首页> 外文会议>ASME power conference joint with ICOPE-17 >DEVELOPMENT OF A DURABLE VAPOR PHASE DEPOSITED SUPERHYDROPHOBIC COATING FOR STEAM CYCLE POWER GENERATION CONDENSER TUBES
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DEVELOPMENT OF A DURABLE VAPOR PHASE DEPOSITED SUPERHYDROPHOBIC COATING FOR STEAM CYCLE POWER GENERATION CONDENSER TUBES

机译:汽轮发电机冷凝管的耐用气相沉积超疏水涂层的开发

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The condenser performance benefits afforded by dropwise condensation have long been unattainable in steam cycle power plant condensers due to the unavailability of durable and long lasting wetting inhibiting surface treatments. However, recent work in superhydrophobic coating technology shows promise that durable coatings appropriate for use on condenser tubes in steam cycle power generation systems may soon become a reality. This work presents a nano-scale, vapor phase deposited superhydrophobic coating with improved durability comprised of several layers of rough alumina nano-particles and catalyzed silica with a finishing layer of perfluorinated silane. This coating was applied to solid, hemi-cylindrical test surfaces fabricated from several common condenser tube materials used in power generation system condensers: Titanium, Admiralty brass, Cupronickel, and Sea Cure stainless steel condenser tube materials as well as 304 stainless steel stock. The development evolution of the coating and its effect on condensation behavior on the above materials are presented. Results show that the performance enhancement, measured in rate of heat transfer spikes corresponding to condensate roll-off events, was best for the titanium surface which produced 64% more events than the next most active material when coated using the most durable surface treatment tested in this work.
机译:由于不能提供持久和持久的抑制湿润的表面处理,在蒸汽循环发电厂的冷凝器中长期无法获得逐滴冷凝提供的冷凝器性能优势。然而,超疏水涂层技术的最新研究表明,适用于蒸汽循环发电系统冷凝器管的耐用涂层有望很快成为现实。这项工作提出了一种具有改善的耐久性的纳米级气相沉积超疏水涂层,该涂层由几层粗糙的氧化铝纳米颗粒和催化二氧化硅组成,并带有全氟化硅烷的精加工层。该涂层被应用于由发电系统冷凝器中使用的几种常见冷凝器管材料制成的固态半圆柱测试表面:钛,金钟黄铜,白铜和Sea Cure不锈钢冷凝器管材料以及304不锈钢原料。介绍了涂层在上述材料上的发展演变及其对缩合行为的影响。结果表明,以与冷凝物滚落事件相对应的传热峰值速率来衡量,性能增强最适合于钛表面,当使用在2007年测试的最耐用的表面处理进行涂层时,钛表面比次高活性材料产生的事件多64%。这项工作。

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