The Effect of Water Mist Cooling of Casting Die on the Solidification, Microstructure and Properties of AlSi20 Alloy

Author:

Władysiak R.,Kozuń A.,Pacyniak T.

Abstract

Abstract Unmodified AlSi20 alloy were casted at the research station, allowing for sequential multipoint cooling using a dedicated computer- controlled program. This method allows for the formation of the microstructure of hypereutectic AlSi20 alloy and also increases hardness. Primary silicon dendrites were found in the microstructure of cooled samples. Based on these dendrites, the formation of primary silicon particles is explained. Cooling of casting die with a water mist stream causes changes in solidification, which leads to expansion of the boundary layer with columnar crystals and shrinkage of the core zone with equiaxed crystals. It also causes more regular hardness distribution around pre-eutectic Si crystals, which can lead to tensile strength and machinability improvement.

Publisher

Walter de Gruyter GmbH

Subject

Metals and Alloys

Reference24 articles.

1. Influence of pressure and surface roughness on the heat transfer efficiency during water spray quenching of aluminum alloy;Xu;Mater Process Technol,2014

2. Computer Control the Cooling Process in Permanent Mold Casting of Al Si Alloy;Władysiak;Arch Metall Mater,2013

3. Modelling the creation and destruction of columnar and equiaxed zones during solidification and melting in multi - pass welding of steel;Duggan;Comput Mater Sci,2015

4. Effect of water mist on cooling process of casting die and microstructure of alsi alloy;Władysiak;Arch Metall Mater,2010

5. Thermal and metallographic characteristics of the Si high - pressure die - casting alloy for monolithic cylinder blocks;Yamagata;Mater Process Technol,2008

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