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Friction Behavior of Human Skin Rubbing against Different Textured Polymeric Materials Obtained by a 3D Printing Microfabrication Technique

机译:用3D印刷微型制备技术对不同纹理聚合物材料进行人体皮肤摩擦的摩擦行为

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摘要

Understanding friction behavior of human skin is indispensable in order to optimize surfaces and materials in contact with the skin. The coefficient of friction (COF) for different materials contacting against the skin is mainly influenced by the nature of the materials, mechanical contact parameters, and physiological skin conditions. The aim of the present research work was to study the grip effect of two different polymeric materials by producing different textured patterns using a 3D printing microfabrication technique and a replication technique. It was found that under the same contact conditions, a difference in the friction amplitude exists between the two different polymeric materials and that positive texturing, which consists of high relief or protrusions, showed higher COFs than negative texturing, consisting of low relief, holes, or dimples, which showed a decrease in friction as the textured pattern area density increased.
机译:了解人体皮肤的摩擦行为是必不可少的,以优化与皮肤接触的表面和材料。 与皮肤接触的不同材料的摩擦系数(COF)主要受到材料性质,机械接触参数和生理皮肤状况的影响。 本研究工作的目的是通过使用3D打印微制造技术和复制技术产生不同纹理的图案来研究两种不同的聚合物材料的抓握效果。 结果发现,在相同的接触条件下,两种不同的聚合物材料之间存在摩擦幅度的差异,并且具有高浮雕或突起的阳性纹理,显示出高于负纹理的COF,包括低浮雕,孔, 或凹坑,其显示随着纹理图案区域密度的增加而降低。

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