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Direct Laser Selective texturing to improve Stainless Steel Surface Condensation Heat Transfer Without Any Chemical Treatment

机译:直接激光选择性纹理,以改善不锈钢表面凝结热传递,无需任何化学处理

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Common organic modification of metal superhydrophobic surface has these problems such as serious environmental pollution, high thermal resistance, low processing efficiency, and easy to fall off. A chemical-free direct laser selective texturing technology is proposed to enhance condensation heat transfer performance on stainless steel surface. A micro-textured steel plate was processed by nanosecond pulsed laser to obtain a superhydrophilic surface of a square grid groove-convex structure. After heat treatment, the superhydrophilic surface changed to be superhydrophobic. The superhydrophobic surface was then laser selective textured to get a wedge-shaped superhydrophilic-superhydrophobic surface. Surface morphology, chemical composition and three-dimensional profile were analyzed. By comparing the superhydrophobic and superhydrophilic surfaces, the back-surface temperature and the average detached diameter of the condensed droplets was measured. Furthermore, the surface condensation heat transfer coefficient of samples was calculated according to the relevant condensing heat transfer theory. At the same time, samples with different area ratios of laser textured superhydrophilic-superhydrophobic were designed for heat transfer analysis. Condensation results showed that the heat transfer coefficient of the selective-textured surfaces was enhanced compared to the full laser textured superhydrophobic surface. After the condensed droplet grew to the superhydrophobic boundary of the laser selected area, it was restricted to grow and merge quickly and then was removed by self-transport in the wedge-shaped superhydrophilic area. The laser textured patterns showed a smaller detachment diameter than the fully superhydrophobic surface and had enhanced condensation heat transfer coefficient, as laser textured superhydrophilic-superhydrophobic areas are equal.
机译:金属超疏水表面的常见有机改性具有这些问题,如严重的环境污染,高耐热性,低处理效率,易脱落。提出了无化学直接激光选择性纹理技术,以提高不锈钢表面的冷凝传热性能。通过纳秒脉冲激光加工微织地不易钢板,得到正方形栅极槽凸起结构的过性水蛭表面。在热处理后,超硫酸化表面变为超疏水。然后激光选择性纹理的超疏水表面以获得楔形的超烯烃 - 超疏水表面。分析了表面形态,化学成分和三维曲线。通过比较超疏水和超硫酸化表面,测量后表面温度和凝聚液滴的平均分离直径。此外,根据相关的冷凝传热理论计算样品的表面凝结传热系数。同时,设计了具有不同面积比激光的激光织地不良超疏水性 - 超细杂志的样品用于传热分析。结合结果表明,与全激光纹理的超疏水表面相比,选择性织地表面的传热系数增强。在冷凝液滴生长到激光选择区域的超疏水边界之后,仅限于生长并快速合并,然后通过楔形超银细胞的自运输去除。激光纹理图案显示出比完全超疏水表面的脱离直径较小,并且具有增强的缩合传热系数,因为激光纹理的超烯烃 - 超疏水区域相等。

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