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副教授

博士生导师

硕士生导师

任职 : 高性能制造研究所 副所长 机械学院招生宣传组成员(武汉)

性别:女

毕业院校:清华大学

学位:博士

所在单位:机械工程学院

学科:机械制造及其自动化

办公地点:大连理工大学 机械学院 知方楼5005

联系方式:yanying@dlut.edu.cn

电子邮箱:yanying@dlut.edu.cn

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Friction Enhancement between Microscopically Patterned Polydimethylsiloxane and Rabbit Small Intestinal Tract Based on Different Lubrication Mechanisms

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论文类型:期刊论文

发表时间:2016-06-01

发表刊物:ACS BIOMATERIALS SCIENCE & ENGINEERING

收录刊物:SCIE

卷号:2

期号:6

页面范围:900-907

ISSN号:2373-9878

关键字:friction; surface texture; biotribology; capsule endoscopy; robotic system

摘要:A control of friction characteristics between self-propelled robotic system and gastrointestinal tissues plays a key role in achieving active locomotion. Fabrication of micropatterns on soft polymers has been proposed to enhance frictional traction. In the present study, micropillar arrays with different diameters of 60-140 mu m were prepared on polydimethylsiloxane (PDMS) by soft lithography, and a series of friction tests were performed between microscopically patterned/nonpatterned PDMS and rabbit small intestinal tract (SIT) on a universal material tester, with the record of friction coefficient under various experimental conditions (sliding speed: 0.25 mm/s; sliding distance: 40 mm; applied loading: 0.4-1.0 N). Surface morphology of microscopically patterned PDMS samples was evaluated by scanning electron microscopy (SEM) before and after the friction tests. It was demonstrated that micropillar arrays aligned regularly on the microscopically patterned PDMS samples and maintained the shape after friction tests. At 0.4 N, the friction coefficient of PDMS samples with the micropillar diameter from 80 to 140 mu m presented a decreasing trend, which was significantly larger than that of nonpatterned PDMS samples. However, the smallest friction coefficient (similar to 0.12) was obtained for the 60 mu m micropillar diameter PDMS samples. In addition, the friction coefficient of nonpatterned PDMS samples decreased as the applied loading varied from 0.4 to 1.0 N, whereas the 60 mu m micropillar diameter PDMS samples showed an opposite trend. It is proposed that the enhancement in friction between PDMS and SIT, which is achieved through the introduction of micropillars, may be determined based on different lubrication mechanisms.