Propeller Detailed Engineering 3D Modelling

Job ID: 38515620

Budget: ₹1,500 – ₹12,500 INR

I need a detailed engineering 3D model of a propeller. The primary use of this model will be for simulation testing, so it's crucial that the model is accurate and able to withstand rigorous testing conditions.

Key Aspects to Focus on:
- Aerodynamics: The model should be able to simulate how the propeller interacts with airflow.
- Thrust: The model should also be able to test and simulate the propeller's thrust capabilities.

Ideal Skills and Experience:
- Proficiency in 3D modelling software, specifically for engineering purposes.
- Previous experience in modelling for simulation testing.
- Understanding of aerodynamics and thrust generation.
- Ability to create a model that accurately represents the real-world properties of a propeller.

Provided is the one blade of 110 mm size. This size is the perpendicular distance of the tip of the blade from the hub and not the actual length of the blade. This blade is defined using 3D co-ordinates points (x, y, z). Such 12 blades needs to be attached to a hub. Radius of the Hub should be 15 to 20 mm. Hub should be along z -axis and forward end of the hub should be in the direction of positive z axis. X Y Z co-ordinates of the blade surface are defines accordingly. The blade in the 3D model should be solid and not hallow.
This setup should be placed centrally inside a ring with internal diameter 200mm thickness 1.5 to 2 mm and height 20mm. The portions of the blade which remains outside of the ring should be discarded and ring should be attached to each propeller blade at the remaining tip end. This will form a propeller.
Such 4 propellers should be attached to a quadcopter drone frame. Drone frame should have propeller mounting points at 4 corners of a square of 600mm side size. Each propeller mounting place should have a motor of diameter size 30mm and height 50mm and suitable shaft size.
Frame of the drone should have vertical arms sides and not horizontal arm side to minimize the resistance to the lift. Vertical height of the drone arm should range between 15mm to 20mm and horizontal width of the drone arm should be 2mm to 3mm.

Pl let me know if you can do it. If so then I will provide the xyz co-ordinates file