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Effects of Ni substitution for Fe/Co on mechanical and magnetic properties of Co-based bulk metallic glasses

机译:Ni替代Fe / Co对Co系散装金属玻璃机械和磁性的影响

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The influences of Ni substitution for Fe/Co on the thermal, mechanical and magnetic properties of (Co1-x-yNixFey)(68)B21.9Si5.1Nb5(x = 0, y = 0.3; x = 0.1, y = 0.2; x = 0.2, y = 0.1; x = 0.3, y = 0; x = 0.4, y = 0; x = 0.5, y = 0) metallic glasses are investigated. A new (Co(0.5)Nf(0.5))(68)B21.9Si5.1Nb5 bulk metallic glass (BMG) with a high strength of 4070 MPa and a large plasticity of 3.8% is successfully prepared. The higher Poisson's ratio (nu) increases the effective free volume in the alloy, which promotes plastic flow before fracture. Besides, the lower glass transition temperature indicates lower shear flow barrier, and the narrower supercooled liquid region can easily improve the structural heterogeneity, both of which enhance the plastic strain of the BMG. Furthermore, the effects of the addition of elements that have large nu (Ni) or positive mixing enthalpy with major elements (Cu), as well as their co-addition, on the mechanical properties of CoFeBSiNb BMG system are compared. The substitution of Fe/Co with Ni leads to the decrease of both saturation magnetization and coercivity of the metallic glasses, and the material even changes from ferromagnetic to paramagnetic after Fe is completely replaced by Ni because of the low atomic magnetic moment of Ni. This work not only confirms the universal critical Poisson's ratio for plasticity in Co-based BMG5, but also provides design guidelines for Co-based BMG5 with large plasticity. (C) 2019 Elsevier B.V. All rights reserved.
机译:Ni替代对Fe / Co对(CO1-X-YNIXFEY)(68)B21.9SI5.1NB5(x = 0,Y = 0.3; x = 0.1,Y = 0.2的热,机械和磁性性质对Fe / Co的影响x = 0.2,y = 0.1; x = 0.3,y = 0; x = 0.4,y = 0; x = 0.5,y = 0)金属玻璃进行了金属玻璃。高强度为4070MPa的新(CO(0.5)NF(0.5))(68)B21.9SI5.1NB5散装金属玻璃(BMG)和3.8%的大可塑性。泊松比(Nu)的比例较高,增加了合金中的有效体积,促进了骨折前的塑性流动。此外,较低的玻璃化转变温度表示较低的剪切流动屏障,并且较窄的过冷液体区域可以容易地提高结构异质性,这两者都增强了BMG的塑性应变。此外,比较了对具有主要元素(Cu)的具有大Nu(Ni)或正混合焓的添加元素的影响,以及它们的CofeBeNB BMG系统的机械性能。 Fe / Co与Ni的取代导致金属玻璃的饱和磁化和矫顽力的降低,并且由于Ni的原子磁矩的低原子磁矩,Fe被Ni完全取代,因此甚至从铁磁性到顺磁性的更换。这项工作不仅证实了CO-基BMG5中可塑性的通用关键泊松比,而且还为具有大的可塑性的CO-BMG5提供了设计准则。 (c)2019 Elsevier B.v.保留所有权利。

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