Finite Element Modelling and Analysis of Functionally Graded Disc
Abstract & Details
Research Area
Mechanical Engineering
Keywords
Stress
Strains
Composites material
Aluminium
Finite element analysis
Catia
Abstract
The disc brake is a device for slowing or stopping the rotation of a wheel. A brake disc (or rotor), usually made of cast iron or ceramic composites (including carbon, Kevlar and silica), is connected to the wheel and/or the axle. To stop the wheel, friction material in the form of brake pads (mounted on a device called a brake caliper) is forced mechanically, hydraulically, pneumatically or electromagnetically against both sides of the disc. Friction causes the disc and attaches wheel to slow or stop. Brakes convert friction to heat, but if the brakes get too hot, they will cease to work because they cannot dissipate enough heat. This condition of failure is known as brake fade.
The aim of the project is to model a disc brake used in Honda Civic. Structural is done on the disc brake. The materials used are Cast Iron, Aluminium Alloy 6061and Aluminium MMC. Analysis is also done by changing the design of disc brake. Actual disc brake has no holes, design is changed by giving holes in the disc brake for more heat dissipation. Modelling is done in CATIA, and analysis is done in ANSYS.
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Gosula Suresh | ACE Engineering College, Ghatkesar, Hyderabad, India |
| 2 | V. Srinivas | ACE Engineering College, Ghatkesar, Hyderabad, India |
| 3 | D. Saikiran | ACE Engineering College, Ghatkesar, Hyderabad, India |
| 4 | Ch. Elender | ACE Engineering College, Ghatkesar, Hyderabad, India |
| 5 | S. Praveen Kumar | ACE Engineering College, Ghatkesar, Hyderabad, India |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Suresh, Gosula, Srinivas, V., Saikiran, D., Elender, Ch., & Kumar, S. Praveen (2022). Finite Element Modelling and Analysis of Functionally Graded Disc. International Journal of Advance Research and Innovative Ideas In Education, 8(4), 202-211.
MLA Style
Suresh, Gosula, et al. "Finite Element Modelling and Analysis of Functionally Graded Disc." International Journal of Advance Research and Innovative Ideas In Education, vol. 8, no. 4, 2022, pp. 202-211.
IEEE Style
Gosula Suresh, V. Srinivas, D. Saikiran, Ch. Elender, and S. Praveen Kumar, "Finite Element Modelling and Analysis of Functionally Graded Disc," International Journal of Advance Research and Innovative Ideas In Education, vol. 8, no. 4, pp. 202-211, 2022.
Vancouver Style
Suresh Gosula, Srinivas V., Saikiran D., Elender Ch., Kumar S. Praveen. Finite Element Modelling and Analysis of Functionally Graded Disc. International Journal of Advance Research and Innovative Ideas In Education. 2022;8(4):202-211.
Harvard Style
Suresh, Gosula, Srinivas, V., Saikiran, D., Elender, Ch., & Kumar, S. Praveen (2022) 'Finite Element Modelling and Analysis of Functionally Graded Disc', International Journal of Advance Research and Innovative Ideas In Education, 8(4), pp. 202-211.
Chicago Style
Suresh, Gosula, et al. "Finite Element Modelling and Analysis of Functionally Graded Disc." International Journal of Advance Research and Innovative Ideas In Education 8, no. 4 (2022): 202-211.
Turabian Style
Suresh, Gosula, et al. "Finite Element Modelling and Analysis of Functionally Graded Disc." International Journal of Advance Research and Innovative Ideas In Education 8, no. 4 (2022): 202-211.
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