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Synthesis and properties of graphene and graphene/carbon nanotube-reinforced soft magnetic FeCo alloy composites by spark plasma sintering

机译:火花等离子体烧结石墨烯和石墨烯/碳纳米管增强软磁FeCo合金复合材料的合成及性能

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摘要

The effect of the addition of graphene nanoplatelets (GNP) and graphene nanoplatelet/carbon nanotube (GNT) mixtures on the mechanical and magnetic properties of spark plasma sintered soft magnetic FeCo alloys was studied. Three different volume fractions (0.5, 1 and 2 vol%) of GNPs and GNTs were investigated. Ball milling was used to disperse the GNPs in monolithic FeCo powder, while magnetic stirring and ultrasonic agitation were used to prepare hybrid GNT prior to ball milling. The highest saturation induction (B sat) of 2.39 T was observed in the 1 vol% GNP composite. An increase in the volume fraction of the ordered nanocrystalline structure was found to reduce the coercivity (H c) of the composites. The addition of CNTs to the GNP composite prevented grain growth, leading to grain refinement. An 18 % increase in hardness was observed in the 1 vol% GNP composite as compared to the as-received FeCo alloy. A reduction in tensile strength was observed in all of the composite materials, except for the 0.5 vol% GNT composite, for which a value of 643 MPa was observed. Raman spectroscopy indicated a reduction in the defect density of the GNPs after adding CNTs.
机译:研究了石墨烯纳米片(GNP)和石墨烯纳米片/碳纳米管(GNT)混合物的添加对火花等离子体烧结软磁FeCo合金的力学性能和磁性能的影响。研究了三种不同的GNP和GNT体积分数(0.5、1和2体积%)。使用球磨将GNP分散在整体式FeCo粉末中,同时在球磨之前使用磁力搅拌和超声搅拌制备混合GNT。在1%(体积)GNP复合材料中观察到最高的饱和诱导(B饱和)为2.39T。发现有序纳米晶体结构的体积分数的增加降低了复合材料的矫顽力(H c)。在GNP复合物中添加CNT阻止了晶粒长大,从而导致晶粒细化。与原样的FeCo合金相比,在1%(体积)的GNP复合材料中观察到了18%的硬度增加。在所有复合材料中均观察到拉伸强度降低,除了0.5vol%的GNT复合材料外,其观察值为643MPa。拉曼光谱表明添加CNT后GNP的缺陷密度降低。

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