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Friction in the contact between skin and a soft counter material: Effects of hardness and surface finish

机译:摩擦皮肤和软计数器材料之间的接触:硬度和表面光洁度的影响

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摘要

The interaction behaviour of skin with a counter surface depends strongly on the surface roughness of the counter surface. For relatively hard surfaces this effect is described in various literature, but for soft, or compliant, materials this is much less studied. Inside the contact, the protuberances on the surface will deform substantially. In order to gain insights into the effect of surface roughness and hardness on the frictional behaviour between skin and a soft counter surface a range of experiments were performed using artificial skin and various silicone compounds which are commonly used in medical devices that interact with the human skin. Using these results, a 'friction map' was created that shows the friction behaviour as a function of the elastic modulus and the surface roughness. When the surface roughness is increased the friction coefficient decreases due to the reduction in the real area of contact, which weakens the adhesion between the two surfaces. A minimum coefficient of friction was observed at a surface roughness of approximately 4 gm. For the softest compounds tested there was minimal effect of surface roughness on friction because the roughness protuberances inside the contact will be flattened. Silicone compounds with increased hardness showed a larger sensitivity of the friction to the surface roughness, because these harder surface roughness protuberances are more resistant against deformation. The friction map provides a tool when designing products that require certain frictional properties: for products that are required to adhere to skin a smooth and soft material is recommended, whereas for products that require a low coefficient of friction a harder compound with a surface roughness of approximately 4 mu m is recommended.
机译:皮肤与柜台表面的相互作用行为强烈地取决于柜台表面的表面粗糙度。对于相对较硬的表面,这种效果在各种文献中描述,但是对于软,或柔顺,材料的材料得多。在接触内部,表面上的突起将大致变形。为了深入了解表面粗糙度和硬度对皮肤之间的摩擦行为的效果和软反应表面的一系列实验,使用人造皮肤和各种硅氧烷化合物进行,这些化合物通常用于与人体皮肤相互作用的医疗器械。使用这些结果,创建了一个“摩擦图”,其表示作为弹性模量和表面粗糙度的函数的摩擦行为。当表面粗糙度增加时,由于触点的真实面积的减少,摩擦系数减小,这削弱了两个表面之间的粘附性。在约4克的表面粗糙度下观察到最小摩擦系数。对于测试的最柔软的化合物,表面粗糙度对摩擦的效果最小,因为接触内部的粗糙度突起将变平。具有增加硬度的硅氧烷化合物显示出对表面粗糙度的摩擦较大的灵敏度,因为这些较硬的表面粗糙度突起更耐抗变形。当设计需要某些摩擦性能的产品时,摩擦图提供了一种工具:对于粘附到皮肤所需的产品,建议使用光滑且软质材料,而需要需要低摩擦系数的产品具有较硬的化合物的表面粗糙度建议大约4亩。

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