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Interferometry Study of Aqueous Lubrication on the Surface of Polyelectrolyte Brush

机译:聚电解质电刷表面水润滑的干涉测量研究

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The water lubrication behavior of a polyelectrolyte brush was investigated by using double-spacer-layer ultra-thin-film interferometry to determine the thickness of the aqueous lubrication layer present at the interface between the brush and a spherical glass lens. A hydrophilic poly{[2-(methacryloyloxy)ethyl]trimethylammonium chloride} brush was prepared on an optical glass disk coated with layers of semireflective chromium and silica. The thickness of the hydrodynamic lubrication layer was estimated interferometrically. On increasing the sliding velocity from 10(-5) to 10(-1) m(.)s(-1), the gap between the rotating disk and loading sphere glass lens showed a marked increase to 130 nm at 2 x 10(-2)m(.)s(-1), and the friction coefficient simultaneously decreased to 0.01-0.02, indicating that the polyelectrolyte brush promoted the formation of a fluid lubrication layer that separates the rubbing surfaces, preventing direct contact and providing a low friction coefficient.
机译:通过使用双间隔层超薄膜干涉法研究聚电解质刷的水润滑行为,以确定在刷和球形玻璃透镜之间的界面处存在的水性润滑层的厚度。在涂覆有半反射铬和二氧化硅层的光学玻璃盘上制备亲水性聚{[2-(甲基丙烯酰氧基氧基)乙基]三甲基氯化铵}刷。流体动力润滑层的厚度通过干涉法估算。在将滑动速度从10(-5)增加到10(-1)m(.s)(-1)时,转盘和负载球玻璃透镜之间的间隙在2 x 10( -2)m(.ss(-1),并且摩擦系数同时降低到0.01-0.02,这表明聚电解质刷促进了形成分离摩擦表面的流体润滑层的形成,从而防止了直接接触并提供了低摩擦力。摩擦系数。

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