Experimental assessment of the gray cast iron production by inoculant injection

Author:

Reyes-Castellanos G.1,Cruz-Ramírez A.1,Gutiérrez-Pérez Hugo2,Rivera-Salinas J.E.3,Sánchez-Alvarado R.G.1,Colin-García E.1

Affiliation:

1. Departamento de Ingeniería en Metalurgia y Materiales, Instituto Politécnico Nacional - ESIQIE. UPALM, Ciudad de México, México

2. Departamento de Formación Específica, Instituto Politécnico Nacional-UPIIZ, Cerro del Gato, Ejido la Escondida, Ciudad Administrativa, Zacatecas, México

3. Catedrático CONACyT-Departamento de Procesos de Transformación. Centro de Investigación en Química Aplicada-CIQA, Saltillo, Coahuila, México

Abstract

An initial assessment of the gray cast irons production by injecting an inoculant with a conveying gas into a molten iron bath was evaluated at a laboratory scale. A numerical simulation was carried out to determine the hydrodynamic behavior between the inoculant particles injected into the molten iron. It was determined that an optimal interaction between the particles with the molten iron occurred at a lance depth of 7 cm and for the particle sizes fine (211 to 297 ?m) and medium (421 to 590 ?m), and the residence time was of 0.38 and 0.4 s, respectively. The melting time was calculated at 0.0008 and 0.003 s for the particle sizes fine and medium, respectively. After the injection, the FeSi of the inoculant melted quickly, releasing the elements of the inoculant which interacted with the molten iron and formed oxides and sulfides creating nucleating sites during solidification. The injection technique allowed obtaining a type-A graphite distribution for the fine and medium particle sizes. The number of eutectic cells increased when the inoculant particle size decreased despite of the low graphitisers elements and manganese contents used in the gray cast iron manufacturing.

Publisher

National Library of Serbia

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Geotechnical Engineering and Engineering Geology

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