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Comparison of Fe-Ni based alloys prepared by ball milling and rapid solidification

机译:球磨和快速凝固制备的Fe-Ni基合金的比较

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摘要

Mechanical alloying (MA) and rapid solidification (RS) are two important routes to obtain amorphous alloys. An Fe-Ni based metal-metalloid alloy (Fe50Ni30P14Si6) prepared by these two different processing routes was studied by differential scanning calorimetry, scanning electron microscopy with microanalysis, inductive coupled plasma, X-ray diffraction (XRD) and transmission Mossbauer spectroscopy (TMS). The results were compared with that obtained from other Fe-Ni based alloys of similar compositions.The structural analyses show that the materials obtained by mechanical alloying are not completely disordered after 40 h of milling whereas fully amorphous alloys were obtained by rapid solidification. TMS analyses show that, independent of the composition, after milling for 40 h, about 7% of the Fe remains unreacted.Furthermore, the thermal stability of mechanically alloyed samples is lower than that of the analogous material prepared by rapid solidification. In the MA alloys, a broad exothermic process associated to structural relaxation begins at low temperature. XRD patterns of crystallized alloys indicate that the crystallization products are bcc(Fe,Ni), fcc(Ni,Fe), and (Fe, Ni)-phosphides and -silicides. (C) 2004 Kluwer Academic Publishers.
机译:机械合金化(MA)和快速凝固(RS)是获得非晶态合金的两条重要途径。通过差示扫描量热法,带微分析的扫描电子显微镜,电感耦合等离子体,X射线衍射(XRD)和透射莫斯鲍尔光谱(TMS)研究了通过这两种不同工艺路线制备的Fe-Ni基金属-准金属合金(Fe50Ni30P14Si6) 。将结果与其他类似组成的Fe-Ni基合金进行比较。结构分析表明,通过机械合金化获得的材料在铣削40 h后不会完全无序,而通过快速凝固获得了完全非晶态的合金。 TMS分析表明,研磨40小时后,与成分无关,约有7%的Fe未反应。此外,机械合金化样品的热稳定性低于快速凝固制备的类似材料的热稳定性。在MA合金中,与结构弛豫相关的广泛放热过程始于低温。结晶合金的XRD图谱表明,结晶产物为bcc(Fe,Ni),fcc(Ni,Fe)和(Fe,Ni)磷化物和-硅化物。 (C)2004 Kluwer学术出版社。

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