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The Efficacy of Replacing Metallic Cerium in Aluminum-Cerium Alloys with LREE Mischmetal

机译:LREE混合稀土替代铝铈合金中金属铈的效果

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The ongoing development of aluminum-cerium alloys has produced materials exhibiting elevated temperature mechanical property retention, long term microstructural stability, and flexible processability compared to traditional aluminum alloys, accommodating the growing demand for high temperature aluminum alloys not requiring the use of high-cost elements like scandium. To date, reported Al-Ce alloy compositions contain large amounts of elemental cerium. Mischmetal (MM), a mixture of lanthanum, cerium, and other light rare earth elements (LREE) is less expensive and more available than pure cerium. The chemical similarity of the LREEs means there is possibility to use MM as the primary alloy addition, lowering alloy cost. This talk will report the effect of using MM instead of cerium in a 12 wt% binary alloy on mechanical properties, phase constituency, thermal stability, and load sharing. Results will show that MM can be substituted completely for cerium with a mostly positive impact on alloy performance.
机译:与传统铝合金相比,铝铈合金的持续发展已生产出具有高温机械性能保持性、长期微观结构稳定性和灵活加工性的材料,以适应对高温铝合金不断增长的需求,而不需要使用钪等高成本元素。迄今为止,报告的铝铈合金成分含有大量元素铈。混合稀土(MM)是镧、铈和其他轻稀土元素(LREE)的混合物,比纯铈更便宜,也更容易获得。LREE的化学相似性意味着有可能使用MM作为主要合金添加剂,从而降低合金成本。本讲座将报告在12 wt%二元合金中使用MM代替铈对机械性能、相组成、热稳定性和负载分配的影响。结果表明,MM可以完全替代铈,对合金性能有很大的积极影响。

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