Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite
Compressive strength of the epoxy matrix loaded by combination of hybrid filler is expected to benefit by the hollow nature of microsphere and highly porous silica aerogel and, consequently it also depends on the suitable ratio of microsphere:silica aerogel (Mic:SilAe). In this study, the morphology...
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Penerbit UTM Press
2015
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my.upm.eprints.438722016-10-27T01:50:25Z http://psasir.upm.edu.my/id/eprint/43872/ Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite Mazlan, Norkhairunnisa Teong, Chee Khoon Compressive strength of the epoxy matrix loaded by combination of hybrid filler is expected to benefit by the hollow nature of microsphere and highly porous silica aerogel and, consequently it also depends on the suitable ratio of microsphere:silica aerogel (Mic:SilAe). In this study, the morphology of the fillers was investigated by Scanning Electron Microscope (SEM) for microstructure analysis. The nanocomposite was then prepared by shear mixing technique. Compressive yield and fracture strength behavior were assessed as a function of Mic:SilAe ratios and its dispersion in epoxy matrix. The compressive yield and fracture strength increased monotonously with inclusion of considerable ratio of Mic:SilAe. The optimum loading of Mic:SilAe in epoxy nanocomposite was attained at filler ratio of 1:1 for compressive yield strength and filler ratio of 5:1 for compressive fracture strength, where the improvement were 28% and 90%, respectively. Penerbit UTM Press 2015 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/43872/1/Assessment%20on%20the%20compressive%20strength%20behavior%20of%20hybrid%20filled%20epoxy%20nanocomposite.pdf Mazlan, Norkhairunnisa and Teong, Chee Khoon (2015) Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite. Jurnal Teknologi, 76 (10). pp. 91-95. ISSN 0127–9696; ESSN: 2180–3722 |
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Compressive strength of the epoxy matrix loaded by combination of hybrid filler is expected to benefit by the hollow nature of microsphere and highly porous silica aerogel and, consequently it also depends on the suitable ratio of microsphere:silica aerogel (Mic:SilAe). In this study, the morphology of the fillers was investigated by Scanning Electron Microscope (SEM) for microstructure analysis. The nanocomposite was then prepared by shear mixing technique. Compressive yield and fracture strength behavior were assessed as a function of Mic:SilAe ratios and its dispersion in epoxy matrix. The compressive yield and fracture strength increased monotonously with inclusion of considerable ratio of Mic:SilAe. The optimum loading of Mic:SilAe in epoxy nanocomposite was attained at filler ratio of 1:1 for compressive yield strength and filler ratio of 5:1 for compressive fracture strength, where the improvement were 28% and 90%, respectively. |
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Article |
author |
Mazlan, Norkhairunnisa Teong, Chee Khoon |
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Mazlan, Norkhairunnisa Teong, Chee Khoon Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
author_facet |
Mazlan, Norkhairunnisa Teong, Chee Khoon |
author_sort |
Mazlan, Norkhairunnisa |
title |
Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
title_short |
Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
title_full |
Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
title_fullStr |
Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
title_full_unstemmed |
Assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
title_sort |
assessment on the compressive strength behavior of hybrid filled epoxy nanocomposite |
publisher |
Penerbit UTM Press |
publishDate |
2015 |
url |
http://psasir.upm.edu.my/id/eprint/43872/1/Assessment%20on%20the%20compressive%20strength%20behavior%20of%20hybrid%20filled%20epoxy%20nanocomposite.pdf http://psasir.upm.edu.my/id/eprint/43872/ |
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