Gorumlu Serdar, Aksak Burak
Department of Mechanical Engineering, Texas Tech University, Lubbock, TX 79409-1021, USA.
R Soc Open Sci. 2017 Jun 7;4(6):161105. doi: 10.1098/rsos.161105. eCollection 2017 Jun.
Synthetic fibrillar adhesives inspired by nature, most commonly by the gecko lizard, have been shown to strongly and repeatedly attach to smooth surfaces. These adhesives, mostly of monolithic construction, perform on par with their natural analogues on smooth surfaces but exhibit far inferior adhesive performance on rough surfaces. In this paper, we report on the adhesive performance of functionally graded microfibrillar adhesives based on a microfibre with a divergent end and a thin soft distal layer on rough surfaces. Monolithic and functionally graded fibre arrays were fabricated from polyurethanes and their adhesive performance on surfaces of varying roughness were quantified from force-distance data obtained using a custom adhesion measurement system. Average pull-off stress declined significantly with increasing roughness for the monolithic fibre array, dropping from 77 kPa on the smoothest (54 nm RMS roughness) to 19 kPa on the roughest (408 nm RMS roughness) testing surface. In comparison, pull-off stresses of 81 kPa and 63 kPa were obtained on the same respective smooth and rough surfaces with a functionally graded fibre array, which represents a more than threefold increase in adhesion to the roughest adhering surface. These results show that functionally graded fibrillar adhesives perform similar on all the testing surfaces unlike monolithic arrays and show potential as repeatable and reusable rough surface adhesives.
受自然启发,最常见的是受壁虎启发而合成的纤维状粘合剂已被证明能牢固且反复地附着在光滑表面上。这些粘合剂大多为整体结构,在光滑表面上的性能与天然同类物相当,但在粗糙表面上的粘合性能则差得多。在本文中,我们报告了基于具有发散端的微纤维和薄软远端层的功能梯度微纤维粘合剂在粗糙表面上的粘合性能。用聚氨酯制备了整体式和功能梯度纤维阵列,并使用定制的附着力测量系统从力-距离数据中量化了它们在不同粗糙度表面上的粘合性能。对于整体式纤维阵列,平均拉脱应力随着粗糙度的增加而显著下降,从最光滑(均方根粗糙度为54nm)测试表面上的77kPa降至最粗糙(均方根粗糙度为408nm)测试表面上的19kPa。相比之下,功能梯度纤维阵列在相同的光滑和粗糙表面上分别获得了81kPa和63kPa的拉脱应力,这表明在最粗糙的粘附表面上的粘附力增加了三倍多。这些结果表明,功能梯度纤维状粘合剂在所有测试表面上的性能与整体式阵列不同,显示出作为可重复使用的粗糙表面粘合剂的潜力。