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Improving Powder Magnetic Core Properties via Application of Thin Insulating Silica-Nanosheet Layers on Iron Powder Particles

机译:通过在铁粉颗粒上应用绝缘的二氧化硅-纳米薄层来改善粉体磁芯性能

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摘要

A thin, insulating layer with high electrical resistivity is vital to achieving high performance of powder magnetic cores. Using layer-by-layer deposition of silica nanosheets or colloidal silica over insulating layers composed of strontium phosphate and boron oxide, we succeeded in fabricating insulating layers with high electrical resistivity on iron powder particles, which were subsequently used to prepare toroidal cores. The compact density of these cores decreased after coating with colloidal silica due to the substantial increase in the volume, causing the magnetic flux density to deteriorate. Coating with silica nanosheets, on the other hand, resulted in a higher electrical resistivity and a good balance between high magnetic flux density and low iron loss due to the thinner silica layers. Transmission electron microscopy images showed that the thickness of the colloidal silica coating was about 700 nm, while that of the silica nanosheet coating was 30 nm. There was one drawback to using silica nanosheets, namely a deterioration in the core mechanical strength. Nevertheless, the silica nanosheet coating resulted in nanoscale-thick silica layers that are favorable for enhancing the electrical resistivity.
机译:具有高电阻率的薄绝缘层对于实现压粉磁芯的高性能至关重要。通过在由磷酸锶和氧化硼组成的绝缘层上逐层沉积二氧化硅纳米片或胶体二氧化硅,我们成功地在铁粉颗粒上制造了具有高电阻率的绝缘层,随后将其用于制备环形磁芯。这些核芯的致密密度在涂布胶态二氧化硅后由于体积的大幅增加而降低,从而导致磁通密度劣化。另一方面,由于二氧化硅层较薄,用二氧化硅纳米片进行涂覆导致较高的电阻率以及高磁通密度和低铁损之间的良好平衡。透射电子显微镜图像显示,胶态二氧化硅涂层的厚度为约700nm,而二氧化硅纳米片涂层的厚度为30nm。使用二氧化硅纳米片的一个缺点是芯部机械强度的降低。然而,二氧化硅纳米片涂层产生了纳米级厚度的二氧化硅层,其有利于增强电阻率。

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