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Characterization of sintered NdFeB magnets after phosphating in alkaline and acidic environments

机译:碱性和酸性环境中磷化后烧结NdFeB磁体的表征

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Despite their excellent magnetic properties NdFeB permanent magnets are highly susceptible to corrosion. Conversion coatings, such as phosphating, have been evaluated as promising methods for corrosion control of these types of magnets. In the present work, alkaline and acid solutions have been used for phosphating a NdFeB commercial magnet. Characterization of the phosphate layer formed in alkaline solution (pH>8) of Na{sub}2HPO{sub}4, was carried out by Auger Electron Spectroscopy (AES), Energy Dispersive X-ray analysis (EDX), and Electrochemical Impedance Spectroscopy (EIS). AES and EIS results showed that the layer formed in the alkaline solution was not protective. On the other hand, the phosphate layer formed in the acid solution (3.8H<4.6) of NaH{sub}2PO{sub}4 produced a significant increase in the magnet corrosion resistance. It is proposed that improvement in the corrosion resistance of the magnet phosphated in the acid solution was due to a more uniform attack of the whole surface leading to the formation of a more continuous and protective conversion layer, compared to that formed in alkaline solution. The resistance of the conversion coating layer formed in acidic medium, estimated from EIS data, is in-between 5000 and 20000 Ωcm{sup}2, while that of the layer formed in the alkaline environment is less than 1000 Ωcm{sup}2. It is believed that precipitation of phosphates at high pH's do not produce a homogeneous coverage of the various phases of sintered NdEeB magnets, since the precipitation is favored at the more active areas of the magnet.
机译:尽管它们出色的磁性,但NdFeB永磁体具有高易腐蚀性。已经评估了转化涂层,例如磷化,作为对这些类型的磁体的腐蚀控制的有希望的方法。在本工作中,碱性和酸溶液已用于磷化NdFeB商业磁体。通过螺旋钻电子光谱(AES),能量分散X射线分析(EDX)和电化学阻抗光谱(电化学阻抗光谱)进行形成的碱性溶液(pH> 8)中形成的磷酸盐层的表征。和电化学阻抗光谱(EIS)。 AES和EIS结果表明,在碱性溶液中形成的层不受保护。另一方面,在酸溶液(3.8 H <4.​​6)中形成的磷酸盐层(3.8 H <4.​​6),在NaH {} 2po {sub} 4中产生显着增加的磁体耐腐蚀性。提出,与在碱性溶液中形成的相比,磷酸溶液中磷酸盐中磷酸盐的耐磁体的耐腐蚀性的改善是由于形成更加连续和保护性转化层的形成。从EIS数据估计的酸性介质中形成的转化涂层的电阻在5000和20000Ωcm{sup} 2之间,而形成在碱性环境中的层的层小于1000Ωcm{sup} 2。据信,在高pH下磷酸盐的沉淀不会产生烧结的Ndeeb磁体的各个相的均匀覆盖,因为沉淀在磁体的更具活性区域处有利。

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