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The Effects of Metalloid Elements on the Nanocrystallization Behavior and Soft Magnetic Properties of FeCBSiPCu Amorphous Alloys

机译:非金属元素对FeCBSiPCu非晶态合金纳米晶行为和软磁性能的影响

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Soft magnetic properties of Fe-based metallic glasses (MGs) are dependent on their nanocrystallization behavior, particularly the precipitation of α-Fe embedded in the amorphous matrix. In this study, the effects of metalloid elements of C, B, Si, and P on thermal stability, nanocrystallization behavior, and soft magnetic properties of typical Fe-based amorphous alloys, i.e., the Fe-Cu-(CBSiP) glassy alloys, were investigated systematically. It is found that the addition of the metalloid elements can effectively retard the precipitation process of α-Fe during reheating of the Fe-based MGs due to the long-range diffusion of the metalloids; however, their individual effects on the compositional portioning and formation of other crystalline phases are varied. To achieve desirable soft magnetic properties, a species of metalloids and their concentrations have to be carefully controlled so that the formation of α-Fe does not interfere with that of other crystalline phases, especially those hard-magnetic phases.
机译:铁基金属玻璃(MGs)的软磁性能取决于其纳米结晶行为,特别是嵌入非晶基体中的α-Fe的沉淀。在这项研究中,C,B,Si和P的准金属元素对典型的Fe基非晶合金(即Fe-Cu-(CBSiP)玻璃态合金)的热稳定性,纳米结晶行为和软磁性能的影响,被系统地调查。研究发现,由于准金属的长距离扩散,准金属元素的添加可以有效地抑制铁基镁再加热过程中α-Fe的沉淀过程。然而,它们对其他结晶相的组成分配和形成的单独影响是变化的。为了获得理想的软磁性能,必须仔细控制准金属的种类及其浓度,以使α-Fe的形成不会干扰其他结晶相(尤其是那些硬磁相)的形成。

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