Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites
Recently, polymer blend composites are receiving significant attention to fulfill the growing demand from automotive industries because of their improved properties as compared to that of pure polymer blends. In this research work, considering 0%, 3%, 6% and 9% glass fiber content, four different co...
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2020
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Online Access: | http://umpir.ump.edu.my/id/eprint/27246/1/42.%20Influence%20of%20glass%20fiber%20content%20on%20the%20flexural.pdf http://umpir.ump.edu.my/id/eprint/27246/2/42.1%20Influence%20of%20glass%20fiber%20content%20on%20the%20flexural.pdf http://umpir.ump.edu.my/id/eprint/27246/ https://doi.org/10.1007/978-981-15-0950-6_71 |
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my.ump.umpir.272462022-10-19T02:28:40Z http://umpir.ump.edu.my/id/eprint/27246/ Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites Nurizzathanis, Mohamad Kusaseh Dewan Muhammad, Nuruzzaman Mohammad Asaduzzaman, Chowdhury A. K. M., Asif Iqbal Noor Mazni, Ismail Fatchurrohman, Nanang Chan, Shin Yi TJ Mechanical engineering and machinery TS Manufactures Recently, polymer blend composites are receiving significant attention to fulfill the growing demand from automotive industries because of their improved properties as compared to that of pure polymer blends. In this research work, considering 0%, 3%, 6% and 9% glass fiber content, four different compositions of polyamide 6 (PA6)-polypropylene (PP)-glass fiber composites such as, 80%PA6+20%PP, 77%PA6+20%PP+3%GF, 74%PA6+20%PP+6%GF and 71%PA6+20%PP+9%GF were prepared using an injection molding machine. Different process parameters were taken into consideration in order to produce dog bone shaped specimens free of defects. All flexural tests were performed according to ASTM standard. Results showed that flexural yield strength steadily improves as fiber content increases. Test data showed that flexural stiffness or modulus is lowest for pure blend and it gradually improves with addition in glass fiber. Flexural strength is lowest for pure blend and it gradually develops with increase in fiber content. On the other hand, it was observed that flexural strain is hardly impacted by fiber content. Springer, Singapore 2020 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/27246/1/42.%20Influence%20of%20glass%20fiber%20content%20on%20the%20flexural.pdf pdf en http://umpir.ump.edu.my/id/eprint/27246/2/42.1%20Influence%20of%20glass%20fiber%20content%20on%20the%20flexural.pdf Nurizzathanis, Mohamad Kusaseh and Dewan Muhammad, Nuruzzaman and Mohammad Asaduzzaman, Chowdhury and A. K. M., Asif Iqbal and Noor Mazni, Ismail and Fatchurrohman, Nanang and Chan, Shin Yi (2020) Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites. In: iMEC-APCOMS 2019: Proceedings of the 4th International Manufacturing Engineering Conference and The 5th Asia Pacific Conference on Manufacturing Systems, 21-22 August 2019 , Putrajaya, Malaysia. pp. 466-471.. ISBN 978-981-15-0950-6 https://doi.org/10.1007/978-981-15-0950-6_71 |
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TJ Mechanical engineering and machinery TS Manufactures Nurizzathanis, Mohamad Kusaseh Dewan Muhammad, Nuruzzaman Mohammad Asaduzzaman, Chowdhury A. K. M., Asif Iqbal Noor Mazni, Ismail Fatchurrohman, Nanang Chan, Shin Yi Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
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Recently, polymer blend composites are receiving significant attention to fulfill the growing demand from automotive industries because of their improved properties as compared to that of pure polymer blends. In this research work, considering 0%, 3%, 6% and 9% glass fiber content, four different compositions of polyamide 6 (PA6)-polypropylene (PP)-glass fiber composites such as, 80%PA6+20%PP, 77%PA6+20%PP+3%GF, 74%PA6+20%PP+6%GF and 71%PA6+20%PP+9%GF were prepared using an injection molding machine. Different process parameters were taken into consideration in order to produce dog bone shaped specimens free of defects. All flexural tests were performed according to ASTM standard. Results showed that flexural yield strength steadily improves as fiber content increases. Test data showed that flexural stiffness or modulus is lowest for pure blend and it gradually improves with addition in glass fiber. Flexural strength is lowest for pure blend and it gradually develops with increase in fiber content. On the other hand, it was observed that flexural strain is hardly impacted by fiber content. |
format |
Conference or Workshop Item |
author |
Nurizzathanis, Mohamad Kusaseh Dewan Muhammad, Nuruzzaman Mohammad Asaduzzaman, Chowdhury A. K. M., Asif Iqbal Noor Mazni, Ismail Fatchurrohman, Nanang Chan, Shin Yi |
author_facet |
Nurizzathanis, Mohamad Kusaseh Dewan Muhammad, Nuruzzaman Mohammad Asaduzzaman, Chowdhury A. K. M., Asif Iqbal Noor Mazni, Ismail Fatchurrohman, Nanang Chan, Shin Yi |
author_sort |
Nurizzathanis, Mohamad Kusaseh |
title |
Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
title_short |
Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
title_full |
Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
title_fullStr |
Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
title_full_unstemmed |
Influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
title_sort |
influence of glass fiber content on the flexural properties of polyamide 6-polypropylene blend composites |
publisher |
Springer, Singapore |
publishDate |
2020 |
url |
http://umpir.ump.edu.my/id/eprint/27246/1/42.%20Influence%20of%20glass%20fiber%20content%20on%20the%20flexural.pdf http://umpir.ump.edu.my/id/eprint/27246/2/42.1%20Influence%20of%20glass%20fiber%20content%20on%20the%20flexural.pdf http://umpir.ump.edu.my/id/eprint/27246/ https://doi.org/10.1007/978-981-15-0950-6_71 |
_version_ |
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