MA
M.S. Abdul Majid
Also known as: Shukry
Universiti Malaysia Perlis, Newcastle University, University of Liverpool, University of Manchester
About
Mohd Shukry Abdul Majid is currently serving at Universiti Malaysia Perlis as Professor at the Faculty of Mechanical Engineering and Technology. His current research interests lie in the strength of the material's area with an emphasis on composite piping, looking at the performance of composite structures, NDEs of composites and natural fibre/green composites.
Employment
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Universiti Malaysia Perlis Professor2004 - Present
Education
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Newcastle University PhD2008 - 2011
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University of Liverpool MSc2004 - 2005
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University of Manchester B.Eng. (Hons)1998 - 2001
Projects & Funding
Projects & funding information is unavailable.
Publications (262)
- Cone calorimeter analysis of fire behaviour, mass loss, and smoke suppression in PALF-reinforced epoxy composites with hybrid fire retardants Save
- Influence of Multiwalled Carbon Nanotubes and Thermal Aging on the Swelling, Hardness, and Tear Properties of Pineapple‐Leaf‐Fiber‐Reinforced Natural Rubber Composites Save
- Influence of Water Absorption on the Impact Response and Failure Mechanisms of 3D‐Printed PLA‐Based Honeycomb Sandwich Composite Structures Save
- Effect of Thermal Aging on the Tensile and Tribological Properties of Pineapple Leaf Fiber‐Reinforced Natural Rubber Composites Incorporating Multiwalled Carbon Nanotubes Save
- Effect of elevated temperatures on wear and frictional performance of Pineapple Leaf Fiber‐Reinforced natural rubber composites with the addition of multi‐walled carbon nanotubes Save
- Mechanical behavior, energy absorption, and failure mechanism of 3D‐printed hexagonal honeycomb core under dynamic and quasi‐static loadings Save
- The influence of water absorption on the mechanical performance of 3D‐printed sandwich composite structures made from PLA‐based materials under quasi‐static loading conditions Save
- Wear and friction properties of pineapple leaf fibers‐reinforced natural rubber composites with the influence of multi‐walled carbon nanotubes Save
- Effect of dispersion methods on electromagnetic interference shielding effectiveness and thermal conductivity of graphene bio‐based epoxy composites Save
- Effect of varying core density and material on the quasi‐static behaviors of sandwich structure with 3D‐printed hexagonal honeycomb core Save