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Cerium-Based, Intermetallic-Strengthened Aluminum Casting Alloy: High-Volume Co-product Development

机译:铈基金属间强化铝铸造合金:大批量副产品开发

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摘要

Several rare earth elements are considered by-products to rare earth mining efforts. By using one of these by-product elements in a high-volume application such as aluminum casting alloys, the supply of more valuable rare earths can be globally stabilized. Stabilizing the global rare earth market will decrease the long-term criticality of other rare earth elements. The low demand for Ce, the most abundant rare earth, contributes to the instability of rare earth extraction. In this article, we discuss a series of intermetallic-strengthened Al alloys that exhibit the potential for new high-volume use of Ce. The castability, structure, and mechanical properties of binary, ternary, and quaternary Al-Ce based alloys are discussed. We have determined Al-Ce based alloys to be highly castable across a broad range of compositions. Nanoscale intermetallics dominate the microstructure and are the theorized source of the high ductility. In addition, room-temperature physical properties appear to be competitive with existing aluminum alloys with extended high-temperature stability of the nanostructured intermetallic.
机译:几种稀土元素被认为是稀土开采工作的副产品。通过在铝铸造合金等大量应用中使用这些副产品元素之一,可以使全球更有价值的稀土供应稳定。稳定全球稀土市场将降低其他稀土元素的长期危害性。对铈(最丰富的稀土)的低需求导致稀土提取的不稳定性。在本文中,我们讨论了一系列金属间增强的铝合金,这些合金具有大量使用Ce的潜力。讨论了二元,三元和四元Al-Ce基合金的铸造性能,结构和力学性能。我们已确定Al-Ce基合金在各种组成范围内都具有很高的可铸造性。纳米级金属间化合物占主导地位的微观结构,是高延性的理论来源。此外,室温物理性能似乎与现有铝合金具有竞争优势,并且纳米结构金属间化合物具有更高的高温稳定性。

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