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Improvement of the creep resistance of FeAI-based alloys

机译:改善FeAI基合金的抗蠕变性

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摘要

By increasing the concentration of carbon or transition metals, the creep resistance of a Fe-40Al-0.2Mo~0.05 Zr-0.5Ti-0.2C-0.02B (at.pencent) alloy was significantly improved with the minimum creep rate decreasing by the order of three. The improvement was attributed to precipitation hardening and solid solution hardening. The influence of precipitation hardening and solid solution hardening on the creep behavior of FeAl-based alloys was analyzed. Formation of grain boundary microcracks and the microstructual instability are likely to be the concerns for FeAl-based alloy during long-term creep.
机译:通过增加碳或过渡金属的浓度,Fe-40Al-0.2Mo〜0.05 Zr-0.5Ti-0.2C-0.02B(at.pencent)合金的抗蠕变性显着提高,最小蠕变速率降低三阶。改善归因于沉淀硬化和固溶硬化。分析了沉淀硬化和固溶硬化对FeAl基合金蠕变行为的影响。 FeAl基合金在长期蠕变过程中可能会关注晶界微裂纹的形成和组织的不稳定性。

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