Subsurface Crack Initiation and Propagation in an Open Dieforged High Strength Steel: A Microstructural Analysis

Author:

Loucif Abdelhalim,Morin Jean Benoit1,Lapierre-Boire Louis Philippe2,Jahazi Mohammad3

Affiliation:

1. Finkl Steel Inc.

2. Finkl Steel - Sorel

3. École de Technologie Supérieure (ETS)

Abstract

This paper presents an experimental investigation with the objective to determine the root causes for the cracking of a large size bar made of a medium carbon low alloy steel after open die forging and heat treatments operations. The cracks were observed below the surface during the machining step. In order to understand the mechanisms of crack initiation and propagation, micro-CT tomography and scanning electron microscope (SEM) were employed. Microstructural damage analysis revealed oxidation of different alloying elements, more specifically manganese, chromium and silicon. The presence of defects in the form of cavities and porosities were also observed at the grain boundaries. Some of the above defects were observed along the crack path, while others were on both sides of the cracks without any connection to them and finally, a third group completely isolated from any crack. The characteristics of the defects were thoroughly analyzed and it was found that the crack initiation could be attributed principally to the porosities/cavities formed during solidification. The analysis also showed that crack propagation occurred during solidification and/or forging and heat treatment steps.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference14 articles.

1. M. Bitterlin, A. Loucif, N. Charbonnier, M. Jahazi, L.-P. Lapierre-Boire and J.-B. Morin: Eng. Fail. Anal, Vol. 68 (2016), pp.122-131.

2. C. Zhang, Y. Bao and M. Wang: Metall Ital, No. 1 (2016), pp.37-44.

3. A. Loucif, E. Ben Fredj, M. Jahazi, L-P. Lapierre-Boire, R. Tremblay and R. Beauvais: Proceeding of the 6th International Congress on the Science and Technology of Steelmaking (ICS2015), Beijing, China (2015), pp.1043-1046.

4. L. Hongwei, F. Paixian, K. Xiuhong and M. Xiaoping: China Foundry, Vol. 11, No. 1 (2014), pp.46-51.

5. J. Campbell, Castings: The New Metallurgy of Cast Metals, 2nd ed, Butterworth-Heinemann, Oxford (2003).

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