Optimizing Powder Metallurgy Parameters for Pure Magnesium Using the Taguchi Method and ANOVA

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 143

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شناسه ملی سند علمی:

JR_IJCCE-44-4_010

تاریخ نمایه سازی: 16 خرداد 1404

چکیده مقاله:

Powder Metallurgy (PM) is a versatile manufacturing technology widely used for producing diverse metal matrix composites. In this study, PM was employed to fabricate pure magnesium (P Mg) samples, optimizing critical properties such as density (ρ), percent porosity (%P), and microhardness (HV). Unlike previous works, this study uniquely applied a combined Taguchi and ANOVA-based optimization framework to systematically evaluate the influence of three key PM factors: Compaction Pressure (CP), Sintering Temperature (ST), and Sintering Time (St). Experimental runs were designed using Taguchi's L۹ orthogonal array, with CP (۵۵۰, ۶۰۰, and ۶۵۰ MPa), ST (۴۵۵, ۵۲۵, and ۵۸۵ °C), and St (۳۰, ۴۵, and ۶۰ minutes) tested at three levels each. The findings revealed that CP level ۳ (۶۵۰ MPa), ST level ۲ (۵۲۵ ºC), and St level ۱(۳۰ minutes) were the optimal parameters for maximizing response characteristics. These results represent a significant improvement in density and microhardness compared to prior studies, demonstrating the efficacy of this method in reducing porosity and enhancing the mechanical properties of P Mg. Furthermore, the integration of regression analysis and Pareto visualization provided predictive insights and highlighted the dominant influence of CP on material performance. This approach establishes a reliable methodology for optimizing PM parameters, offering valuable benchmarks for future research and industrial applications.

نویسندگان

Mohammed Fathi

Department of Medical Basic Science, College of Dentistry, University of Kirkuk, IRAQ

Mohamed Terres

Mechanical, Material and Process Laboratory (LR۹۹ES۰۵) ENSIT- University of Tunis, ۵ AV. Taha Hussein Montfleury, Tunis, TUNISIA

Jawdat Yagoob

Engineering Technical College Kirkuk- Northern Technical University, Kirkuk, IRAQ

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