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An XPS investigation on the thermal stability of the insulating surface layer of soft magnetic composite powder

机译:XPS研究软磁复合粉末绝缘表面层的热稳定性

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摘要

Ferromagnetic powder particles coated with electrical insulating inorganic layers constitute composite materials used as powdered iron cores in electromagnetic applications. The aforementioned surface layers of these soft magnetic composites (SMC) are responsible for their high electrical resistivity. The perseverance of the coating through annealing processing step is crucial to the performance of finalized SMC products. In the present study, the thermal stability and microstructure of an iron phosphate based surface layer from a commercially available SMC powder were investigated by coupling various analytical techniques. The material was annealed at different temperature regimes, both in oxidizing (air) and inert (N-2) conditions in order to isolate the effect of temperature from the atmosphere composition on the chemical state of the coating. X-ray photoelectron spectroscopy (XPS) was utilized to assess the composition of the surface layer at all conditions. Moreover, phosphate-based chemical standards were processed and analyzed in a similar manner so as to facilitate the interpretation of the observed XPS spectra from the SMC powder. High resolution scanning electron microscopy, energy-dispersive X-ray spectrometry and X-ray diffraction were implemented in order to fully characterize the material under question. The results indicated the transition of the insulating layer from an amorphous state to fully crystalline under annealing in inert atmospheric conditions. Moreover, it was observed that phosphates are still present in the coating in mixture of valance states. Conversely, a thick iron oxide scale was formed under treatment in air, and no phosphorus signal was detected, indicating a total decomposition of the layer. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:涂有电绝缘无机层的铁磁粉末颗粒构成了复合材料,用作电磁应用中的铁粉芯。这些软磁复合材料(SMC)的上述表面层是其高电阻率的原因。退火处理步骤中涂层的坚韧性对于最终SMC产品的性能至关重要。在本研究中,通过结合各种分析技术,研究了市售SMC粉末中磷酸铁基表面层的热稳定性和微观结构。在氧化(空气)和惰性(N-2)条件下,将材料在不同的温度范围内进行退火,以隔离温度与气氛成分对涂层化学状态的影响。使用X射线光电子能谱(XPS)来评估在所有条件下的表面层组成。此外,以类似的方式处理和分析基于磷酸盐的化学标准品,以便于解释从SMC粉末中观察到的XPS光谱。实施了高分辨率扫描电子显微镜,能量色散X射线光谱法和X射线衍射,以充分表征所研究的材料。结果表明,在惰性气氛下,在退火下,绝缘层从非晶态转变为完全结晶。此外,已经观察到磷酸盐仍然以价态混合物存在于涂层中。相反,在空气中处理后形成厚的氧化铁皮,未检测到磷信号,表明该层完全分解。版权所有(c)2016 John Wiley&Sons,Ltd.

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