Chapter 26
Experimental Study on Mechanical
Characterisation of Hybrid Material
Lamination (HML) Subjected to Flexural
Strength
Muhammad Afiq Mohd Shuhaimi, Azman Ismail, Fauziah Ab Rahman,
Bakhtiar Ariff Baharudin, Megat Khalid Puteri Zarina,
Darulihsan Abdul Hamid, and Achilles Enchangan Ulak Anak Mancha
Abstract Composite materials have been a subject of interest with various special
types of advanced materials during the last decades. Hybrid material lamination
consists of layers of fibreglass and thin layers of aluminium sheets bonded by epoxy
resin. The main objective of this research paper is to study the mechanical behaviour
of hybrid material lamination (HML) under flexural loads. This research material is mainly focused on marine applications. Hybrid materials were investigated
by experimental approaches based on the ISO standard and compile with the Det
Norske Veritas (DNV) rules and regulations. The results were compared. The experimental results were found to exceed and met the requirement of the DNV rules and
regulations.
M. A. M. Shuhaimi · A. Ismail (B) · F. A. Rahman · B. A. Baharudin · M. K. Puteri Zarina ·
A. E. U. A. Mancha
Universiti Kuala Lumpur Malaysian Institute of Marine Engineering Technology, Lumut, Perak,
Malaysia
e-mail: azman@unikl.edu.my
M. A. M. Shuhaimi
e-mail: fiq_kaydey11@yahoo.com.my
F. A. Rahman
e-mail: fauziahabra@unikl.edu.my
B. A. Baharudin
e-mail: bakhtiarab@unikl.edu.my
M. K. Puteri Zarina
e-mail: puteri.zarina@fbk.upsi.edu.my
A. E. U. A. Mancha
e-mail: achillesenchanganulak@gmail.com
D. A. Hamid
Kolej Universiti Poly-Tech MARA, Kuala Lumpur, Malaysia
e-mail: darulihsan@kuptm.edu.my
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2021
A. Ismail et al. (eds.), Advanced Engineering for Processes and Technologies II,
Advanced Structured Materials 147,
https://doi.org/10.1007/978-3-030-67307-9_26
287
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