Effects of Mischmetal Composition and Cooling Rates on the Microstructure and Mechanical Properties of Al-(Ce, La, Nd) Eutectic Alloys
Jie Qi, Erin C. Bryan, David C. Dunand

TL;DR
This study explores how mischmetal composition and cooling rates influence the microstructure and mechanical properties of Al-(Ce, La, Nd) alloys, demonstrating their potential as sustainable, high-performance materials with excellent coarsening and creep resistance.
Contribution
It introduces the use of mischmetal as a substitute for cerium in Al alloys, showing comparable or improved properties and environmental benefits over traditional alloys.
Findings
Al-9MM alloys have high hardness (~525 MPa) and good tensile properties.
Al-9MM exhibits superior coarsening and creep resistance compared to some conventional alloys.
Cooling rate affects microstructure, with higher rates producing finer lamellae and stable hardness.
Abstract
This study investigates the substitution of cerium (Ce) with mischmetal (MM) in cast Al-MM alloys, focusing on microstructure, hardness, tensile and compression properties, creep resistance, and coarsening resistance. Al-MM alloys with various MM compositions (Ce, Ce-50La, Ce-33La, and Ce-27La-19Nd, weight percent) exhibit near-eutectic and hyper-eutectic microstructures for Al-9MM and Al-12MM compositions, respectively, with similar as-cast hardness (~525 MPa). All Al-9MM alloys show tensile yield stress ~55 MPa, ultimate tensile strength ~130 MPa, and fracture strain ~8%.The microstructural and mechanical properties consistency demonstrates the flexibility of MM compositions in Al-MM alloys. Al-9MM exhibits excellent coarsening resistance, with minimal hardness reduction when exposed to 300 and 350 C for up to 11 weeks, and a modest ~15% hardness reduction at 400 C for 8 weeks,…
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Taxonomy
TopicsIntermetallics and Advanced Alloy Properties · Metallurgical and Alloy Processes · Advanced Materials Characterization Techniques
