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旋带掩模电解织构化圆柱表面及其润湿性分析 被引量:1
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作者 申继文 明平美 +3 位作者 薛宝龙 张新民 张云燕 陈月涛 《中国表面工程》 EI CAS CSCD 北大核心 2023年第3期101-112,共12页
在圆柱面工件上高效、低成本地创制功能化极端润湿性表面仍面临重大技术挑战。对此提出旋带掩模电解织构技术。该技术直接选用市售带状柔性电绝缘多孔高分子编织布为活动掩模,以中性盐Na NO3溶液为电解液,基于旋带电解印制方式对金属圆... 在圆柱面工件上高效、低成本地创制功能化极端润湿性表面仍面临重大技术挑战。对此提出旋带掩模电解织构技术。该技术直接选用市售带状柔性电绝缘多孔高分子编织布为活动掩模,以中性盐Na NO3溶液为电解液,基于旋带电解印制方式对金属圆柱表面进行织构化处理。介绍其工作原理,分析圆柱表面微织构形貌与几何廓形的演化过程,试验探究极间电压、旋带速度、加工次数等对表面织构特征的影响,评测氟化后的不同微结构特征的织构化表面的润湿性。结果表明:圆柱表面织构特征显著受加工次数的影响,随加工次数的增加,圆柱表面经历“反复复制”掩模印制阵列凹凸微结构、阵列凹凸微结构叠错-细化、微纳米分级结构分级化等表面微织构化演化过程;用时仅需249 s制备的外径49 cm、长50 cm的SUS304圆柱面(氟化后)微-纳米分级结构表面对水/甘油/十六烷的接触角分别为160.4°、158.5°、153.6°、滚动角分别为2.1°、5.6°、8.6°;呈现优异的超双疏极端润湿性且机械耐久性好。旋带掩模电解织构技术在圆柱面工件制取机械耐久性极端润湿性功能表面方面呈现高效、低成本、便于实施等优势。 展开更多
关键词 旋带掩模电解 微凹凸结构 微纳米分级结构 极端润湿性表面
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Laser surface functionalization to achieve extreme surface wetting conditions and resultant surface functionalities 被引量:4
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作者 WANG Qing-hua WANG Hui-xin 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3217-3247,共31页
Wetting condition of micro/nanostructured surface has received tremendous attention due to the potential applications in commercial,industrial,and military areas.Surfaces with extreme wetting properties,e.g.,superhydr... Wetting condition of micro/nanostructured surface has received tremendous attention due to the potential applications in commercial,industrial,and military areas.Surfaces with extreme wetting properties,e.g.,superhydrophobic or superhydrophilic,are extensively employed due to their superior anti-icing,drag reduction,enhanced boiling heat transfer,self-cleaning,and anti-bacterial properties depending on solid-liquid interfacial interactions.Laser-based techniques have gained popularity in recent years to create micro/nano-structured surface owing to their high flexibility,system precision,and ease for automation.These techniques create laser induced periodic surface structures(LIPSS)or hierarchical structures on substrate material.However,micro/nanostructures alone cannot attain the desired wettability.Subsequent modification of surface chemistry is essentially needed to achieve target extreme wettability.This review paper aims to provide a comprehensive review for both laser texturing techniques and the following chemistry modification methods.Recent research progress and fundamental mechanisms of surface structure generation via different types of lasers and various chemistry modification methods are discussed.The complex combination between the laser texturing and surface chemistry modification methods to decide the final wetting condition is presented.More importantly,surface functionalities of these surfaces with extreme wetting properties are discussed.Lastly,prospects for future research are proposed and discussed. 展开更多
关键词 laser surface modification extreme wettability chemistry modification surface functionality
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