Projects

Samples of previous projects 

3D Modeling

Jewellery Design

Mechanical Design

Other

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3D Modeling

vertical wind turbine

This is a vertical wind turbine concept design. It is used on the highway to utilize the wind from cars driving. It will generate electric power to be used for street lighting and supplying the grid. 

Saturn’s Squid

The main design of  Saturn Squid Spacecraft was inspired by Origami which is the Japanese art of paper folding.

With this inspiration, the design was made to move like a living creature “Squid” with a synchronized (open (open-close) motion shown in the figures. With this motion, it can suck and push the air of Saturn’s atmosphere (gaseous and solid partials).

When it opens gradually it sucks air inside the inner space when it closes it pushes the air backward and moves forward, also the overall design has a tapered shape like a convergent nozzle. Due to some unexpected motion of rocks that may cause damage in the Spacecraft therefor the individual parts of the Spacecraft can create a new type of motion similar to the bird’s motion in order to survive the exploration mission as much as possible. If such a mission mission mission was sent it will not only deploy a single Saturn Squid Spacecraft, but many of them to accomplish the exploration target, also they need to have built-in cooperative autonomous chips and systems on each part to survive either as a whole Spacecraft or individual connected parts.

Jewellery Design

Mechanical Design

Oil Jack Pump

Designing machines and systems from scratch can be a time and cost-consuming process. In this era, we are almost exposed to all types of machines and systems and we are looking to improve them by making them more efficient in energy consumption and financial aspect as well. Therefore, we used an existing model of the oil jack pump made by Weatherford to make our analyses. This was my graduation project and I worked to redesign some of the components in the oil jack pump and study its kinematics and kinetics.

Snake Robot

The snake robot design had passed through 2 designs the first one was moving in 3D the second in 2D, the target was to have a camera connected to the head to discover and identify objects with artificial intelligence technology. Besides, our project uses the communication method between each part of it to simulate the movement of a snake. Moreover, each part of the robotic snake is made up of servo motor. The design of this project is divided into two parts. The first part is the mechanical structure. The second part is programming. Regarding the mechanical part, the design of the snake is based on planar (two-dimensional) motion. The body consists of 5 parts; Every two parts are connected together using a single servo motor. The motor moves left and right creating movement between the two clips. When we have all the parts connected, the end result will be the movement of the snake.

Auxetic Material

Auxetic materials are a new type of design the structure of the materials and this can give a lot of advantages in the behaviors like mechanical, thermal, chemical, and physical. The researchers, engineers, and others are making a lot of experiments in that field to understand the auxetic material where they offer a lot of benefits and advantages based on the structures. Auxetic microporous and cellular materials have a huge potential in the biomedical field. They can be used for similar vessels in the body. Also, can be used in operations of blood vessels and in bond replacements as well as the artificial limbs. The software used to model the sample designs was the SolidWorks. Abaqus which is finite element analyses software used to study the deformations on the models as shown in the next figures. One problem of using them is the cost of fabrication since the easiest way of fabrication is to 3D-print which is still expensive compared with the conventional methods.    

Other

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