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Optimizing Influence of Process Parameters on Induction Hardening for IC Engine Valve


Affiliations
1 Department of Mech. Engg., Govt College of Engg., Aurangabad, Maharashtra- 431005, India
 

Fatigue behavior of induction hardened part is largely dependent on the correct combination of hardening depth and the magnitude. The objective of this work is to optimize the process parameters of the Induction Hardened End of SH- 5395 tuff pattern in which experimentations have been conducted, the process parameters of IHE were varied to give a constant hardness penetration depth in both spiral and flat coils.

Keywords

IC Engine, Valve, Hardness Penetration Depth, Spiral Coil, Flat Coil
User

  • Kristofferson H and Vomacka P (2001) Influence of process parameter for induction on residual stresses. Material Design. 22, 637-644.
  • Schopfel A and Storzel K (1997) Optimization of process parameter for induction heat treating by means of numerical solution. In: Proc. of the 17th ASM Heat Treating Society Conf. including the 1st Int. Heat Treating Symp., Indianapolis. pp:595-600.

Abstract Views: 408

PDF Views: 146




  • Optimizing Influence of Process Parameters on Induction Hardening for IC Engine Valve

Abstract Views: 408  |  PDF Views: 146

Authors

R. Palanivasan
Department of Mech. Engg., Govt College of Engg., Aurangabad, Maharashtra- 431005, India
R. M. Warkhedkar
Department of Mech. Engg., Govt College of Engg., Aurangabad, Maharashtra- 431005, India

Abstract


Fatigue behavior of induction hardened part is largely dependent on the correct combination of hardening depth and the magnitude. The objective of this work is to optimize the process parameters of the Induction Hardened End of SH- 5395 tuff pattern in which experimentations have been conducted, the process parameters of IHE were varied to give a constant hardness penetration depth in both spiral and flat coils.

Keywords


IC Engine, Valve, Hardness Penetration Depth, Spiral Coil, Flat Coil

References





DOI: https://doi.org/10.17485/ijst%2F2010%2Fv3i7%2F29817