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Photo-patterned natural rubber surfaces with tunable tribological properties

机译:具有可调摩擦特性的光图案化天然橡胶表面

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The present work highlights the use of UV induced thiol ene click chemistry for designing elastomer surfaces with tailored friction properties. A two-step surface modification strategy based on two consecutive photoinduced thiol ene reactions has been developed which enables controlled and patterned immobilization of micro-scaled inorganic particles onto diene-rubber surfaces. The influence of the coupled particles on both surface topography and surface roughness is determined by microscopic techniques whilst tribological studies are carried out to characterize the friction properties. The results give evidence that the attachment of selected micro-scaled particles provides a distinctive increase in surface roughness and a considerable decrease in the coefficient of friction. Both are influenced by the amount of particles immobilized onto the elastomer surface. The application of photolithographic techniques further provides elastomer materials with precisely and spatially controlled tribological properties. Whilst elastomer surfaces with randomly attached particles exhibit isotropic coefficients of friction, the tribological properties of micro-patterned elastomers are anisotropic. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本工作重点介绍了使用UV诱导的硫醇点击化学设计具有定制摩擦性能的弹性体表面。已经开发了基于两个连续的光诱导硫醇反应的两步表面改性策略,该策略能够将微米级无机颗粒控制和图案化固定在二烯-橡胶表面上。通过显微镜技术确定了偶联颗粒对表面形貌和表面粗糙度的影响,同时进行了摩擦学研究以表征摩擦性能。结果表明,所选微米级颗粒的附着显着增加了表面粗糙度,并显着降低了摩擦系数。两者都受固定在弹性体表面上的颗粒数量的影响。光刻技术的应用进一步为弹性体材料提供了精确且空间可控的摩擦学性能。尽管具有随机附着的颗粒的弹性体表面表现出各向同性的摩擦系数,但微图案化的弹性体的摩擦学性能却是各向异性的。 (C)2015 Elsevier Ltd.保留所有权利。

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