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Development of excellent water-repellent coatings for metallic and ceramic surfaces

机译:用于金属和陶瓷表面的优异防水涂层的研制

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One of the most fascinating properties of various in sects and plant surfaces in nature is their water-repellent (superhydrophobicity) capability. The nature offers new insights to learn and replicate the same in designing artificial superhydrophobic structures for a wide range of applications such as micro-fluidics, micro-electronics, textiles, self-cleaning surfaces, anti-corrosion, anti-fingerprint, oil/water separation, etc. In general, artificial superhydrophobic surfaces are synthesized by creating roughness and then treating the surface with low surface energy materials. In this work, various super-hydrophobic coatings on metallic surfaces (aluminum, steel, copper, steel mesh) were synthesized by chemical etching process using different etchants and fatty acid. Also, SiO2nano/micro-particles imbedded polyethylene, polystyrene, and poly(methyl methacrylate) superhydrophobic coatings were synthesized on glass substrates. To know the applications of the coatings, surface morphology, contact angle, self-cleaning, anti-icing, anti-fogging, corrosion-resistance, and water-repellent characteristics were investigated at various conditions. Furthermore, durability of coatings was also studied by performing thermal, ultra-violet, and mechanical stability tests. The surface morphology confirms the creation of rough microstructures by chemical etching or by embedding particles and the contact angle measurements reveals the superhydrophobic nature. Experimentally it is found that the coatings have excellent self-cleaning, anti-corrosion, anti-fogging, anti-icing, and water-repellent nature. These coatings also withstand mechanical disturbances such surface bending, adhesive peeling, and abrasion. Coatings are also found to be thermal and ultra-violet stable. Additionally, metallic coatings are also reproducible. Hence aforesaid durable superhydrophobic surfaces have many potential industrial applications.
机译:各种各样的各种诱人的性质和植物表面的性质之一是它们的防水性(超疏水性)能力。本质提供了新的见解,用于学习和复制在设计人工超疏水结构方面,用于各种应用,如微型流体,微电子,纺织品,自清洁表面,防腐蚀,防指纹,油/水通过产生粗糙度,通过产生粗糙度并用低表面能材料处理表面来合成人造超疏水表面。在这项工作中,通过使用不同蚀刻剂和脂肪酸的化学蚀刻工艺合成了金属表面(铝,钢,铜,钢网)的各种超级疏水涂层。此外,在玻璃基板上合成了SiO2NANO /微颗粒嵌入式聚乙烯,聚苯乙烯和聚(甲基丙烯酸甲酯)超疏水涂层。要知道涂层的应用,表面形态,接触角,自清洁,防糖,抗雾,耐腐蚀性和防水特性在各种条件下进行了研究。此外,还通过进行热,超紫和机械稳定性测试来研究涂料的耐久性。表面形态通过化学蚀刻或通过嵌入颗粒确认粗糙微结构的产生,并且接触角测量揭示了超疏水性质。实验结果发现,涂料具有出色的自清洁,防腐,抗雾化,防冰和防水性质。这些涂层还承受机械干扰,这种表面弯曲,粘接剥离和磨损。还发现涂层是热和紫外线稳定的。另外,金属涂层也可再现。因此,上述耐用的超疏水表面具有许多潜在的工业应用。

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