...
首页> 外文期刊>Nanotechnology >Molecular dimensions and surface diffusion assisted mechanically robust slippery perfluoropolyether impregnated mesoporous alumina interfaces
【24h】

Molecular dimensions and surface diffusion assisted mechanically robust slippery perfluoropolyether impregnated mesoporous alumina interfaces

机译:分子尺寸和表面扩散辅助机械稳健的光滑全氟聚醚浸渍的介孔氧化铝界面

获取原文
获取原文并翻译 | 示例

摘要

Accomplishing mechanically robust omniphobic surfaces is a long-existing challenge, and can potentially find applications in bioengineering, tribology and paint industries. Slippery liquid impregnated mesoporous alpha-Al2O3 interfaces are achieved with water, alkanes, water based and oil based high viscosity acrylic paints. Incredibly high abrasion-resistance (wear coefficients <= 10(-8) mm(3) N(-1)m(-1)) and ultra-low friction coefficients (>= 0.025) are attained, attributing to the hard alumina matrix and continuous replenishment of perfluoropolyether aided by capillarity and surface diffusion processes. A variety of impregnating liquids employed suggest that large molecules, faster surface diffusion and lowest evaporation rate generate the rare combination of high wear-resistance and omniphobicity. It is noteworthy that these novel liquid impregnated Al2O3 composites exhibit outstanding load bearing capacity up to 350 MPa; three orders of magnitude higher than achievable by the state of the art omniphobic surfaces. Further, our developed thermodynamic calculations suggest that the relative thermodynamic stability of liquid impregnated composites is linearly proportional to the spreading coefficient (S) of the impregnating liquid with the matrix material and is an important tool for the selection of an appropriate matrix material for a given liquid.
机译:实现机械鲁棒的唯一斑虫表面是一个良好的挑战,并且可以在生物工程,摩擦学和油漆行业中找到应用。使用水,烷烃,水基和油基的高粘度丙烯酸涂料,实现了湿润的液体浸渍的介孔α-Al2O3界面。难以置信的高耐磨性(磨损系数<= 10(-8)mm(3)n(3)n(-1)m(-1))和超低摩擦系数(> = 0.025),归因于硬氧化铝基质并连续补充毛细血管性和表面扩散工艺的全氟聚醚。使用各种浸渍的液体表明大分子,更快的表面扩散和最低蒸发速率产生高耐磨性和型无毒性的罕见组合。值得注意的是,这些新型液体浸渍的Al2O3复合材料表现出高达350 MPa的未突出的承载能力;通过型唯一表面的状态可实现的三个数量级。此外,我们开发的热力学计算表明,液体浸渍复合材料的相对热力学稳定性与浸渍液的涂抹系数与基质材料线性成比例,是选择适当的基质材料的重要工具液体。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号