The structure-property relationship in a desulfurised and degassing hot work W۵۰۰ tool steel

Publish Year: 1390
نوع سند: مقاله ژورنالی
زبان: English
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JR_ISSIRAN-8-1_004

تاریخ نمایه سازی: 6 آبان 1402

Abstract:

The effect of secondary steelmaking processes such as desulphurization, removal of inclusions and vacuum degassing followed by hot forging and hardening heat treatment on the microstructure and mechanical properties of a hot-work w۵۰۰ tool steel have been studied in details. In order to follow the progress of secondary steel making, the content of impurity elements such as S, P, O, H and N were measured. These elements influence the mechanical testing and the microstructure of the steel. The results show that desulfurization treatment can be accelerated at higher temperature of ۱۶۸۰ °C and ۱۵ minutes holding time for silicon and aluminum with contents of ۰.۳۳% and ۰.۰۵۶% in the molten steel, respectively. In this condition, the removal percentage of sulfur has been reached to about ۹۰% relative to the initial sulfur content. For the degassing sample A, the strength and the hardness, after hot working and quenching – tempering, have been increased from ۹۷۶ to ۲۰۲۰ MPa and ۲۹ to ۵۲ RC, respectively. Whereas for the normal sample B, the associated strength and the hardness have been changed from ۸۷۰ to ۱۸۴۵ MPa and ۲۱ to ۵۵ RC, respectively. The difference between mechanical properties of sample A and sample B cab be related to the presence of Al۲O۳ clusters, silicate inclusions, and a longer filamentary inclusion in the microstructure of sample B after hot-forging. Microstructural observations show that the morphology of pearlite in the forged sample A is more uniform and carbide particles are also much finer than these particles in the non-degassing forged sample B.

Authors

M. Kalantar

Department of Materials Engineering, Faculty of Mining and Metallurgy, Yazd University, Yazd, Iran

S. Ghasemi

Department of Materials Engineering, Faculty of Mining and Metallurgy, Yazd University, Yazd, Iran

M. Saadati

Department of Materials Engineering, Faculty of Mining and Metallurgy, Yazd University, Yazd, Iran

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