Logo image
Effect of electrical discharge machining on surface characteristics and machining damage of AISI D2 tool steel
Journal article   Peer reviewed

Effect of electrical discharge machining on surface characteristics and machining damage of AISI D2 tool steel

Y.H. Guu, H. Hocheng, C.Y. Chou and C.S. Deng
Materials Science and Engineering A, Vol.358(1-2), pp.37-43
15/10/2003

Abstract

Damage Electrical discharge machining Recast layer Residual stress Strain energy density Tool steel
In this work the electrical discharge machining (EDM) of AISI D2 tool steel was investigated. The surface characteristics and machining damage caused by EDM were studied in terms of machining parameters. Based on the experimental data, an empirical model of the tool steel was also proposed. A new damage variable was used to study the EDM damage. The workpiece surface and re-solidified layers were examined by a scanning electron microscopy. Surface roughness was determined with a surface profilometer. The residual stress acting on the EDM specimen was measured by the X-ray diffraction technique. Experimental results indicate that the thickness of the recast layer, and surface roughness are proportional to the power input. The EDM process introduces tensile residual stress on the machined surface. The EDM damage leads to strength degradation. © 2003 Elsevier Science B.V. All rights reserved.

Metrics

1 Record Views

Details

Logo image