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首页> 外文期刊>Journal of the Royal Society Interface >Influence of physico-chemical, mechanical and morphological fingerpad properties on the frictional distinction of sticky/slippery surfaces
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Influence of physico-chemical, mechanical and morphological fingerpad properties on the frictional distinction of sticky/slippery surfaces

机译:物理化学,机械和形态的指垫特性对黏性/滑性表面的摩擦区别的影响

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This study investigates how the fingerpad hydrolipid film, shape, roughness and rigidity influence the friction when it rubs surfaces situated in the slippery psychophysical dimension. The studied counterparts comprised two 'real' (physical) surfaces and two 'virtual' surfaces. The latter were simulated with a tactile stimulator named STIMTAC. Thirteen women and 13 men rubbed their right forefingers against the different surfaces as their arms were displaced by a DC motor providing constant velocity and sliding distance. Tangential and normal forces were measured with a specific tribometer. The fingerpad hydrolipid film was characterized by Fourier transform infrared spectroscopy. The shape and roughness of fingers were extrapolated from replicas. Indentation measurements were carried out to determine fingerpad effective elastic modulus. A clear difference was Observed between women and men in terms of friction behaviour. The concept of tactile frictional contrast (TFC) which was introduced quantifies an individual's propensity to distinguish two surfaces frictionally. The lipids/water ratio and water amount on the finger skin significantly influenced the TFC. A correlation was observed between the TFC and fingerpad roughness, i.e. the height of the fingerpad ridges. This is essentially owing to gender differences. A significant difference between men's and women's finger topography was also noted, because our results suggested that men have rougher fingers than women. The friction measurements did not correlate with the fingerpad curvature nor with the epidermal ridges' spatial period.
机译:这项研究调查了指垫的水脂膜,形状,粗糙度和刚度如何在摩擦处于湿滑的心理物理尺寸的表面时影响摩擦。研究对象包括两个“真实”(物理)表面和两个“虚拟”表面。后者使用名为STIMTAC的触觉刺激器进行了模拟。十三名妇女和十三名男子的右脚食指在不同的表面上摩擦,他们的手臂被直流电动机提供了恒定的速度和滑动距离而移位。切向力和法向力用特定的摩擦计测量。指垫水脂膜通过傅里叶变换红外光谱法表征。从复制品中推断出手指的形状和粗糙度。进行压痕测量以确定指垫有效弹性模量。在摩擦行为方面,观察到男女之间存在明显差异。引入的触觉摩擦对比(TFC)概念量化了个人区分摩擦两个表面的倾向。手指皮肤上的脂质/水比和水量显着影响TFC。在TFC和指垫粗糙度即指垫脊的高度之间观察到相关性。这主要是由于性别差异。还指出了男性和女性手指形貌之间的显着差异,因为我们的结果表明,男性的手指比女性的手指粗糙。摩擦测量与指垫曲率或表皮脊的空间周期无关。

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