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首页> 外文期刊>Science Advances >Cooperative deformation in high-entropy alloys at ultralow temperatures
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Cooperative deformation in high-entropy alloys at ultralow temperatures

机译:超级温度高熵合金的合作变形

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摘要

High-entropy alloys exhibit exceptional mechanical properties at cryogenic temperatures, due to the activation of twinning in addition to dislocation slip. The coexistence of multiple deformation pathways raises an important question regarding how individual deformation mechanisms compete or synergize during plastic deformation. Using in situ neutron diffraction, we demonstrate the interaction of a rich variety of deformation mechanisms in high-entropy alloys at 15 K, which began with dislocation slip, followed by stacking faults and twinning, before transitioning to inhomogeneous deformation by serrations. Quantitative analysis showed that the cooperation of these different deformation mechanisms led to extreme work hardening. The low stacking fault energy plus the stable face-centered cubic structure at ultralow temperatures, enabled by the high-entropy alloying, played a pivotal role bridging dislocation slip and serration. Insights from the in situ experiments point to the role of entropy in the design of structural materials with superior properties.
机译:由于脱位滑动之外,高熵合金在低温温度下表现出卓越的机械性能。多种变形途径的共存提出了关于单个变形机制如何在塑性变形期间竞争或协同的重要问题。使用原位中子衍射,我们证明了在15 k的高熵合金中富含各种变形机制的相互作用,该机制从位错滑动开始,然后堆叠故障和孪生,在过渡到通过锯齿不均匀变形。定量分析表明,这些不同变形机制的合作导致了极端工作的硬化。低堆叠故障能量加上高熵合金化的超级温度下的稳定面对面的立方结构,起到了桥接错位滑动和锯齿的关键作用。来自原位实验的见解指出了熵在具有优越特性的结构材料设计中的作用。

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