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Microarc oxidation and spraying graphite duplex coating formed on titanium alloy for antifriction purpose

机译:在钛合金上形成微弧氧化喷涂石墨双涂层,以达到减摩目的

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Microarc oxidation coatings were fabricated on Ti6Al4V alloy in NaAlO2 containing solution. Microstructure and adhesion properties of the coatings were evaluated. For antifriction purpose, a novel duplex coating of microarc oxidation combined with spraying graphite process was developed. The results show that the microarc oxidation coating with 20 mu m thickness is compact and uniform in the inner layer, while porous in the surface layer. The coating has high adhesion strength of about 110 MPa to the substrate. The novel duplex coating exhibits good antifriction property, registering friction coefficient of approximate to 0.12, which is 5 times lower than that of the microarc oxidation coating sliding in the similar condition. The good tribological property is attributed to the specially designed duplex structure, the coating adhering strongly to the substrate and serving as the underlying loading layer and the graphite layer on top of it working as solid lubricant. (c) 2004 Elsevier B.V. All rights reserved.
机译:在含NaAlO2的Ti6Al4V合金上制备了微弧氧化涂层。评价了涂层的微观结构和粘附性能。出于减摩的目的,开发了一种新型的微弧氧化与喷涂石墨工艺相结合的双层涂层。结果表明,厚度为20μm的微弧氧化涂层在内层致密均匀,而在表层则多孔。该涂层对基材具有约110MPa的高粘合强度。新型双涂层具有良好的减摩性能,摩擦系数约为0.12,比在类似条件下滑动的微弧氧化涂层低5倍。良好的摩擦学性能归因于特殊设计的双相结构,该涂层牢固地粘附在基材上并用作下面的加载层,其上的石墨层充当固体润滑剂。 (c)2004 Elsevier B.V.保留所有权利。

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