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On Using Nanoporous Alumina Films as Tribological Coating

机译:用纳米多孔氧化铝薄膜作为摩擦学涂层

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Anodization of aluminum alloys is a common surface treatment procedure employed for the protection against corrosion. A thin amorphous layer of alumina is formed on the surface of alloy, which seals the alloy surface from the surrounding. This alumina layer being harder than the base aluminum alloy can be useful as a tribological coating. But since this alumina layer is randomly formed with disordered voids and pores, predicting the mechanical properties is difficult. Specific anodizing conditions can be used to form highly ordered anodic nanoporous alumina films [1] on the aluminum alloy surface. These nanoporous alumina layer can be effectively used as a tribological coating, because of the highly ordered controllable geometry and the empty pores which can be used as reservoirs for lubricant.
机译:铝合金的阳极氧化是用于保护防腐的常见表面处理程序。 在合金的表面上形成薄的氧化铝的薄无定形层,其将合金表面与周围的表面密封。 该氧化铝层比基础铝合金更硬,可用作摩擦涂层。 但由于该氧化铝层随机形成有无序的空隙和孔,预测机械性能是困难的。 具体的阳极氧化条件可用于在铝合金表面上形成高度有序的阳极纳米多孔氧化铝[1]。 这些纳米多孔氧化铝层可以有效地用作摩擦学涂层,因为可以用作润滑剂的储存器的高度有序的可控几何形状和空孔。

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