Reverse Trike Formula Car

The main idea of our project is  to create a smaller, energy efficient vehicle for personal transportation with maximum performance and higher stability. So, we are  working on a project which uses bike engine we are shaping it according to aerodynamics .So basically, we a making a vehicle

2025-06-28 16:34:48 - Adil Khan

Project Title

Reverse Trike Formula Car

Project Area of Specialization Mechanical EngineeringProject Summary

The main idea of our project is  to create a smaller, energy efficient vehicle for personal transportation with maximum performance and higher stability. So, we are  working on a project which uses bike engine we are shaping it according to aerodynamics .So basically, we a making a vehicle which is not a bike nor a car specifically and we named it Reverse Trike Formula Car.  
A Reverse Trike can be identified as having a single rear wheel driving the motorcycle with two wheels steering the front. 
 

Project Objectives

We basically work on reverse Trike setup because of the simplicity in design, high performance, easy
maintenance, and safety at very reasonable prices. Our propose project covers these key areas:

  1.  Stabilized Three-Wheeled Vehicle
  2.  Leaning Vehicle with Centrifugal Force Compensation
  3.  Anti-Rolling Device for Vehicles
  4.  Compact
  5.  Attractive
  6.  Better equilibrium.
  7.  Safer
  8.  Comfortable
  9.  Emerging idea
  10.  Cost efficient
  11.  International competition participation
Project Implementation Method    Design & Fabrication Of Reverse                      Trike Formula Car   Design and Engineering
  1. Part Selection
  2. Chassis Design
  3. Suspenstion System design
Reverse Trike Fabrication
  1. Procurement
  2. Reverse trike assembly
  3. Suspention system assembly
  4. Final assembly
  5. Testing
Part Selection Chassis Design Suspension System Procurement Reverse Trike Assembly Suspension System Assembly Final Assembly Testing  
Power Train Component force evaluation load analysis procurement process pipe work Organize Parts Steering system assembly Manual inspection of welding and assembly  
Electrical Component Ergnomics Dynamic simulation deliver parts to assembly line joint work Assemble front Suspension power train assembly Acceleration test  
Tires Material Analysis Material analysis   Painting Assemble rear suspension Breaking system assembly Breaking Test  
driver gear weight analysis Final drawings   Construction Deliver to final assembly  Detail and customization Endurance Test  
breaking system final drawings     Levelling/Adjustment   Painting    
steering system components       Deliver to final assembly        
miscellaneous components                
Part Selection Power Train ComponentElectrical ComponentTiresdriver gearbreaking systemsteering system componentsmiscellaneous componentsBenefits of the Project Technical Details of Final Deliverable Final Deliverable of the Project Hardware SystemCore Industry ManufacturingOther Industries Transportation Core Technology Shared EconomyOther TechnologiesSustainable Development Goals Decent Work and Economic Growth, Industry, Innovation and Infrastructure, Responsible Consumption and Production, Partnerships to achieve the GoalRequired Resources
Elapsed time in (days or weeks or month or quarter) since start of the project Milestone Deliverable
Month 1Chassis Design & Modelling in solid worksAchieved
Month 2Chassis Simulation and Aerodynamic CalculationsAchieved
Month 3Market surveyAchieved
Month 4Part selection (engine, chassis material, miscellaneous component) Chassis pipe purchasing Achieved
Month 5Chassis Welding (Arc Welding)Achieved
Month 6Installation of Wishbone, Upright, Steering system, Braking system and other componentsAchieved
Month 7Engine installation, power trainAchieved
Month 8Final TestingAchieved

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