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首页> 外文期刊>Materials Science and Engineering >Effect of Al content and cold rolling on the microstructure and mechanical properties of Al_5Cr_(12)Fe_(35)Mn_(28)Ni_(20) high-entropy alloy
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Effect of Al content and cold rolling on the microstructure and mechanical properties of Al_5Cr_(12)Fe_(35)Mn_(28)Ni_(20) high-entropy alloy

机译:Al含量和冷轧对Al_5Cr_(12)Fe_(35)Mn_(28)Ni_(20)高熵合金组织和力学性能的影响

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摘要

In the present study, low-cost high-entropy Al(5,10)Cr12Fe35Mn Ni-(28,23)(20) alloys containing 5 and 10 at % Al were designed based on the thermodynamic principles. The chemical compositions of the studied high entropy alloys (HEAs) were selected to obtain face centered cubic solid solutions with good cold deformability. The alloys were produced using arc melting and were subsequently subjected to cold rolling to reduce their thickness up to 90%, to study their structure stability and strengthen them. Elemental mapping of the as-cast and deformed structures was conducted using electron microprobe analysis. Subsequently, the mechanical properties of the as cast and heavily deformed alloys were determined using micro hardness measurements and tensile and compression tests. The microstructure evolution was studied using X-ray diffraction and electron backscatter diffraction. It was observed that the thermodynamic parameters of HEAs could be used to enhance their mechanical properties, and the experimental results were in agreement with those observations. After substituting Mn with Al in Al5Cr12Fe35Mn28Ni20, the yield stress of Al10Cr12Fe35Mn23Ni20 increased by similar to 14%. Moreover, the alloy maintained good cold workability and its tensile ductility exceeded 40%. Cold rolling the alloy to 90% increased its yield stress more than four times. Despite the heavy deformation caused by cold rolling (2.3 true strain), deformation twinning was induced in these alloys.
机译:在本研究中,基于热力学原理设计了低成本的高熵Al(5,10)Cr12Fe35Mn Ni-(28,23)(20)合金,其中Al含量为5和10 at%。选择所研究的高熵合金(HEA)的化学成分以获得具有良好冷变形能力的面心立方固溶体。使用电弧熔化法生产合金,然后对其进行冷轧以将其厚度减小至90%,以研究其结构稳定性并对其进行强化。使用电子探针分析对铸态和​​变形结构进行元素标测。随后,使用显微硬度测量以及拉伸和压缩测试确定铸态合金和严重变形合金的机械性能。用X射线衍射和电子反向散射衍射研究了微观结构的演变。观察到,可以使用HEA的热力学参数来提高其力学性能,并且实验结果与这些观察结果一致。在Al5Cr12Fe35Mn28Ni20中用Al替代M​​n后,Al10Cr12Fe35Mn23Ni20的屈服应力增加了约14%。而且,该合金保持良好的冷加工性,并且其拉伸延性超过40%。将合金冷轧至90%时,其屈服应力提高了四倍以上。尽管由冷轧引起严重变形(2.3真实应变),但在这些合金中仍引起变形孪生。

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