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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Durability and Wear Resistance of Laser-Textured Hardened Stainless Steel Surfaces with Hydrophobic Properties
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Durability and Wear Resistance of Laser-Textured Hardened Stainless Steel Surfaces with Hydrophobic Properties

机译:激光纹理硬化不锈钢表面具有疏水性能的耐久性和耐磨性

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摘要

Hydrophobic surfaces are of high interest to industry. While surface functionalization has attracted significant interest, from both industry and research, the durability of engineered surfaces remains a challenge, as wear and scratches deteriorate their functional response. In this work, a cost-effective combination of surface engineering processes on stainless steel was investigated. Low-temperature plasma surface alloying was applied to increase surface hardness from 172 to 30S HV. Then, near-infrared nanosecond laser patterning was deployed to fabricate channel-like patterns that enabled superhydrophobicity. Abrasion tests were carried out to examine the durability of such engineered surfaces during daily use. In particular, the evolution of surface topographies, chemical composition, and water contact angle with increasing abrasion cycles were studied. Hydrophobicity deteriorated progressively on both hardened and raw stainless steel samples, suggesting that the major contributing factor to hydrophobicity was the surface chemical composition. At the same time, samples with increased surface hardness exhibited a slower deterioration of their topographies when compared with nontreated surfaces. A conclusion is made about the durability of laser-textured hardened stainless steel surfaces produced by applying the proposed combined surface engineering approach.
机译:疏水表面对工业具有很高的兴趣。虽然表面功能化引起了重要兴趣,从工业和研究中,工程表面的耐久性仍然是一个挑战,因为磨损和划痕恶化了它们的功能反应。在这项工作中,研究了在不锈钢上的表面工程方法的成本效益组合。施加低温等离子体表面合金化以从172至30s的HV增加表面硬度。然后,部署近红外纳秒激光图案以制造使能超细侵入性的频道状图案。进行了磨损试验,以检查日常使用期间这种工程化表面的耐久性。特别地,研究了表面拓扑,化学成分和随着耐磨循环的增加的进化。疏水性在硬化和原始不锈钢样品上逐渐恶化,表明疏水性的主要贡献因素是表面化学组成。同时,随着非处理的表面相比,具有增加的表面硬度的样品表现出拓扑的较慢劣化。通过应用所提出的组合表面工程方法产生的激光纹理硬化的不锈钢表面的耐久性进行了结论。

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