Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 9 SI
Page No. 7097 - 7100

Design and Static Structural Analysis of Light Vehicle Brake Drum with Various Materials

Authors : K. SaravananKumar

References

Blaschke, P., M. Tan and A. Wang, 2000. On the analysis of brake squeal propensity using finite element method (No. 2000-01-2765). SAE International, Warrendale, Pennsylvania, USA. http://papers.sae.org/2000-01-2765/

Crolla, D.A. and A.M. Lang, 1991. Paper vii (i) brake noise and vibration-the state of the art. Tribol. Ser., 18: 165-174.
Direct Link  |  

Day, A.J., P.R.J. Harding and T.P. Newcomb, 1984. Combined thermal and mechanical analysis of drum brakes. Proc. Inst. Mech. Eng. Part D. Transp. Eng., 198: 287-294.
Direct Link  |  

Huang, J., C.M. Krousgrill and A.K. Bajaj, 2006. Modeling of automotive drum brakes for squeal and parameter sensitivity analysis. J. Sound Vibr., 289: 245-263.
Direct Link  |  

Manoharan, N. and V. Selvakumar, 2014. Effect of MWNTs on mechanical properties of PP/MMT nanocomposites. Biosci. Biotechnol. Res. Asia, 11: 135-141.

Qian-jin, M.X., 2008. Transient temperature simulation of a braking drum. Mach. Des. Manuf., 6: 1-31.
Direct Link  |  

Raj, A.M., 2014. Evaluation of machining parameters influencing thrust force in drilling of Al-SiC-Gr metal matrix composites using RSM. Intl. J. Eng. Technol., 6: 2426-2434.

Selvakumar, V. and N. Manoharan, 2014. Mechanical and morphological properties of PP/MWNT/MMT hybrid nanocomposites. Intl. J. Eng. Technol., 6: 2351-2356.

Xinchao, Z. and G. Dihua, 1993. The experimental and simulational analysis on drum brake squeal by structurally closed-loop coupling model (No. 931879). SAE International, Warrendale, Pennsylvania, USA. http://papers.sae.org/931879/

Xun, M.A. and Q.I.N. Jian, 2005. Thermal stress coupling analysis of brake drum based on FEM. Mach. Des. Res., 1: 1-21.
Direct Link  |  

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