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Fabrication of a micro-nano structure on steel surface and surface wetting

机译:钢表面和表面润湿上的微纳米结构的制造

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Micro-shot peening (MSP) was combined with subsequent anodization to produce a micro-nano structure on a carbon steel surface. It is to be noted that carbon steel is an engineering material rather than a non-engineering material. Non-engineering materials are commonly used substrates in studies relating to preparation of superhydrophobic surfaces. The results show that MSP produces a peened surface with a micro-scale structure. Subsequent anodization forms an anodized film with a nano-scale structure based on the peened surface. Hence, a steel surface with a micro-nano structure is produced by the combined method. Compared with the steel surface with a single micro-scale structure, the steel surface with a micro-nano structure exhibits a higher hydrophilicity. The steel surface with a micro-nano structure becomes superhydrophobic after modifying with fluoroalkylsilane.
机译:将微小喷丸喷丸(MSP)与随后的阳极氧化相结合,以在碳钢表面上产生微纳米结构。应注意,碳钢是工程材料而非工程材料。非工程材料是常用的底物,其与制备超疏水表面有关的研究。结果表明,MSP通过微尺度结构产生喷丸表面。随后的阳极氧化形成具有基于喷丸表面的纳米级结构的阳极氧化膜。因此,通过组合方法生产具有微纳米结构的钢表面。与具有单个微级结构的钢表面相比,具有微纳米结构的钢表面具有更高的亲水性。用氟代烷基硅烷改性后,具有微纳米结构的钢表面变得超细杂志。

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