Norul Ernida Zainal Abidin
Universiti Tun Hussein Onn Malaysia
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Norul Ernida Zainal Abidin.
Applied Mechanics and Materials | 2014
Norul Ernida Zainal Abidin; Mohd Haziman Wan Ibrahim; Norwati Jamaluddin; Kartini Kamaruddin; Ahmad Farhan Hamzah
Bottom ash is a solid residue produced through combustion process in a coal-fired power plant. It has been catogarized as a waste and usually disposed in the utility disposed site. With higher demand on the power energy, more coal-power plant are constructed and abundance of bottom ash are produced. Recently, the utilization of bottom ash in the construction industry has gained the interest of researches. Since it has similiar particle size distribution as normal sand, many attempt has been made in studying it potential use in mortar and concrete. In complementary to that, this paper presents the effect of bottom ash on fresh and hardened properties of self-compacting concrete (SCC). Bottom ash is used as fine aggregate replacing sand with replacement ratio range from 0% to 30% by volume. The effects of bottom ash on the SCC were investigated by comparing the test result of SCC mixed bottom ash with control specimens (0% of bottom ash). The test result on fresh properties of the concrete mixture revealed that, as the replacement level of bottom ash increased, the slump flow, L-box passing ratio and segregation resistance ratio (SR) decreased. Nevertheless, the slump flow time (T500) result increased with the increased of bottom ash content. The results show that the porosity and the irregular shape of the bottom ash particle has great influence on workability and viscosity of the fresh concete. The compressive strength and water absorption test are carried out on the sample at curing time of 7 and 28days. In terms of strength, the use of bottom ash in the production of SCC has increased the compressive strength of the concrete up to 15% replacement level. The increase in strength show the presence of the pozzolanic reactivity in a concrete with bottom ash particle. The water absorption rate was observed to be lower with a sample which having 10% and 15% replacement level.
Applied Mechanics and Materials | 2015
Norul Ernida Zainal Abidin; Mohd Haziman Wan Ibrahim; Norwati Jamaluddin; Kartini Kamaruddin; Ahmad Farhan Hamzah
Self-compacting concrete which commonly abbrevited as SCC is a special concrete that have the ability to consilodate fully under its own self-weight without any internal or external vibration. This paper presents the experimental investigation carried out to study the strength of self-compacting concrete incorporating bottom ash at different replacement level of natural sand. The composite cement was used and the replacement level of bottom ash to natural sand is set up to 30% by volume. The strength properties such as compressive strength, split tensile strength and flexural strength of the concrete at the age of 7 and 28 days of curing day were conducted. Results shows that the strength of the concrete with bottom ash increased up to replacement level 15% higher than control specimens. This show that bottom ash can be used as supplimentary cementitious materials, having the pozzolanic reactivty.
3rd International Conference on Civil and Environmental Engineering for Sustainability, IConCEES 2015 | 2016
Norwati Jamaluddin; Ahmad Farhan Hamzah; Mohd Haziman Wan Ibrahim; Ramadhansyah Putra Jaya; Mohd Fadzil Arshad; Norul Ernida Zainal Abidin; Nurol Huda Dahalan
ARPN journal of engineering and applied sciences | 2016
Mohd Haziman Wan Ibrahim; Norul Ernida Zainal Abidin; Norwati Jamaluddin; Kartini Kamaruddin; Ahmad Farhan Hamzah
Advanced Materials Research | 2015
Ahmad Farhan Hamzah; Mohd Haziman Wan Ibrahim; Norwati Jamaluddin; Ramadhansyah Putra Jaya; Norul Ernida Zainal Abidin
Journal of Engineering and Applied Sciences | 2016
Ahmad Farhan Hamzah; Mohd Haziman Wan Ibrahim; Norwati Jamaluddin; Ramadhansyah Putra Jaya; Mohd Fadzil Arshad; Norul Ernida Zainal Abidin; Ernie Abd Manan; Noor Azme Omar
International Journal of Mechanical and Mechatronics Engineering | 2015
Ahmad Farhan Hamzah; Mohd Haziman Wan Ibrahim; Norwati Jamaluddin; Ramadhansyah Putra Jaya; Mohd Fadzil Arshad; Norul Ernida Zainal Abidin
Malaysian Construction Research Journal | 2017
Norul Ernida Zainal Abidin; Norwati Jamaluddin; Mohd Haziman Wan Ibrahim; Kartini Kamaruddin; Ahmad Farhan Hamzah
Journal of Engineering and Applied Sciences | 2017
Ahmad Farhan Hamzah; Norzubaidah Fadzil; Mohd Haziman Wan Ibrahim; Norwati Jamaluddin; Ramadhansyah Putra Jaya; Mohd Fadzil Arshad; Norul Ernida Zainal Abidin; Nurol Huda Dahalan
Malaysian Technical Universities Conference on Engineering and Technology 2015 | 2015
Mohd Haziman Wan Ibrahim; Norul Ernida Zainal Abidin; Norwati Jamaluddin; Kartini Kamaruddin; Ahmad Farhan Hamzah