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Adhesion performance of magnetically responsive surfaces under wet conditions

Hao Qin, Xianyu Peng, Tonghang Sui, Yi Peng, Jing Li

Year
2024
Citations
1

Abstract

observation and analysis of theoretical models demonstrate that changes in adhesive forces are mainly caused by the length of the liquid bridge and the apparent contact angle of the developed surface. The adhesion conversion efficiency in the presence of an on/off magnetic field can achieve a highest value of 72% for the micropillar arrays with flat terminals, which exceeds 3 times that of the micropillar arrays with pointed terminals. In addition, wet adhesion measurements during the process of repeatedly switching the magnetic field demonstrate the durability and cyclic reversibility of the magnetically responsive surface. Furthermore, the transportation of microcomponents verifies the application potential of the magnetically responsive surface, which may provide inspiration for transfer printing systems and wet climbing robots.

Keywords

AdhesionMaterials scienceNanotechnologyChemical engineeringComposite materialEngineering

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