Mn \(_{55-x}\) Co \(_x\) Bi \(_{45}\)熔融纺丝带:微观结构和磁性能

T. Nguyen, Anh Kha Vuong, Ngan Thien Thi Dang, Nam Nguyen, N. H. Pham, Quynh Van Nguyen, Tuan Van Dinh, V. V. Nguyen
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摘要

本文研究了钴(Co)的加入对Mn55-xCoxBi45 (x = 0,5,10,20)熔纺带结晶、显微结构和磁性能的影响。采用熔融纺丝技术制备了条带,随后在280℃下退火5小时。通过x射线衍射(XRD)、差示扫描量热法(DSC)和振动样品磁强计(VSM)的测量结果表明,MnBi体系中Co的最佳添加量为5%左右。较大的Co含量导致Mn-Co的共晶形成,限制了Mn与Bi之间的反应形成MnBi铁磁相,导致了带的饱和磁化强度Ms。Mn50Co5Bi45带的最大饱和磁化强度Ms为65emu/g,矫顽力iHc为4.7 kOe。详细讨论了Co含量对Mn55-xCoxBi45熔纺带的组织和磁性能的影响。
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Mn\(_{55-x}\)Co\(_x\)Bi\(_{45}\) Melt Spun Ribbons: Microstructures and Magnetic Properties
In this paper, we present the effect of Cobalt (Co) addition on the crystallization, microstructures and magnetic properties of Mn55-xCoxBi45 (x = 0, 5, 10, 20) melt – spun ribbons. The ribbons were prepared by the melt-spinning techique and subsequent anneal at 280 oC for 5 h. The investigations by using X-ray diffraction (XRD), Differential Scanning Calorimetry (DSC) traces as well the Vibration Sample Magnetometer  (VSM) measurements result in the optimal content of Co added to the MnBi system is arounf 5 %at. The larger Co content causes the eutectic Mn-Co formation which restricts the reaction between Mn and Bi to form MnBi ferromagnetic phase responsible for ribbons’ performance the saturation magnetization Ms. The maximum saturation magnetization Ms of 65emu/g and the coercivity iHc of 4.7 kOe was achived for the ribbon of Mn50Co5Bi45. The effect of Co content on the microstructures and magnetic properties of  Mn55-xCoxBi45 melt – spun ribbons will be discussed in detail.
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