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Refractory alloys exhibit excellent high-temperature mechanical properties and stability, demonstrating broad application prospects in various extreme high-temperature environments. Alloying, by precisely regulating composition and microstructure, endows alloys with good comprehensive properties, thereby significantly enhancing their service performance in specific environments. Therefore, it is a key technology in the refractory metals industry. Notably, extensive research has demonstrated that rare earth alloying typically plays a crucial role in improving the comprehensive performance of refractory alloys. To elucidate the alloying effects of rare earth elements in refractory alloys, this work systematically reviewed the relevant studies on Y alloying in Nb, Mo, W, Zr, and their corresponding alloys. Therefore, the mechanistic roles of rare earth elements in microstructural evolution, mechanical property enhancement, and oxidation/corrosion resistance improvement of refractory alloys are comprehensively summarized in this review. Furthermore, future research directions for rare earth alloying in refractory alloys are discussed and proposed.

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).
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