M
Mohd Firdaus Omar
Researcher at Universiti Malaysia Perlis
Publications - 79
Citations - 1814
Mohd Firdaus Omar is an academic researcher from Universiti Malaysia Perlis. The author has contributed to research in topics: Ultimate tensile strength & Strain rate. The author has an hindex of 12, co-authored 72 publications receiving 1394 citations. Previous affiliations of Mohd Firdaus Omar include Universiti Sains Malaysia.
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Kenaf fiber reinforced composites: A review
Hazizan Md Akil,Mohd Firdaus Omar,A. A. M. Mazuki,Sahnizam Safiee,Zainal Arifin Mohd Ishak,Abu Bakar +5 more
TL;DR: In this article, an overview of the developments made in the area of kenaf fiber reinforced composites, in terms of their market, manufacturing methods, and overall properties is presented.
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Thermal properties of nanocellulose-reinforced composites: A review
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Dynamic properties of pultruded natural fibre reinforced composites using Split Hopkinson Pressure Bar technique
TL;DR: In this article, the authors present results on dynamic mechanical properties of jute, and kenaf fiber reinforced composites at various strain rates using compression Split Hopkinson Pressure Bar technique.
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Measurement and prediction of compressive properties of polymers at high strain rate loading
TL;DR: In this paper, an experimental technique, based on the compression split Hopkinson pressure bar, was introduced to perform high strain rate testing, whereas, a conventional universal testing machine was used to perform static compression testing, to experimentally investigate the independent and interactive effects of strain rates towards mechanical properties of various polymers.
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Synthesis and structural studies of an epoxidized natural rubber/titania (ENR-50/TiO 2 ) hybrid under mild acid conditions
Omar S. Dahham,Rosniza Hamzah,Mohamad Hafizi Abu Bakar,Nik Noriman Zulkepli,Sam Sung Ting,Mohd Firdaus Omar,Tijjani Adam,Khairunnisa Muhamad,Saad S. Dahham +8 more
TL;DR: In this article, the ring-opening reaction of epoxide units in an epoxidized natural rubber/titania (ENR-50/TiO2) hybrid in the presence of acetic acid was studied using NMR techniques as well as FTIR spectroscopy.