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Dry Self-Cleaning Properties of Hard and Soft Fibrillar Structures

机译:硬和软原纤维结构的干式自清洁性能

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Recently, gecko-inspired synthetic adhesives (GSAs) have been made using a variety of fabrication techniques and materials, with one made from a hard polymer having been reported to recover its shear adhesion after fouling by normal use, or "dry self-clean", a feature useful for applications in wall crawling robots, reusable adhesives, microfabrication and solar panel cleaning. This paper investigates the impact of two design parameters on the dry self-cleaning capability of GSAs by experimentally testing two GSAs after fouling with small (1 μm), medium (3—10 μm), and large (40—50 μm) particles. We found that a GSA made from a hard thermoplastic with nanoscopic fibers was able to recover 96—115% of its shear adhesion after fouling with small and large but not medium particles, while a GSA made from a soft polymer and microscopic fibers recovered 40—55% on medium and large particles, with SEM imaging revealing particles embedding within the polymer. An analysis of the contact strength between fibers, particles and substrates of various dimensions and elasticity reveals that dry self-cleaning will be more effective for GSAs fabricated with smaller fiber diameters and for GSAs fabricated from materials with smaller loss functions, such as hard thermoplastics. These results have important implications on the choice of materials and geometries used for GSAs when dry self-cleaning capability is a desired function in the material.
机译:最近,壁虎风格的合成胶粘剂(GSA)已使用多种制造技术和材料制成,据报道,一种由硬质聚合物制成的胶粘剂在通过常规使用或“干式自清洁”结垢后可恢复其剪切粘合力。 ,此功能对于墙面爬行机器人,可重复使用的粘合剂,微细加工和太阳能面板清洁中的应用很有用。本文通过在小颗粒(1μm),中颗粒(3-10μm)和大颗粒(40-50μm)结垢后对两个GSA进行结垢实验,研究了两个设计参数对GSA的干式自清洁能力的影响。我们发现,由硬质热塑性塑料和纳米级纤维制成的GSA在被大小颗粒(但不是中等颗粒)污染后,能够恢复其剪切粘合力的96-115%,而由软质聚合物和微观纤维制成的GSA可以恢复40中型和大型粒子的含量为55%,SEM图像显示粒子嵌入聚合物中。对各种尺寸和弹性的纤维,颗粒与基材之间的接触强度进行分析后发现,对于具有较小纤维直径的GSA和由损耗函数较小的材料(例如硬质热塑性塑料)制造的GSA,干式自清洁将更有效。当干式自清洁功能是材料所需的功能时,这些结果对用于GSA的材料和几何形状的选择具有重要意义。

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