Effects of Cu additions on mechanical and soft-magnetic properties of CoFeBSiNb bulk metallic glasses
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Effects of Cu additions on mechanical and soft-magnetic properties of CoFeBSiNb bulk metallic glasses

机译:Cu添加对Cofebsinb散装金属玻璃机械和软磁特性的影响

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AbstractA novel ductile [(Co0.7Fe0.3)0.68B0.219Si0.051Nb0.05]99.5Cu0.5bulk metallic glass (BMG) with the strength of 4.4?GPa and the compressive plastic strain of 2.5% was successfully synthesized in this work. We found, by adding tiny Cu (0–0.9?at. %) element, both the plasticity and the saturation magnetization of CoFeBSiNb BMGs can be improved, which is attributed to the existence of ferromagnetic and ductile α-(Fe, Co) nanoparticles in the glass matrix. The abundant of vein patterns and high-density multiple shear bands were observed on the fracture surface of Cu-added Co-based bulk glassy rods. The reason for these results is that the nanoscale particles hinder the propagation of the shear band, promote the generation of multiple shear bands and enhance the plasticity. Our investigations shade a light on understanding the nano-scale precipitation phase enhanced ductility mechanism in high strength BMGs such as Fe- and Co-based BMGs and lead a map for finding new high strength BMGs with high plasticity.Highlights?CoFeBSiNbCu BMGs were successfully designed and prepared.?The BMGs exhibit excellent magnetic properties, high strength and good plasticity.?Nano-scale α-(Fe, Co) precipitates from the glassy matrix.?Properties are closely related to the atomic cluster structure of the BMGs.]]>
机译:<![CDATA [ 抽象 一种新型延性[(co 0.7 FE 0.3 0.68 B 0.219 SI 0.051 NB 0.05 ] 99.5 CU 0.5 散装金属玻璃(BMG)的强度为4.4?GPA和2.5%的压缩塑性应变成功合成在这项工作中。通过添加微小的Cu(0-0.9〜0.%)元件,可以提高CofeBsInB BMG的塑性和饱和磁化,这归因于存在铁磁性和延性α-(Fe,Co)纳米颗粒的存在在玻璃基质中。在Cu加入的Co-型散装棒的裂缝表面上观察到丰富的静脉图案和高密度多剪切带。这些结果的原因是纳米级粒子阻碍剪切带的传播,促进多个剪切带的产生并增强可塑性。我们的调查在理解高强度BMG中的纳米级沉淀相增强延展性机制,如Fe-and Co-and Co-and Co-and Co-and Co-and Co-and Co-and Co-and Co-and Co-and Co-and Co-和Co-and Co-and Co-and Co-and Co-and Co-and Co-BMG来进行亮起,并引入具有高可塑性的新型高强度BMG的地图。 亮点 < CE:列表项ID =“U0010”> CofeBSINBCU BMG成功设计和准备。 纳米级α-(fe,co)从玻璃基质中沉淀出来。 属性与BMGS的原子簇结构密切相关。 ]]>

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