
To investigate the principles and components involved in automotive suspension systems with a focus on enhancing ride comfort and vehicle stability.
To design an innovative suspension system that incorporates sustainable materials and energy-efficient mechanisms.
To perform structural and dynamic analyses using CAD and Finite Element Analysis (FEA) tools to ensure system durability under varied load conditions.
To evaluate the environmental impact of materials used and promote eco-friendly alternatives in mechanical design.
To optimize the suspension design for weight reduction without compromising safety or performance, contributing to overall vehicle efficiency.
To develop skills in mechanical system modeling, simulation, and project documentation relevant to modern automotive engineering challenges.
Conduct comprehensive literature review on current automotive suspension technologies and sustainable material applications.
Utilize CAD software to develop detailed 3D models of the proposed suspension system, ensuring all mechanical specifications are met.
Apply Finite Element Analysis (FEA) to simulate stress, strain, and deformation under various operating conditions.
Experiment with different materials and configurations to optimize system performance and sustainability.
Prepare a technical report detailing design rationale, analysis results, and material selection along with environmental considerations.
Present the final design through a seminar or poster session, highlighting innovations and potential real-world applications in automotive engineering.