首页|期刊导航|东华大学学报(英文版)|具有分级结构的水下可恢复超疏水表面

具有分级结构的水下可恢复超疏水表面OA

Underwater Recoverable Superhydrophobic Surface with Hierarchical Structure

中文摘要英文摘要

水下超疏水表面在减阻领域具有广阔前景,但其应用受限于表面气盾的水下不稳定性.受水蜘蛛气盾补充机制启发,首先通过激光刻蚀和翻模法获得微锥阵列结构,然后进行链状纳米粒子沉积和氟化处理,制备出具有稀疏微-纳分级结构的可恢复超疏水表面.该超疏水表面表现出优异的耐久性,可承受 100次摩擦循环(2 kPa),5.5 h 水流冲击(25 kPa).这归因于微锥阵列,其在机械作用下保护了超疏水纳米粒子.该分级结构具有水下亲气性,可实现34 次从完全润湿到超疏水状态的循环转变.旋转流变试验计算得知该表面减阻率达13.6%.流体动力学模拟表明该微结构降低了表面的壁面剪切力,在水流速度为 1 m/s、壁面滑移速度为0.15 m/s 时,减阻率达14.2%.该研究为超疏水表面长效可持续减阻应用提供了理论依据和设计方向.

Underwater superhydrophobic surfaces(SHSs)are promising for drag reduction but are limited by the metastability of underwater air plastrons.Inspired by the replenishment mechanism of the water spider's air plastron,a recoverable SHS with a sparse micro-nano hierarchical structure was fabricated by obtaining a microcone array structure through laser etching and mold replication,followed by the chained nanoparticle deposition and fluorination treatment.The surface exhibited exceptional durability,sustaining 100 abrasion cycles(2 kPa)and 5.5 h water jetting(25 kPa).This is attributed to the microcone array,which protects the superhydrophobic nanoparticles under mechanical action.The hierarchical structure exhibited underwater aerophilicity,which enabled 34 cycles from fully wetting to superhydrophobicity.Rotational rheometric analysis revealed a drag reduction rate of 13.6%.Fluid dynamics simulations showed that the microstructure reduced wall shear stress,achieving a drag reduction rate of 14.2%at a flow velocity of 1 m/s and a wall-slip velocity of 0.15 m/s.This study provides design directions and theoretical foundations for the application of SHS in sustainable drag reduction.

谭志敏;沈浩;赵一平;杨丽丽;葛邓腾

东华大学 先进纤维材料全国重点实验室 材料科学与工程学院,上海 201620东华大学 功能材料研究中心,上海 201620新兴际华(上海)工程科技研究院有限公司,上海 201403东华大学 先进纤维材料全国重点实验室 材料科学与工程学院,上海 201620新兴际华(上海)工程科技研究院有限公司,上海 201403

通用工业技术

水下可恢复超疏水表面分级结构气盾

underwaterrecoverable superhydrophobic surfacehierarchical structureair plastron

《东华大学学报(英文版)》 2026 (2)

1-9,9

National Natural Science Foundation of China(Nos.51973033 and 11774049)

10.19884/j.1672-5220.202503015

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