EN
Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method
Abstract
In the study, Mg-xCa alloys with high mechanical performance were developed using a statistical model central composite design (CCD) method to predict the mechanical properties of Mg and Ca powders produced by powder metallurgy. Powder metallurgy (TM) is a production method that offers great advantages over other production methods. However, there are limited studies in the literature on the production of alloying Ca to eliminate the high degradation rate of pure Mg loss. Mg and Ca powders were subjected to the alloying process for different times as 11.99-14.43-18-21.5-24 h, and after mechanical alloying (MA), grain size measurements of the powders and XRD and SEM-EDS analyses were performed. After MA, the powders were sintered at different temperatures, such as 325-370-437-504-549°C in an argon gas environment under 46 MPa pressure, and samples were obtained. The microstructures, mechanical properties, compressive strength, density values, and XRD-SEM results showed that the secondary phase Mg2Ca increased with increasing Ca content, which indicates the increasing hardness of Mg-xCa alloy. Using the CCD method, the sample's compressive strength, hardness, and density results with optimal values produced from Mg-xCa alloys were determined as 251 MPa, 146 Brinell, and 1.7 g/cm3, respectively. The compatibility of the experimental results with the Regression formula confirms the reliability of the equation.
Keywords
References
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Details
Primary Language
English
Subjects
Crystallography, Inorganic Chemistry (Other), Physical Properties of Materials
Journal Section
Research Article
Publication Date
May 31, 2025
Submission Date
January 30, 2025
Acceptance Date
May 10, 2025
Published in Issue
Year 2025 Volume: 12 Number: 2
APA
Güleryüz, L. F., & İpek, R. (2025). Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method. Journal of the Turkish Chemical Society Section A: Chemistry, 12(2), 141-154. https://doi.org/10.18596/jotcsa.1630114
AMA
1.Güleryüz LF, İpek R. Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method. JOTCSA. 2025;12(2):141-154. doi:10.18596/jotcsa.1630114
Chicago
Güleryüz, Lütfiye Feray, and Rasim İpek. 2025. “Microstructure-Mechanical Properties of Mg-XCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method”. Journal of the Turkish Chemical Society Section A: Chemistry 12 (2): 141-54. https://doi.org/10.18596/jotcsa.1630114.
EndNote
Güleryüz LF, İpek R (May 1, 2025) Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method. Journal of the Turkish Chemical Society Section A: Chemistry 12 2 141–154.
IEEE
[1]L. F. Güleryüz and R. İpek, “Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method”, JOTCSA, vol. 12, no. 2, pp. 141–154, May 2025, doi: 10.18596/jotcsa.1630114.
ISNAD
Güleryüz, Lütfiye Feray - İpek, Rasim. “Microstructure-Mechanical Properties of Mg-XCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method”. Journal of the Turkish Chemical Society Section A: Chemistry 12/2 (May 1, 2025): 141-154. https://doi.org/10.18596/jotcsa.1630114.
JAMA
1.Güleryüz LF, İpek R. Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method. JOTCSA. 2025;12:141–154.
MLA
Güleryüz, Lütfiye Feray, and Rasim İpek. “Microstructure-Mechanical Properties of Mg-XCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method”. Journal of the Turkish Chemical Society Section A: Chemistry, vol. 12, no. 2, May 2025, pp. 141-54, doi:10.18596/jotcsa.1630114.
Vancouver
1.Lütfiye Feray Güleryüz, Rasim İpek. Microstructure-Mechanical Properties of Mg-xCa Alloys Produced by Mechanical Alloying-Hot Pressing Process and Their Optimization Using Central Composite Design Method. JOTCSA. 2025 May 1;12(2):141-54. doi:10.18596/jotcsa.1630114
