Bioinspired design of multifunctional solid-repellent coatings
编号:113 访问权限:PARTICIPANT_ONLY 更新:2024-10-16 19:38:26 浏览:1345次 特邀报告

报告开始:2024-10-20 16:35

报告时间:20min

所在会场:[S5] Intelligent Coatings, Biological Coatings & Optical Coatings [S5B] Session 5B

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摘要
Surface sticky problems from various solid foulants inhibit us from the access to clean toilets, hygiene medical ware, and high-efficient energy efficiency. They vastly exist in many industrial, medical, and household interfaces, and they dramatically dysfunction the well-designed surface structures by sticking on them. In contrast, nature has provided us abundant examples of keeping surfaces clean, from duck feather to lotus leaf, to springtail skin, to pitcher plant rim, and to many other insect/animal surfaces. These examples share some common materials design principles for antifouling, particularly for solid repellency: extremely smooth or extremely rough.
Herein, we have explored new design principles for developing solid-repellent coatings as well as enhancing their mechanical durability. In particular, we proposed a lubrication-on-smooth surface design mechanism, and fabricated partially-crosslinked omniphobic coatings that can repel a broad range of foulants, comprised of both liquid and solid phases. By integrating of the classic wetting and tribology models, we introduce a new material design parameter for abrasion-resistant polymeric coatings. On the other hand, we combined Chang window and Gao’s mechanical biocidal mechanics model, and proposed the explanation on solid-repellency mechanism on extremely rough nanostructures. These design principles could enable the innovative creation of solid-repellent coatings to a wide variety of industrial and medical settings, including wind turbine blades, heat exchanges, and antifouling robotics.
 
关键词
Bioinspiration, Solid Repellency, Interface Mechanics
报告人
Jing Wang
Shanghai Jiaotong University, China

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重要日期
  • 会议日期

    10-18

    2024

    10-20

    2024

  • 10-17 2024

    报告提交截止日期

  • 10-20 2024

    注册截止日期

  • 11-18 2024

    初稿截稿日期

主办单位

中国机械工程学会表面工程分会

承办单位

大连理工大学
山东理工大学

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