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研究双相 Fe-Ga-Tb 合金中增强的机械性能。

Investigating enhanced mechanical properties in dual-phase Fe-Ga-Tb alloys.

机构信息

Key Laboratory of Aerospace Materials and Performance (Ministry of Education), School of Materials Science and Engineering, Beihang University, Beijing 100191, P. R. China.

出版信息

Sci Rep. 2016 Oct 3;6:34258. doi: 10.1038/srep34258.

Abstract

Dual-phase (FeGa)Tb alloys with 0 ≤ x ≤ 1 were synthesized by arc melting and homogenization treatment. The microstructures and the corresponding mechanical properties were systematically investigated. The chemical composition of the body centered cubic matrix is FeGa. The monoclinic second phase was composed of meltable precipitates with approximate composition FeGaTb. The nano-hardness of matrix and precipitates were 2.55 ± 0.17 GPa and 6.81 ± 1.03 GPa, respectively. Both the ultimate tensile strength (UTS) and fracture strain (ε) of the alloys were improved by the precipitates for x ≤ 0.2 alloys, but the strain decreases significantly at higher values of x. As potential structural-functional materials, the best mechanical properties obtained were a UTS of 595 ± 10 MPa and an ε of 3.5 ± 0.1%, four-fold and seven-fold improvements compared with the un-doped alloy. The mechanism for these anomalous changes of mechanical properties was attributed to the dispersed precipitates and semi-coherent interfaces, which serve as strong obstacles to dislocation motion and reduce the stress concentration at the grain boundaries. A sizeable improvement of magnetostriction induced by the precipitates in the range 0 ≤ x ≤ 0.2 was discovered and an optimal value of 150 ± 5 ppm is found, over three times higher than that of the un-doped alloy.

摘要

通过电弧熔炼和均热处理合成了具有 0≤x≤1 的双相 (FeGa)Tb 合金。系统研究了其微观结构和相应的力学性能。体心立方基体的化学成分是 FeGa。单斜第二相由近似成分 FeGaTb 的可熔析出物组成。基体和析出物的纳米硬度分别为 2.55±0.17 GPa 和 6.81±1.03 GPa。对于 x≤0.2 的合金,析出物提高了合金的极限拉伸强度 (UTS) 和断裂应变 (ε),但在更高的 x 值下应变显著下降。作为潜在的结构功能材料,获得的最佳力学性能为 UTS 为 595±10 MPa 和 ε 为 3.5±0.1%,与未掺杂合金相比提高了四倍和七倍。这些力学性能异常变化的机制归因于分散的析出物和半共格界面,它们作为位错运动的强障碍,减少了晶界处的应力集中。在 0≤x≤0.2 的范围内发现了析出物引起的磁致伸缩的显著提高,发现了 150±5 ppm 的最佳值,比未掺杂合金高三倍以上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b3e/5046131/ee54588b6aad/srep34258-f1.jpg

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