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退火溫度對FeMnCoCr高熵合金組織和力學性能的影響

Effect of annealing temperature on microstructure and mechanical properties of FeMnCoCr high entropy alloys

  • 摘要: 針對高熵合金工程結構應用中“強塑性倒置”這一難題,通過冷軋與熱處理組合方法製備了一種具有混晶組織的FeMnCoCr高熵合金,並研究了不同退火溫度和時間對其微觀組織和力學性能的影響規律🥷🏿👨‍👩‍👧。結果表明👮🏽,退火溫度的提高可以促進動態再結晶晶粒的形核與長大,增加了粗晶與超細晶的晶粒尺寸差異度,提高了粗晶比例🐇⛹🏻;其中,730 ℃退火具有顯微硬度213 HV、屈服強度574 MPa🧫、抗拉強度986 MPa和斷後延伸率42%的最佳綜合強塑性🌽,其強塑積可達35.9%。

     

    Abstract: In order to address the tough issue of‘strong-ductility trade-off’ for the structural application of high entropy alloy (HEA), a FeMnCoCr high entropy alloy with heterogeneous grain size was prepared by the combination of cold rolling and heat treatment, and the effects of different annealing temperature and time on its microstructure and mechanical properties were studied. The results showed that the increase of annealing temperature could promote the nucleation and growth of dynamically recrystallized grains, and enhanced the difference in grain size between coarse and ultrafine grains, as well as the proportion of coarse grains. Additionally, an annealing temperature of 730 ℃ contributed to the best comprehensive strength and plasticity combination of micro-hardness 213 HV, yield strength 705 MPa, tensile strength 910 MPa and fracture elongation 42.5%. The product of strength and tensile elongation reached approximately at the high value of 35.9%.

     

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