Electromagnetic Braking System
Abstract & Details
Research Area
Mechanical Engineering
Keywords
Friction
Heat
Electromagnetic Brake
Conventional Braking
Abstract
A non-contact method, using magnetic drag force principle, was proposed to design the braking systems to improve the shortcomings of the conventional braking systems. The extensive literature detailing all aspects of the magnetic braking is briefly reviewed, however little of this refers specifically to upright magnetic braking system, which is useful for industries. One of the major issues to design upright magnetic system is to find out the magnetic flux. The changing magnetic flux induces eddy currents in the conductor. These currents dissipate energy in the conductor and generate drag force to slow down the motion. Therefore, a finite element model is developed to analyze the phenomena of magnetic flux density when air gap and materials of track are varied. The verification shows the predicted magnetic flux is within acceptable range with the measured value. The results will facilitate the design of magnetic braking systems.
License
This work is licensed under a Creative
Commons
Attribution-ShareAlike 4.0 International License.
Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Purohit Harish Laljibhai | Samarth Group of colleges |
| 2 | Thakor Divyang Javansinh | Samarth Group of colleges |
| 3 | Prajapati Jaimin Rameshbhai | Samarth Group of colleges |
| 4 | Vankar Dipak Dahyabhai | Samarth Group of colleges |
| 5 | Lalitbhai D. Patel | Samarth Group of colleges |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Laljibhai, Purohit Harish, Javansinh, Thakor Divyang, Rameshbhai, Prajapati Jaimin, Dahyabhai, Vankar Dipak, & Patel, Lalitbhai D. (2018). Electromagnetic Braking System. International Journal of Advance Research and Innovative Ideas In Education, 4(2), 3633-3640.
MLA Style
Laljibhai, Purohit Harish, et al. "Electromagnetic Braking System." International Journal of Advance Research and Innovative Ideas In Education, vol. 4, no. 2, 2018, pp. 3633-3640.
IEEE Style
Purohit Harish Laljibhai, Thakor Divyang Javansinh, Prajapati Jaimin Rameshbhai, Vankar Dipak Dahyabhai, and Lalitbhai D. Patel, "Electromagnetic Braking System," International Journal of Advance Research and Innovative Ideas In Education, vol. 4, no. 2, pp. 3633-3640, 2018.
Vancouver Style
Laljibhai Purohit Harish, Javansinh Thakor Divyang, Rameshbhai Prajapati Jaimin, Dahyabhai Vankar Dipak, Patel Lalitbhai D.. Electromagnetic Braking System. International Journal of Advance Research and Innovative Ideas In Education. 2018;4(2):3633-3640.
Harvard Style
Laljibhai, Purohit Harish, Javansinh, Thakor Divyang, Rameshbhai, Prajapati Jaimin, Dahyabhai, Vankar Dipak, & Patel, Lalitbhai D. (2018) 'Electromagnetic Braking System', International Journal of Advance Research and Innovative Ideas In Education, 4(2), pp. 3633-3640.
Chicago Style
Laljibhai, Purohit Harish, et al. "Electromagnetic Braking System." International Journal of Advance Research and Innovative Ideas In Education 4, no. 2 (2018): 3633-3640.
Turabian Style
Laljibhai, Purohit Harish, et al. "Electromagnetic Braking System." International Journal of Advance Research and Innovative Ideas In Education 4, no. 2 (2018): 3633-3640.
Related Research
Designing And Manufacturing Of Mecanum Wheel
PDF Unavailable
Experimental, Design and Development of different punch and die for head light reflectors
PDF Unavailable
Experimental Analysis of Aluminium Hybrid Material using Analytical and Experimental Method
PDF Unavailable
Effect of Slight Pitch Difference on the Fatigue Life of Bolt
PDF Unavailable