The Balance Between Low Core Loss, High Permeability, and Large DC Bias Performance in FeSiAl Cores Covered by Polydopamine/Polyethyleneimine
摘要
The balance low core loss (Pcv), high permeability (μe), and large DC bias requires a good insulation effect and weak pinning on the magnetic moment of insulating layers. In this work, due to lightweight, integrity, and a special bonding method, polydopanmine (PDA)/polyethyleneimine (PEI) layers are adopted to cover FeSiAl powder through a chelation process. The PDA/PEI layer undergoes an evolution process from coating, density, and crack occurrence to fracture at 500–800 °C. Pcv values rapidly decrease as the annealing temperature increases from 500 °C to 700 °C, due to the decrease of hysteresis loss (Ph) induced by stress elimination. At 800 °C, Pcv values slightly deteriorate because the destruction of the insulating layer leads to a significant increase in eddy-current loss (Pe). The integrity of the thin insulating layer ensures a good insulation effect among FeSiAl powders, resulting in low Pcv. The lightweight double organic layers alleviate dilute magnetism and weakly pin on the surface magnetic moment rotation, leading to high μe. FeSiAl cores, which are covered by 12 mg/mL PDA/PEI and annealed at 700 °C, have good comprehensive performances with a μe of 53.2 until 1000 kHz and 140 °C, Pcv of 63.8 mW/cm3 (100 kHz/50 mT) and 341 mW/cm3 (100 kHz/100 mT), and a DC bias of 50.9% at 100 Oe. This work highlights a new strategy for fabricating high-performance kinds of soft magnetic composite (SMC) applications in inductors.