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Effect of Solidification Rate on the Microstructure and Strain-Rate-Sensitive Mechanical Behavior of AlCoCrFeNi High-Entropy Alloy Prepared by Bridgman Solidification

机译:凝固率对Bridgman凝固制备的AlcoCrfeni高熵合金微观结构和应变率敏感力学行为的影响

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AlCoCrFeNi high-entropy alloys (HEAs) were prepared by Bridgman solidification with different solidification rates, and the mechanical behavior of the HEAs was investigated over a wide strain rate range (similar to 10(-3) similar to 10(3) s(-1)). Microstructure observations suggest that, with increasing solidification rate, the microstructure evolves from coarse columnar grains to fine equiaxed ones. Through compression tests under both quasi-static and dynamic strain rates, the AlCoCrFeNi HEAs were found to possess positive strain-rate sensitivity (SRS), and the HEA with lower solidification rate exhibits higher SRS, which are attributed to the coarse grain size.
机译:通过具有不同凝固速率的布里奇曼凝固制备的阿尔科群岛高熵合金(HEAS),并在宽应变率范围内研究HEA的力学行为(类似于10(3)( - 1))。 微观结构观察表明,随着凝固率的增加,微观结构从粗柱晶体到细平衡的颗粒。 通过对准静态和动态应变率下的压缩试验,发现阿尔科群艾已具有阳性应变率灵敏度(SRS),并且具有较低的凝固率的HEA具有较高的SRS,其归因于粗粒尺寸。

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