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

机译:基于铈的金融金属间加固的铝铸造合金:大容量的共同产品开发

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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挖掘努力的产品。通过在诸如铝铸造合金的大容量施加中使用这些副产物元素之一,可以全局稳定供应更有价值的稀土。稳定全球稀土市场将降低其他稀土元素的长期关键性。对CE的低需求,最丰富的稀土,有助于稀土提取的不稳定性。在本文中,我们讨论了一系列的金属间化加强的Al合金,其具有新的高批量使用CE的潜力。讨论了二进制,三元和季铵基合金的可塑造性,结构和力学性能。我们已经确定了基于Al-Ce的合金,在广泛的组合物上具有高度浇注。纳米级金属间金属间质征显微结构,是高延展性的理论源。此外,室温物理性质似乎具有较大的纳米结构金属间金属间的铝合金具有竞争力。

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