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Structural Features and Solid-Solution Hardening of High-Entropy CrMnFeCoNi Alloy

机译:高熵CrMnFeCoNi合金的结构特征和固溶强化

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摘要

The phase composition, microstructure, and mechanical properties of the single-phase CrMnFeCoNi high-entropy alloy with fcc lattice produced by argon-arc vacuum melting are studied. The alloy solid-solution hardening mechanism is analyzed. The abnormally high athermic solid-solution hardening of the alloy is due to variation in the Burgers vector along the dislocation line and a vector component perpendicular to the slip plane. The activation energy of dislocation movement and activation volume are calculated. The activation energy of dislocation movement is close to the activation energy of pure metals with fcc lattices, and the activation volume is significantly lower compared to that of pure metals because picosized distortions grow in the crystal lattice of the multicomponent alloy. The ratio of hardness and yield stress for this alloy is examined.
机译:研究了通过氩弧真空熔炼制备的具有fcc晶格的单相CrMnFeCoNi高熵合金的相组成,显微组织和力学性能。分析了合金的固溶强化机理。合金异常高的动脉粥样硬化固溶硬化是由于沿位错线的Burgers矢量和垂直于滑移平面的矢量分量的变化。计算位错运动的激活能和激活量。位错运动的活化能接近具有fcc晶格的纯金属的活化能,并且与纯金属相比,其活化体积明显较低,因为在多组分合金的晶格中会出现微微的畸变。检查该合金的硬度与屈服应力之比。

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