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首页> 外文期刊>Journal of Materials Science >Enhancement in the elongation, yield strength and magnetic properties of intermetallic FeCo alloy using spark plasma sintering
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Enhancement in the elongation, yield strength and magnetic properties of intermetallic FeCo alloy using spark plasma sintering

机译:采用火花等离子体烧结增强金属间FECO合金的伸长率,屈服强度和磁性性能

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摘要

Equiatomic FeCo alloys were densified using spark plasma sintering (SPS). Using a constant 50 MPa pressure, the sintering temperature and dwell times for the SPS process were optimised for different heating rates (50, 100, 300 A degrees C min(-1)). All samples used in this optimisation process were analysed in terms of their mechanical and magnetic properties. Interestingly, for all heating rates, FeCo samples sintered at the highest temperatures (1100 A degrees C) without dwelling exhibited an increased tensile yield strength combined with an improvement in the elongation to fracture. This occurred despite the microstructural coarsening observed at this sintering temperature, which decreased the ultimate tensile strength. Improved grain boundary bonding in the samples sintered at the highest sintering temperature led to a suppression of intergranular fracture, something previously considered to be inherent to all equiatomic FeCo alloy structures. An optimum combination of mechanical (ultimate tensile strength = 400 MPa, yield strength = 340 MPa and strain to failure = 3.5%) and magnetic (saturation induction (B (sat)) of 2.39 T and coercivity (Hc) of 612 A m(-1)) properties was achieved by sintering to 1100 A degrees C using a relatively slow heating rate of 50 A degrees C min(-1) with no dwell time.
机译:使用火花等离子体烧结(SPS)致密均匀的FECO合金。使用恒定的50MPa压力,SPS工艺的烧结温度和停留时间针对不同的加热速率进行了优化(50,100,300,C min(-1))。在其机械和磁性特性方面分析了该优化过程中使用的所有样品。有趣的是,对于所有加热速率,在没有居住的最高温度(1100℃)的FECO样品烧结,而不居住地表现出增加的拉伸屈服强度与伸长率的改善。尽管在该烧结温度下观察到微观结构粗化,但这发生了这减少了极限拉伸强度。在最高烧结温度下烧结的样品中的改进的晶界键合导致骨髓骨折的抑制,以前认为是所有赤脂的FECO合金结构所固有的。机械(极限拉伸强度= 400MPa,屈服强度= 340MPa的最佳组合= 34.5%)和磁性(饱和诱导(B(B(B(B(B))和矫顽力(HC)为612 A m( -1))使用没有停留时间的50℃min(-1)的相对慢的加热速率烧结到1100℃,通过烧结为1100℃。

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  • 来源
    《Journal of Materials Science》 |2017年第22期|共12页
  • 作者单位

    Cardiff Univ Cardiff Sch Engn Wolfson Ctr Magnet Cardiff CF24 3AA S Glam Wales;

    Queen Mary Univ London Sch Engn &

    Mat Sci Mile End Rd London E1 4NS England;

    Queen Mary Univ London Sch Engn &

    Mat Sci Mile End Rd London E1 4NS England;

    Cardiff Univ Cardiff Sch Engn Wolfson Ctr Magnet Cardiff CF24 3AA S Glam Wales;

    Cardiff Univ Cardiff Sch Engn Inst Mech &

    Mfg Engn Cardiff CF24 3AA S Glam Wales;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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