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Development and Characterization of Silane Coated Miniaturize NdFeB Magnets in Dentistry

机译:牙科用硅烷包覆小型化钕铁硼磁体的研制与表征

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The main reason limiting long-term clinical application of neodymium-iron-boron magnets in dental field is their marked corrosion tendency in middle aggressive media containing chloride such as saliva solution. Thereby it becomes necessary to overcome the corrosion resistance lack of Nd-Fe-B magnets with new wear resistant encapsulating materials or surface coatings. With this aim, in this work a multi-layered organic-inorganic structure able to supply specific functional properties to the whole assembly (i.e., anticorrosion resistance, wear resistance, biocompatibility and durability) was proposed. The influence on the magnetic force of a new hybrid coating consisting in 0, 1, 2, 3 silane layers on nickel plated magnets was tested. Furthermore the degradation of the samples was evaluated by data analysis collected by EIS (electrochemical impedance spectroscopy), during aging time in synthetic Fusayama saliva solution at pH 5.5 and morphological analysis by 3D Digital Microscope. The experimental data confirm that the presence of coupling agent does not affect the magnetic force of Nd-Fe-B magnets and that the new coating provides a barrier effect in biological environment without affecting the biocompatibility of the system. Thus the limiting aspect preventing the use of Nd-Fe-B magnets for dental applications can be avoided by using silane agents as surface coating.
机译:限制钕铁硼磁体在牙科领域长期临床应用的主要原因是它们在含氯的中等腐蚀性介质(如唾液)中的显着腐蚀趋势。因此,有必要用新型的耐磨密封材料或表面涂层来克服Nd-Fe-B磁体缺乏耐蚀性的问题。为了这个目的,提出了一种能够为整个组件提供特定功能特性(即,耐腐蚀性,耐磨性,生物相容性和耐久性)的多层有机-无机结构。测试了由镍镀磁体上的0、1、2、3硅烷层组成的新型混合涂层对磁力的影响。此外,样品的降解通过EIS(电化学阻抗谱)收集的数据分析,在合成的Fusayama唾液中,pH为5.5的老化时间以及3D Digital Microscope的形态分析来评估。实验数据证实,偶联剂的存在不会影响Nd-Fe-B磁体的磁力,并且新涂层在生物环境中提供了屏障作用,而不会影响系统的生物相容性。因此,通过使用硅烷试剂作为表面涂层,可以避免阻止将Nd-Fe-B磁体用于牙科应用的局限性。

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