Shaffiar, Norhashimah and Hasnan, M.A. and Anuar, Hazleen and Al Hazza, Muataz Hazza Faizi (2015) Finite element analysis of HDPE/EPR-CNT nanocomposite under tensile loading. Advanced Materials Research, 1115. pp. 410-413. ISSN 1022-6680
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Abstract
A small amount of nano dispersed filler leads to an improvement in material properties. Carbon Nanotube (CNT) is one type of filler used in nanocomposite material. A high density polyethylene/ethylene propylene rubber – carbon nanotube (HDPE/EPR-CNT) is one of the nanocomposite material that is new to the industry. This paper investigates the strength of HDPE/EPR-CNT nanocomposite under tensile loading. The experimental results of the tensile test on the nanocomposite will be compared with the tensile simulation in the Finite Element (FE) analysis for validation. The results showed that it is validated with relatively low percentage error of 0.14 % for the ultimate tensile strength and 0.05 % for the yield strength. The ultimate tensile strength of HDPE/EPR-CNT is 17.41 MPa and the yield strength is 14.9 MPa. By using CNT as a filler, the material strength is improved. The ultimate tensile strength of HDPE/EPR-CNT is the highest compared to polyethylene/ethylene propylene rubber - montmorillonite HDPE/EPR-MMT and polyethylene/ethylene propylene rubber HDPE/EPR.
Item Type: | Article (Journal) |
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Additional Information: | 4170/49564 |
Uncontrolled Keywords: | HDPE/EPR-CNT Nanocomposite, Finite element analysis (FEA) |
Subjects: | T Technology > T Technology (General) |
Kulliyyahs/Centres/Divisions/Institutes (Can select more than one option. Press CONTROL button): | Kulliyyah of Engineering > Department of Manufacturing and Materials Engineering |
Depositing User: | Dr. Norhashimah Shaffiar |
Date Deposited: | 13 Feb 2016 15:55 |
Last Modified: | 18 Jul 2016 15:23 |
URI: | http://irep.iium.edu.my/id/eprint/49564 |
Available Versions of this Item
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Finite element analysis of HDPE/EPR-CNT nanocomposite under
tensile loading. (deposited 17 Feb 2015 08:15)
- Finite element analysis of HDPE/EPR-CNT nanocomposite under tensile loading. (deposited 13 Feb 2016 15:55) [Currently Displayed]
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