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Intergranular insulated Fe-6.5 wt% Si/SiO2 composite compacts with tunable insulating layer thickness for low core loss applications

机译:晶间绝缘Fe-6.5 wt%Si / SiO2复合压块,绝缘层厚度可调,适用于低铁损的应用

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Core-shell structured Fe-6.5 wt% Si/SiO2 particles and intergranular insulated Fe-6.5 wt% Si/SiO2 composite compacts with tunable insulating layer thickness were prepared by in situ chemical deposition combined with a subsequent spark plasma sintering process. Most of conductive Fe-6.5 wt% Si alloy particles were coated with a SiO2 insulating layer in the Fe-6.5 wt% Si/SiO2 composite compacts. The SiO2 insulating layer could increase the electrical resistivity and reduce the effective radius of the eddy current in Fe-6.5 wt% Si/SiO2 composite compacts. Therefore, the intergranular insulated Fe-6.5 wt% Si/SiO2 composite compacts presented lower core loss than those of Fe-6.5 wt% Si compacts without SiO2 insulating layer. Based on this, several types of Fe-6.5 wt% Si/SiO2 core-shell particles and intergranular insulated Fe-6.5 wt% Si/SiO2 composite compacts (with various SiO2 insulating layer thicknesses) were selectively prepared by simply varying the TEOS concentration (the volume of TEOS for each gram of Fe-6.5 wt% Si particles, ml g(-1)). The results indicated that the thickness of the SiO2 layer and electrical resistivity of Fe-6.5 wt% Si/SiO2 composite compacts increased with increasing the TEOS concentration from 0.1 to 0.4 ml g(-1), while saturation magnetization, relative permeability and core loss displayed the reverse tendencies. The as-prepared intergranular insulated Fe-6.5 wt% Si/SiO2 composite compacts exhibited excellent magnetic properties, which inspire us to develop new high silicon containing soft magnetic cores which can be widely used in various electromagnetic devices.
机译:通过原位化学沉积结合随后的火花等离子体烧结工艺,制备了核壳结构的Fe-6.5 wt%Si / SiO2颗粒和具有可调绝缘层厚度的晶间绝缘Fe-6.5 wt%Si / SiO2复合压块。 Fe-6.5 wt%Si / SiO2复合压块中的大多数导电Fe-6.5 wt%Si合金颗粒都覆盖有SiO2绝缘层。 SiO2绝缘层可提高Fe-6.5 wt%Si / SiO2复合压块中的电阻率并减小涡流的有效半径。因此,与没有SiO 2绝缘层的Fe-6.5wt%Si压块相比,晶间绝缘的Fe-6.5wt%Si / SiO 2复合压块表现出更低的铁损。基于此,通过简单地改变TEOS的浓度(选择不同的SiO2绝缘层厚度),有选择地制备了几种类型的Fe-6.5 wt%Si / SiO2核壳颗粒和晶间绝缘Fe-6.5 wt%Si / SiO2复合压块(具有各种SiO2绝缘层厚度)(每克Fe-6.5 wt%Si颗粒的TEOS体积,ml g(-1))。结果表明,随着TEOS浓度从0.1 ml g(-1)增加,SiO 2层的厚度和Fe-6.5 wt%Si / SiO 2复合压块的电阻率增加,而饱和磁化强度,相对磁导率和铁损显示出相反的趋势。所制备的晶间绝缘Fe-6.5 wt%Si / SiO2复合压坯表现出优异的磁性能,这激发了我们开发可广泛用于各种电磁装置的新型高含硅软磁芯。

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