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Long term superhydrophobic and hybrid superhydrophobic/superhydrophilic surfaces produced by laser surface microano surface structuring

机译:通过激光表面微/纳米表面结构化产生的长期超疏水和杂化超疏水/超亲水表面

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摘要

Stable superhydrophobic and superhydrophilic surfaces were created using laser surface microano patterning. These were based on periodic 3D microanostructures produced on 316L stainless steel over large areas using nanosecond and picosecond laser surface fabrication. The effects of laser processing parameters on controlling the micro-ano-topographical characteristics of 24 different types of structures were presented. Surface roughness, surface chemical composition and wettability (via water contact angle) of these surfaces were characterised. Aging experiments were carried out for up to 8 months to analyse the durability of the prepared surfaces under three conditions of water (hot, normal and icy). Samples with superhydrophobic characteristics, processed with the ps or ns lasers in air, kept dry (water repellent) for over 8 months when tested in ice water ( degrees C-4 degrees C), whilst those stored in hot water (80 degrees C) or room temperature water could only be kept dry for 3-14 weeks. Samples processed in water had shorter water repellent life and samples processed with the ns laser in air had the longest water repellent periods. The hybrid superhydrophobic and superhydrophobic surfaces had a stability life for water repellent and water spreading of over 6 months.
机译:稳定的超疏水和超亲水表面是使用激光表面微/纳米图案制作的。这些是基于使用纳秒和皮秒激光表面加工技术在316L不锈钢上大面积生产的周期性3D微观/纳米结构。提出了激光加工参数对控制24种不同类型结构的微观/纳米形貌特征的影响。表征这些表面的表面粗糙度,表面化学组成和润湿性(通过水接触角)。进行了长达8个月的老化实验,以分析所制备表面在三种水(热,正常和冰冷)条件下的耐久性。具有超疏水特性的样品,在空气中通过ps或ns激光处理后,在冰水(摄氏4至4度)中进行测试时,保持干燥(拒水)状态达8个月以上,而在热水(80摄氏度)中进行了测试或室温的水只能保持干燥3-14周。在水中处理的样品具有较短的拒水寿命,而在空气中使用ns激光处理的样品具有最长的拒水时间。杂化的超疏水和超疏水表面具有6个月以上的拒水和散布稳定性。

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