Title of article :
Investigating the Effect of Electrical Discharge Process Input Parameters on Mechanical Properties of Aluminum Surface
Author/Authors :
Eivazi Bagheri, Hadi Department of Mechanical Engineering - Babol Noshirvani University of Technology - Babol, Iran , Gorji, Hamid Department of Mechanical Engineering - Babol Noshirvani University of Technology - Babol, Iran , Shabgard, Mohammad Reza Department of Mechanical Engineering - Tabriz University - Tabriz, Iran , Bakhshi-Jooybari, Mohammad Department of Mechanical Engineering - Babol Noshirvani University of Technology - Babol, Iran
Abstract :
One of the important parameters in electrical discharge machining is the presence of micro cracks on the workpiece surface (recast layer). Therefore, the aim of this study was to investigate the possibility of increasing the mechanical properties of aluminum surface by alloyin g elements (copper and nickel) d iffusion to the recast layer
and thus removing surface micro cracks. For this purpose, pulse on time and pulse
current in with and without ultrasonic vibration have been considered as input
parameters and the presence of surface micro cracks has been investigated usin g
microscopic images. Also, the yield stress of the surface layer was calculated using the
surface micro hardness. Based on the obtain results, surface without micro cracks has
been created on the aluminum surface due to the diffusion of copper and nickel into the
workpiece surface which increased aluminum surface yield strength from 90MPa to
280MPa without ultrasonic vibrations and to 310MPa while applying ultrasonic
vibrations. In other words, ultrasonic vibrations cause an average of 20% increase in
surf ace layer yield strength. In addition, according to the wear test, i n the case of using
ultrasonic vibration, improving the mechanical properties of the surface has caused thinner grooves on the aluminum surface.
Keywords :
Aluminum , Micro Cracks , Electrical Discharge Process , Surface Yield Strength
Journal title :
International Journal of Advanced Design and Manufacturing Technology