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Sliding friction of hierarchically micro-micro textured polymer surfaces on ice

机译:在冰上的分层微观微观纹理聚合物表面的滑动摩擦

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The ice friction behavior of various microtextured polymer surfaces was studied with respect to ice temperature and applied load using a customized linear tribometer. Similar micropillar patterns were replicated on polypropylene and two rubber compounds, and when hierarchical micro-micro textures were present, all the materials exhibited superhydrophobicity. Taller protective micropillars were shown to be crucial for protecting the smaller microtextures from abrasive wear. The mechanical properties of the polymers affected the sliding friction of the microtextured surfaces on ice. High loading of hierarchical textures on rigid polypropylene or operation near the ice melting point tended to increase its adhesion tendency or resisting behavior. The sliding performance of the hard and soft rubber compounds was temperature-dependent, and the texture on the soft rubber influenced the sliding friction differently depending on the ice temperature. Consequently, textural modifications of the sliding surface enabled a certain degree of control over the sliding friction behavior on ice.
机译:通过定制的线性摩擦计研究各种微纹化聚合物表面的冰摩擦行为和施加载荷。在聚丙烯和两种橡胶化合物上复制了类似的微毛坯图案,并且当存在分层微观纹理时,所有材料都表现出超细侵害。较高的保护微粒被证明对保护较小的微织物免受磨料磨损至关重要。聚合物的力学性能影响了冰上的微织物表面的滑动摩擦。在刚性聚丙烯或冰熔点附近的操作上的分层纹理的高负荷倾向于增加其粘附趋势或抗蚀性。硬质和软橡胶化合物的滑动性能依赖于温度依赖性,并且软橡胶上的纹理根据冰温度影响滑动摩擦力。因此,滑动表面的纹理修改使得在冰上的滑动摩擦行为上实现了一定程度的控制。

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