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A study of the frictional properties of senofilcon-A contact lenses.

机译:senofilcon-A隐形眼镜的摩擦性能研究。

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摘要

The frictional property of soft contact lenses could have a great impact on their clinical performance. However, to date, only a handful of studies have been conducted to understand the friction mechanism(s) of the soft contact lens. In the current paper, the friction of senofilcon-A contact lenses has been studied with a stainless steel ball as the counterface in a saline solution. The load applied was between 0.5 mN and 100 mN and the sliding velocity ranges from 0.01 cm/s to 0.5 cm/s. It was found that the friction force is proportional to normal load as described by Amonton's law and this unexpected behavior can be attributed to the fact that viscous flow contributes little to the overall friction and that solid-solid contact dominates the friction of senofilcon-A. It was also found that the coefficient of the friction increases with the velocity and the quantitative relationship between them can be explained reasonably well with a previously proposed "repulsion-adsorption" model. The impacts of material chemistry, water content, test media, applied load and the sliding velocity on the friction mechanism(s) are also discussed.
机译:软性隐形眼镜的摩擦性能可能对其临床性能产生很大影响。然而,迄今为止,仅进行了少量研究以了解软性隐形眼镜的摩擦机理。在当前的论文中,已经研究了以不锈钢球作为盐溶液中的对接面的Senofilcon-A隐形眼镜的摩擦力。施加的负载为0.5 mN至100 mN,滑动速度为0.01 cm / s至0.5 cm / s。已发现,摩擦力与阿蒙顿定律所描述的法向载荷成正比,这种意外的行为可归因于以下事实:粘性流对总摩擦的贡献很小,而固-固接触主导了senofilcon-A的摩擦。还发现,摩擦系数随速度增加,并且它们之间的定量关系可以用先前提出的“排斥-排斥”模型很好地解释。还讨论了材料化学,水含量,测试介质,施加的载荷和滑动速度对摩擦机理的影响。

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