首页> 美国卫生研究院文献>Scientific Reports >The Exceptional Strong Face-centered Cubic Phase and Semi-coherent Phase Boundary in a Eutectic Dual-phase High Entropy Alloy AlCoCrFeNi
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The Exceptional Strong Face-centered Cubic Phase and Semi-coherent Phase Boundary in a Eutectic Dual-phase High Entropy Alloy AlCoCrFeNi

机译:共晶双相高熵合金AlCoCrFeNi中异常强的面心立方相和半相干相界

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摘要

Second phase strengthening has been applied to high entropy alloys (HEAs) for optimizing mechanical properties. In this study, by conducting mechanical testing of a eutectic dual-phase AlCoCrFeNi HEA with homogenous distribution of body-centered cubic (BCC) and face-centered cubic (FCC) lamellar phases inside a transmission electron microscope, we found that although BCC was truly the hard phase, decreasing the proportion of BCC phase in fact increased the strength due to the existence of chemically disordered semi-coherent phase boundaries, which acted as potent impediments to dislocation motion resulting in dense dislocation storage in FCC phases. Moreover, the difficulty in dislocation glide caused massive cross-slip, and the interaction between primary slip arrays and cross-slip systems during deformation increased the rate of dislocation accumulation by forming dislocation substructures, thus making the FCC phases exceptionally strong. Our findings not only revealed the underlying strengthening mechanism of eutectic dual-phase AlCoCrFeNi HEAs, but also shed light on new ways in further optimizing the mechanical properties of HEAs.
机译:第二相强化已应用于高熵合金(HEA),以优化机械性能。在这项研究中,通过对共晶双相AlCoCrFeNi HEA进行机械测试,使透射电子显微镜中的体心立方(BCC)和面心立方(FCC)层状相均匀分布,我们发现在硬相中,降低BCC相的比例实际上是由于存在化学无序的半相干相界而增加了强度,这是位错运动的强大障碍,导致FCC相中致密的位错储存。此外,位错滑动的困难导致大量的横向滑动,变形过程中初级滑动阵列与横向滑动系统之间的相互作用通过形成位错亚结构而增加了位错积累的速率,从而使FCC相格外牢固。我们的发现不仅揭示了共晶双相AlCoCrFeNi HEA的潜在强化机理,而且为进一步优化HEA的力学性能提供了新的方法。

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