Fabrication Of Four Wheel Steerring Mechanism

April 2026
Vol-12, Issue-2
Paper ID: 28318
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
MECHANICAL ENGINEERING
Keywords
Four Wheel Steering (4WS) Steering Mechanism Vehicle Maneuverability Turning Radius Mechanical Linkage Fabrication Steering Control Stability Enhancement Automobile Engineering Directional Control Low-Speed Handling High-Speed Stability.
Abstract
The fabrication of a four-wheel steering (4WS) mechanism aims to improve the maneuverability, stability, and overall performance of a vehicle compared to conventional two-wheel steering systems. In this project, a mechanical system is designed and developed in which all four wheels participate in steering, allowing the rear wheels to turn either in the same direction or opposite direction to the front wheels depending on the driving condition. At low speeds, the rear wheels steer in the opposite direction to the front wheels, reducing the turning radius and making the vehicle easier to handle in tight spaces. At high speeds, the rear wheels steer in the same direction as the front wheels, enhancing stability and smooth lane changing. The fabrication process involves designing the steering linkage system, selecting suitable materials, and assembling components such as steering arms, shafts, gears, and joints. The mechanism is built with a focus on simplicity, cost-effectiveness, and ease of operation. Various mechanical linkages are used to synchronize the motion between front and rear wheels without the need for complex electronics. The developed model is tested to evaluate its turning capability, control efficiency, and stability. The results show that the four-wheel steering mechanism significantly reduces turning effort and improves directional control compared to traditional systems. This project demonstrates a practical approach to enhancing vehicle performance and highlights the potential application of 4WS systems in modern automobiles for better safety and driving comfort.

Author Information

# Name Institute / Affiliation
1 Mr Yashesh Ahirwar Sree Dattha Institute Of Engineering And Science
2 L Mahendhar Sree Dattha Institute Of Engineering And Science
3 D CHANDU Sree Dattha Institute Of Engineering And Science
4 P Akash Sree Dattha Institute Of Engineering And Science
5 N Raj Kumar Sree Dattha Institute Of Engineering And Science

How to Cite

Use the following formats to cite this article in your research.

APA Style
Ahirwar, Mr Yashesh, Mahendhar, L, CHANDU, D, Akash, P, & Kumar, N Raj (2026). Fabrication Of Four Wheel Steerring Mechanism. International Journal of Advance Research and Innovative Ideas In Education, 12(2), 1468-1473.
MLA Style
Ahirwar, Mr Yashesh, et al. "Fabrication Of Four Wheel Steerring Mechanism." International Journal of Advance Research and Innovative Ideas In Education, vol. 12, no. 2, 2026, pp. 1468-1473.
IEEE Style
Mr Yashesh Ahirwar, L Mahendhar, D CHANDU, P Akash, and N Raj Kumar, "Fabrication Of Four Wheel Steerring Mechanism," International Journal of Advance Research and Innovative Ideas In Education, vol. 12, no. 2, pp. 1468-1473, 2026.
Vancouver Style
Ahirwar Mr Yashesh, Mahendhar L, CHANDU D, Akash P, Kumar N Raj. Fabrication Of Four Wheel Steerring Mechanism. International Journal of Advance Research and Innovative Ideas In Education. 2026;12(2):1468-1473.
Harvard Style
Ahirwar, Mr Yashesh, Mahendhar, L, CHANDU, D, Akash, P, & Kumar, N Raj (2026) 'Fabrication Of Four Wheel Steerring Mechanism', International Journal of Advance Research and Innovative Ideas In Education, 12(2), pp. 1468-1473.
Chicago Style
Ahirwar, Mr Yashesh, et al. "Fabrication Of Four Wheel Steerring Mechanism." International Journal of Advance Research and Innovative Ideas In Education 12, no. 2 (2026): 1468-1473.
Turabian Style
Ahirwar, Mr Yashesh, et al. "Fabrication Of Four Wheel Steerring Mechanism." International Journal of Advance Research and Innovative Ideas In Education 12, no. 2 (2026): 1468-1473.

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