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Group precipitation and age hardening of nanostructured Fe-based alloys with ultra-high strengths

机译:具有超高强度的纳米结构铁基合金的群析出和时效硬化

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摘要

The precipitation of nanoparticles plays a key role in determining the properties of many structural materials, and the understanding of their formation and stabilization mechanisms has been a long standing interest in the material field. However, the critical issues involving the group precipitation of various nanoparticles and their cooperative hardening mechanism remain elusive in the newly discovered Fe-based alloys with nanostructures. Here we quantitatively elucidate the nucleation mechanism, evolution kinetics and hardening effects of the group-precipitated nanoparticles in the Fe-Cu-Ni-Al-based alloys by atom probe tomography together with both first-principles and thermodynamic calculations. Our results provide the compelling evidence for two interesting but complex group precipitation pathways of nanoparticles, i.e., the Cu-rich and NiAl-based precipitations. The co-existence of the two precipitation pathways plays a key role in age hardening kinetics and ultimately enhances the hardening response, as compared to the single particle type of strengthening, therefore providing an effective new approach for strengthening materials for structural applications.
机译:纳米颗粒的沉淀在决定许多结构材料的性能方面起着关键作用,并且对它们的形成和稳定机制的理解一直是材料领域的长期兴趣。然而,在新发现的具有纳米结构的铁基合金中,涉及各种纳米粒子团沉淀及其协同硬化机理的关键问题仍然难以捉摸。在这里,我们通过原子探针层析成像以及第一性原理和热力学计算,定量地阐明了Fe-Cu-Ni-Al-基合金中基团沉淀纳米颗粒的成核机理,演化动力学和硬化效果。我们的结果提供了令人信服的证据,证明了纳米颗粒有两个有趣但复杂的组沉淀途径,即富Cu和NiAl基沉淀。与单一颗粒类型的强化相比,两种沉淀途径的共存在时效硬化动力学中起着关键作用,并最终增强了硬化反应,因此提供了一种有效的新方法来强化结构应用材料。

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