Thermal Thermal Analysis Analysis of of Solid Disc Solid Disc Brake Brake Rotor Rotor
Journal: International Journal of Mechanical and Production Engineering Research and Development (IJMPERD ) (Vol.8, No. 2)Publication Date: 2018-04-30
Authors : A. Naga Phaneendra S. Junaid Razi Wasee UL Kareem. L G. Adnan; S. Abdul Ahad;
Page : 1039-1048
Keywords : CATIA; ANSYS; Disc Brake; Critical Temperature; Heat Dissipation & Disc Profile Received: Feb 14; 2018; Accepted: Mar 06; 2018; Published: Mar 21; 2018; Paper Id.: IJMPERDAP;
Abstract
The work deals with the analysis of heat generation and dissipation in a solid disc brake of a motorcycle during continuous braking by using computer -aided engineering software with two disc profile and three different materials of the rotor disc. The objective of this work is to investigate and analyze the temperature distribution and heat dissipation (steady- state thermal analysis) of the rotor disc during braking operation. The work uses the finite element analysis technique to predict the temperature distribution on the disc rotor and to identify the critical temperature of the brake rotor disc. All three modes of heat transfer (conduction, convection, radiation) have been analyzed. The three different materials studied are Grey Cast Iron, Aluminum Alloy 6262 T-9 and Carbon-Ceramics with two different profiles of disc rotor. The results obtained from the analysis shows that different material on similar load conditions during continuous braking shows different temperature distribution. Thus, a comparison is made between the three materials used to know the best material for making disc brake rotor based on the rate of heat dissipation and critical temperature. Hence, it is found that Aluminum Alloy is the most appropriate material among all three material selected for solid disc rotor.
Other Latest Articles
- Experimental Investigation on Thin Sheets of SS316L in Gas Tungsten Arc Welding Process
- Performance Performance Performance Analysis Analysis Analysis of of of Diesel Diesel Diesel Engine Engine Engine using Hazel using Hazel using Hazel Nut Nut Nut Biodiesel Biodiesel Biodiesel with Antioxidant
- Microstructurural Characterization of 6063 Aluminium Alloy Nano-Composites
- Free Vibrational Analysis of Magneto-Rheological Aircraft Rib Structure
- Development of a New Bio Composite Material by Utilizing Walnut Shell Powder, Coir and Jute Fiber and Evaluation of its Mechanical Properties
Last modified: 2018-07-23 21:09:33