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New Fe-Ni based metal-metaloid glassy alloys prepared by mechanical alloying and rapid solidification

机译:通过机械合金化和快速凝固制备的新型Fe-Ni金属 - 金属玻璃合金

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Mechanical alloying and rapid solidification are two impoortant routes to obtain glassy alloys. New Fe-Ni based metal-metalloid (P-Si) alloys prepared by these two different processing routes were studied by differential scannign calorimetry and transmission Mossbauer spectroscopy. Mechanical alloyed samples were prepared with elemental precursors, and different nominal compositions. Rapidly solidified alloys were obtained by melt-spinning. The structural analyses show that, independent of the composition, the materials obtainedby mechanical alloying are not completely disordered whereas fully amorphous alloys were obtaine dby rapid solidification. Consequently, the thermal stability of mechanically alloyed samples is lower than that of the analogous material prepared by rapid solidification. The P/Si ratio controls the magnetic interaction of the glassy ribbons obtained by rapid solidification. The experimental results are discussed in terms of the degree of amorphization and crystallization versus processing route and P/Si ratio content.
机译:机械合金化和快速凝固是两种促进玻璃合金的巨型途径。通过差分Scannign热量测定法和传输Mossbauer光谱研究了这两个不同加工途径制备的新型Fe-Ni的金属 - 金属(P-Si)合金。用元素前体和不同的标称组合物制备机械合金化样品。通过熔融纺丝获得快速凝固的合金。结构分析表明,独立于组合物,机械合金化的材料并不完全无序,而完全无定形的合金得到DBY快速凝固。因此,机械合金样体的热稳定性低于通过快速凝固制备的类似物质的热稳定性。 P / Si比控制通过快速凝固获得的玻璃状丝带的磁性相互作用。实验结果是根据非晶化和结晶与加工途径和P / Si比含量的讨论的实验结果。

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