Kinematic And Dynamic Analysis of Engine with respect to crank angle & Flywheel Design

  • Unique Paper ID: 170627
  • PageNo: 814-819
  • Abstract:
  • In this paper, we have analyzed single slider crank mechanism used in engine, kinematically and dynamically and also designed a flywheel on the basis of data obtained from analysis. Vector loop analysis and cosine rule are employed to determine the piston's position. By differentiating the position equations, we can obtain the velocity and acceleration of various links. The equations of motion for each moving link are formulated based on the kinematic analysis. This allows for the calculation of all motion parameters as a function of the crank angle. A 2D CAD model, created using Auto CAD software, provides a visual representation of the system. The mathematical algorithms are implemented and solved using MATLAB and Excel. The paper concludes with the formulation of forces acting on the crank mechanism and the applied torque as functions of crank and connecting rod angles.

Copyright & License

Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{170627,
        author = {Srinivas Malvadkar and Ronit Sawpnil Relekar and Laukik Gopal Kharote and Amey Dhananjay Joshi and Suraj Santosh Jadhav and Shakil Abdul Hamid Shaikh and Prof. Rajkumar K. Bhagat and Dr. Nitin V. Borse},
        title = {Kinematic And Dynamic Analysis of Engine with respect to crank angle & Flywheel Design},
        journal = {International Journal of Innovative Research in Technology},
        year = {2024},
        volume = {11},
        number = {7},
        pages = {814-819},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=170627},
        abstract = {In this paper, we have analyzed single slider crank mechanism used in engine, kinematically and dynamically and also designed a flywheel on the basis of data obtained from analysis. Vector loop analysis and cosine rule are employed to determine the piston's position. By differentiating the position equations, we can obtain the velocity and acceleration of various links. The equations of motion for each moving link are formulated based on the kinematic analysis. This allows for the calculation of all motion parameters as a function of the crank angle. A 2D CAD model, created using Auto CAD software, provides a visual representation of the system. The mathematical algorithms are implemented and solved using MATLAB and Excel. The paper concludes with the formulation of forces acting on the crank mechanism and the applied torque as functions of crank and connecting rod angles.},
        keywords = {Kinematic, Dynamic, Formulation, Analysis, Flywheel Design},
        month = {December},
        }

Cite This Article

Malvadkar, S., & Relekar, R. S., & Kharote, L. G., & Joshi, A. D., & Jadhav, S. S., & Shaikh, S. A. H., & Bhagat, P. R. K., & Borse, D. N. V. (2024). Kinematic And Dynamic Analysis of Engine with respect to crank angle & Flywheel Design. International Journal of Innovative Research in Technology (IJIRT), 11(7), 814–819.

Related Articles