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Durable and Superhydrophobic Aluminium Alloy with Microscale Hierarchical Structures and Anti-Drag Function Inspired by Diving Bell Spider

机译:耐用和超疏水铝合金,具有微观层次结构和防拖函数的潜水钟蜘蛛

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Coating materials with special surface wettability are widely applied in marine paint systems used in the naval industry to reduce the corrosion and viscous drag of seawater. However, traditional coatings are inefficient and limited, either by poor durability or insufficient anti-drag capacity. Here, inspired by the diving bell spider, a bionic superhydrophobic coating with multiscale hierarchical architecture was successfully prepared on the surface of aluminium alloy. It possesses excellent mechanical abrasion durability, chemical durability, and low adhesion. Remarkably, the water contact angles could remain over 150.9° after more than 15 abrasion cycles or strong acid/alkali conditions. In addition, the impacting water droplet lifted off the surface of bionic superhydrophobic aluminium alloy (BSAA) within 13 ms, illustrating an excellent low adhesion property. In fact, when the BSAA is immersed in water, it could absorb bubbles and form a gas membrane. The existence of the gas membrane could prevent water and anaerobic organisms from contacting and even corroding the BSAA. Meanwhile, the gas membrane acts as a lubricant and significantly deceases friction at the solid–liquid interface, reducing the drag for BSAA. The BSAA proposed in this work has broad application prospects, such as medical devices, microfluidic chips, gas separation and collection in water.
机译:具有特殊表面润湿性的涂层材料广泛应用于海军行业的海洋涂料系统中,以减少海水的腐蚀和粘性阻力。然而,传统涂层效率低,有限,通过耐久性差或抗拖动能力不足。这里,由潜水钟蜘蛛的启发,在铝合金表面上成功地制备了具有多尺度等级架构的仿生超疏水涂层。它具有优异的机械磨损耐久性,化学耐用性和低粘附性。值得注意的是,在超过15个耐磨循环或强酸/碱条件后,水接触角可保持超过150.9°。此外,撞击水滴从13毫秒内脱离了仿生超疏水铝合金(Bsaa)的表面,示出了优异的低粘合性。事实上,当BSAA浸入水中时,它可以吸收气泡并形成气体膜。耐气膜的存在可以防止水和厌氧生物接触甚至腐蚀Bsaa。同时,气膜用作润滑剂,并显着地在固液界面处取消摩擦,降低了BSAA的阻力。本作工作中提出的BSAA具有广泛的应用前景,如医疗设备,微流体芯片,天然气分离和水中的收集。

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