nwar Luay khaleel . Born in 1995 in Baghdad, Iraq. I got my B.Sc. degree in Mechanical Engineering, Al-Nahrain University in 2016. I obtained a Master's degree in Mechanical Engineering / Al-Nahrain University in 2019. My thesis was in field of foot orthosis and material.
Biomedical Engineering Mechanical Engineering Material Engineering
stage 5- Biomechanics design lab stage 4- control system stage 4- CAD (SolidWorks) stage 1- Statics stage 1- Calculus stage 1- Engineering drawing
1-Design Of The Powered Knee Orthotic For The Mobility Impaired User. 2-Design of Active Hip Orthosis for Assistive and Rehabilitation Using 3D Printing Material. 3-Design and Implementation of soft Glove for Rehabilitation applications. 4-Synthesis and Characterization of Denture Base Material from Nanocomposites.
This paper presents two main parts: The first part involves manufacturing the specimens form composite material for mechanical testing (tensile, flexural and fatigue tests), then design a custom foot orthesis (CFO) and manufacturing from composite lamination (3nylglass 2carbon fiber 3nylglass) for patient suffer from flexible flat foot since birth and over-pronation. The second part of this research involves a design a model of custom foot orthesis in (solid work 2018) and then analysis of custom foot orthosis in engineering analysis program (ANSYS V.18.2).The applied pressure in boundary condition adopted from Force Sensor Resistance (FSR 402 ) in various regions in foot after wearing composite CFO. Used a composite materials in engineerin
... Show MoreVibration is a source of energy that can be beneficial or harmful based on the application. Vibration can affect the function of any structure; however, Ceramic matrix composite (CMC) is one of these structures. Whereby less studies have been concentrated on study its function specially when electromagnetic wave (microwave) exposed on its surface to perform its designed function. To address this concept, SiC composite has been fabricated which is designed to have a transparent characteristics to microwave. External vibration had been applied on its surface to monitor how much influence could nanoscale amplitude vibration damage the microwave interaction. The source of vibration was applied from piezoelectric and the vibration was monitored
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