Solidification and Casting of Light Alloys

A special issue of Metals (ISSN 2075-4701). This special issue belongs to the section "Metal Casting, Forming and Heat Treatment".

Deadline for manuscript submissions: 30 June 2026 | Viewed by 333

Special Issue Editor


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Guest Editor
Department of Management and Engineering, University of Padova, Strad. San Nicola 3, 36100 Vicenza, Italy
Interests: light alloys; foundry; numerical simulation of metallurgical processes; heat treatments; surface engineering; high-temperature alloys; solidification
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Special Issue Information

Dear Colleagues,

The processes of casting and solidification play a key role in determining the final microstructure and characteristics of light alloys. Controlling and optimising these processes can improve the efficiency and application of these materials. Therefore, the careful analysis and design of these processes is essential.

This Special Issue aims to showcase the most recent advancements in technology, featuring modern techniques, structural developments, and the properties of light alloys, such as aluminium, magnesium, and titanium alloys. Papers dealing with experimental, theoretical, and numerical analyses of the casting and solidification processing of light alloys are welcome.

Investigations about the effects of process parameters on the structure, casting defects, and properties of light alloys, together with contributions that use advanced methods to investigate the relationship between structure and the mechanical and functional properties of light alloys, will be included in this Special Issue. Studies devoted to the effects of alloying elements, impurities, and additives (modifiers, grain refiners, reinforcers, etc.) into the melt on the solidification process; the technological properties of light alloys (fluidity, shrinkage, hot tearing, etc.); and the structure and mechanical properties of light alloys are strongly encouraged.

Prof. Dr. Giulio Timelli
Guest Editor

Manuscript Submission Information

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Keywords

  • solidification
  • casting
  • aluminium
  • magnesium
  • titanium
  • microstructure
  • casting defects
  • solidification modelling
  • processing–microstructure–properties relationship

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Published Papers (1 paper)

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Research

16 pages, 5953 KB  
Article
On the Effect of Cooling Rate and Input Parameters on the Results of Thermal Analysis of Al-7.5%Si Alloys Continuously Cooled in Test Cups
by Doru Michael Stefanescu, EungSu Kweon, DongHoon Roh, DongYoon Kang and HuiChan Kim
Metals 2026, 16(1), 54; https://doi.org/10.3390/met16010054 (registering DOI) - 1 Jan 2026
Abstract
The paper presents a follow-up on the subject of the use of thermal analysis for the generation of fraction solid evolution in cast alloys, particularly in aluminum—silicon alloys. It discusses in detail the importance of correctly determining the characteristic temperatures of the cooling [...] Read more.
The paper presents a follow-up on the subject of the use of thermal analysis for the generation of fraction solid evolution in cast alloys, particularly in aluminum—silicon alloys. It discusses in detail the importance of correctly determining the characteristic temperatures of the cooling curve, including the beginning of solidification, the eutectic temperature, and the end of solidification. It demonstrates the importance of the smoothing techniques applied to the experimentally recorded temperature (cooling curve). Newtonian and Fourier analyses are used to generate the evolution of fraction of solid and the latent heat on cups of different diameters, to assess the effect of cooling rate for Al-7.5%Si alloys. Calculation results are compared with the literature data. It was found that the maximum temperature of the alloy in the cup affected the overall results. Full article
(This article belongs to the Special Issue Solidification and Casting of Light Alloys)
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