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    唐山

    • 教授     博士生导师   硕士生导师
    • 性别:男
    • 毕业院校:新加坡国立大学
    • 学位:博士
    • 所在单位:力学与航空航天学院
    • 学科:固体力学. 计算力学. 材料学
    • 办公地点:力学楼303-1
    • 联系方式:18723558261
    • 电子邮箱:shantang@dlut.edu.cn

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    Microstructures and mechanical properties of nano carbides reinforced CoCrFeMnNi high entropy alloys

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    论文类型:期刊论文

    发表时间:2019-07-05

    发表刊物:JOURNAL OF ALLOYS AND COMPOUNDS

    收录刊物:SCIE、EI

    卷号:792

    页面范围:170-179

    ISSN号:0925-8388

    关键字:High-entropy alloy; Carbides; Cold rolling; Mechanical properties

    摘要:Different contents of carbon element (0-3 at.%) was added into CoCrFeMnNi high entropy alloys (HEAs) to prepare carbide-reinforced CoCrFeMnNi matrix composites. The effects of carbon on microstructures and mechanical properties were systematically studied. The CoCrFeMnNi HEA sheet without carbon showed fine recrystallized grains with a grain size of approximately 5 mm and contained Cr-rich sigma phase. The CoCrFeMnNiCx HEA sheets with 1.0 at.% and 3.0 at.% C presented fine recrystallized grains and a small fraction of elongated grains. A large number of nano-scaled carbides were observed in the carboncontaining HEA sheets. With the carbon content increasing from 0 at.% to 3.0 at.%, the strengthening of the alpha-fiber texture is more obvious, and tensile yield strength increased from 371MPa to 792MPa, however, the elongation decreased from 54% to 11%, respectively. The CoCrFeMnNiC1 HEA sheet with a volume fraction of 2.9% nano carbides showed excellent balanced mechanical property, with tensile yield strength of 634 MPa and elongation of 38%. The increase of yield strength for the CoCrFeMnNiC1 HEA was mainly ascribed to the combined effects of precipitation Orowan strengthening and dislocations strengthening. Precipitation Orowan strengthening is the primary strength contributor, with a value of approximate 157 MPa. (c) 2019 Elsevier B.V. All rights reserved.