Effects of sintering temperature on densification, microstructure and micro-hardness of intermetallic Ti-Cu alloy prepared by mechanical alloying and microwave-assisted sintering method

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 304

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شناسه ملی سند علمی:

JR_ACERPT-10-2_003

تاریخ نمایه سازی: 14 بهمن 1403

چکیده مقاله:

Microwave sintering has emerged as a promising technique for the fabrication of Ti-based alloys, offering unique advantages over conventional sintering methods. The selective and volumetric heating capabilities of microwaves can result in rapid densification, microstructural refinement, and enhanced properties in Ti-Cu alloy systems. Therefore, this study aimed to synthesize an intermetallic alloy of Ti-۵۰ at. % Cu through high-energy mechanical milling and a microwave-assisted sintering method. The objective was to expedite the sintering process of the Ti-Cu alloy using microwave assistance and analyze how this method influences the phases formed and the properties of the alloy. A Ti-۵۰ at. % Cu powder mixture was milled for ۳۰ hours under an argon atmosphere, then uniaxially compacted to form green samples, which were subsequently sintered by microwave heating. This method allowed for rapid consolidation without significant grain growth within a short sintering period. The effects of the sintering method and temperature on microstructure and mechanical properties were studied. The density of the sintered samples increased with rising temperatures, with the highest density of ۶.۵۴ g/cm³ obtained at ۹۰۰°C. Microstructural examination revealed that the Ti۳Cu۴ and TiCu phases primarily formed, with an average grain size of approximately ۲۸ nm. A high micro-hardness of ~۸۸۰ HV was achieved for the dense alloy prepared using this method.

نویسندگان

Mohammad Reza Akbarpour

Professor, Department of Materials Engineering, University of Maragheh, P.O. Box: ۸۳۱۱۱-۵۵۱۸۱, Maragheh, Iran.

Fatemeh Torknik

PhD, Department of Semiconductors, Materials and Energy Research Center, Karaj, Iran.

Touraj Ebadzadeh

Professor, Department of Ceramic, Materials and Energy Research Center, Karaj, Iran.

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