNTs had on the strength of the composites. Using the Rule of mixtures, the Young’s moduli of the MWCNTs used were calculated and it was found to 9306.698 MPa. Bachelor of Engineering (Chemical and Biomolecular Engineering) 2009-05-27T03:15:33Z 2009-05-27T03:15:33Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/16555 en Nanyang Technological University 79 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Nanotechnology
spellingShingle DRNTU::Engineering::Nanotechnology
Tan, Grace Wan Chiu.
Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
description In this study, we attempt to investigate the effect of the addition of fillers into a polymer matrix. The fillers chosen for the study is Carbon nanotubes (CNTs). Carbon nanotubes are chosen as they have high tensile strength. MWCNT/PCL fibre composites have an increase in tensile strength compared to the neat PCL fibres. The neat PCL fibres had an ultimate tensile stress of 1.4248 MPa, while the PCL fibres with 5% MWCNTs incorporated had an increase in ultimate tensile stress with a value of 7.59006 MPa. The Young’s modulus of the MWCNT/PCL composites is measured and compared with the Young’s modulus of the neat PCL fibres. Through this comparison, the Young’s modulus of the MWCNTs used can be determined. In this experiment, the fibres were produced by electrospinning, and the fibres fabricated were subjected to tensile tests. It was found that with an increasing amount of MWCNT incorporated into the polymer matrix, the greater the Young’s modulus of the composite fabricated. The composite with 5% MWCNTs incorporated had a Young’s modulus of 66.225 MPa compared to that of the neat fibre having a Young’s modulus of 6.8818 MPa. This shows the reinforcing effect that the MWCNTs had on the strength of the composites. Using the Rule of mixtures, the Young’s moduli of the MWCNTs used were calculated and it was found to 9306.698 MPa.
author2 Liao Kin
author_facet Liao Kin
Tan, Grace Wan Chiu.
format Final Year Project
author Tan, Grace Wan Chiu.
author_sort Tan, Grace Wan Chiu.
title Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
title_short Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
title_full Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
title_fullStr Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
title_full_unstemmed Synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
title_sort synthesis and characterization of polycaprolactone-carbon nanotube biocomposite fibres.
publishDate 2009
url http://hdl.handle.net/10356/16555
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