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首页> 外文期刊>Intermetallics >Influence of boron addition on the microstructure, structural and magnetic properties of Ni_(53.5)Mn_(26.0)Ga_(20.5) alloy
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Influence of boron addition on the microstructure, structural and magnetic properties of Ni_(53.5)Mn_(26.0)Ga_(20.5) alloy

机译:硼添加对Ni_(53.5)Mn_(26.0)Ga_(20.5)合金的组织,结构和磁性的影响

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摘要

Investigations on Ni_(53.5)Mn_(26.0)Ga_(20.5)B_x system with x = 0, 0.5 and 1.0 show that boron addition does not alter the monoclinic crystal structure, but modifies the superstructural ordering of the boron-free parent compound. Observed reduction in the martensitic transformation temperature by nearly 30 K differs from the usual trend expected with a rise in electron concentration. Contrary to the reports on Ni-Mn -Ga alloys with boron substitution, saturation magnetization at low temperatures increases substan tially (~ 19% per formula unit) on boron addition. The observed large rise in magnetization is correlated to the compositional shift in the majority matrix phase caused by the secondary phase segregation at the grain boundaries, promoted by addition of B. Formation of Ni-rich secondary phase and the associated reduction in Ni content in the matrix phase results in redistribution of Mn atoms at Mn and Ga sites. This causes an effective change in the balance between Mn moments with ferro- and anti-ferromagnetic order in the unit cell, thus explaining the magnetic properties.
机译:对x = 0、0.5和1.0的Ni_(53.5)Mn_(26.0)Ga_(20.5)B_x系统的研究表明,硼的添加不会改变单斜晶的晶体结构,但会改变无硼母体化合物的超结构有序性。观察到的马氏体转变温度降低了近30 K,这与通常预期的电子浓度升高趋势不同。与有关硼取代的Ni-Mn -Ga合金的报道相反,添加硼后,低温下的饱和磁化强度显着提高(每个配方单位约19%)。观察到的大的磁化强度升高与多数基体相的成分变化有关,该相移是由晶界处的次生相偏析引起的,这是由于添加了B引起的。基质相导致Mn原子在Mn和Ga位点处重新分布。这导致单位晶格中具有铁磁和反铁磁顺序的Mn力矩之间的平衡发生有效变化,从而解释了磁性。

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