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All Outputs (6)

Design for Additive Manufacturing and Finite Element Analysis of Fe-Mn Biodegradable Fracture Fixation Plate with Varying Porosity Levels (2023)
Presentation / Conference Contribution
Shaikh, M., Kahwash, F., Lu, Z., Alkhreisat, M., & Shyha, I. (2023, September). Design for Additive Manufacturing and Finite Element Analysis of Fe-Mn Biodegradable Fracture Fixation Plate with Varying Porosity Levels. Presented at International Conferenc

Fracture fixation plates are osteosynthesis implants used to fix fractured bones in a human body. They are either left in the body or required to be removed after a bone healing period of 3–6 months. Recent trends focus on developing iron (Fe) based... Read More about Design for Additive Manufacturing and Finite Element Analysis of Fe-Mn Biodegradable Fracture Fixation Plate with Varying Porosity Levels.

Experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites (2023)
Journal Article
Le, B., Fu, G., Khaliq, J., Huo, D., & Shyha, I. (2023). Experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites. Journal of Manufacturing Processes, 99, 781-793. https://doi.or

A comprehensive experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites (EP/CNF) is presented in this study. The machinability indicators including cutting force and surfac... Read More about Experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites.

Flexible piezoelectric PVDF/TPU nanofibrous membranes produced by solution blow spinning (2023)
Journal Article
Le, B., Omran, N., Hassanin, A. H., Kandas, I., Gamal, M., Shehata, N., & Shyha, I. (2023). Flexible piezoelectric PVDF/TPU nanofibrous membranes produced by solution blow spinning. Journal of Materials Research and Technology, 24, 5032-5041. https://doi.

Poly (vinylidene fluoride) (PVDF) nanofibers have been applied in producing piezoelectric membranes for energy harvesting in wearable devices under strenuous service conditions due to its outstanding properties such as piezoelectricity, flexibility,... Read More about Flexible piezoelectric PVDF/TPU nanofibrous membranes produced by solution blow spinning.

Electro-blown spinning: New insight into the effect of electric field and airflow hybridized forces on the production yield and characteristics of nanofiber membranes (2023)
Journal Article
Elnabawy, E., Sun, D., Shearer, N., & Shyha, I. (2023). Electro-blown spinning: New insight into the effect of electric field and airflow hybridized forces on the production yield and characteristics of nanofiber membranes. Journal of Science: Advanced Ma

Electro-blown spinning (EBS) is an emergent hybridized nanofibers formation technology. Recently, there has been a great interest in introducing this novel method for producing sub-micron, and nanofibers into several applications. For the first time,... Read More about Electro-blown spinning: New insight into the effect of electric field and airflow hybridized forces on the production yield and characteristics of nanofiber membranes.

Recent advances in MXene composites research, applications and opportunities (2023)
Presentation / Conference Contribution
Saharudin, M., Ayub, A., Hasbi, S., Muhammad-Sukki, F., Shyha, I., & Inam, F. (in press). Recent advances in MXene composites research, applications and opportunities. In Composite Sciences and Technology International Conference 2022 (COMSAT2022). https

MXene composites have emerged as a promising class of materials due to their exceptional properties and versatility in various applications. In recent years, researchers have made significant progress in the development and characterization of MXene... Read More about Recent advances in MXene composites research, applications and opportunities.