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Low ice adhesion surfaces using microtextured hydrophobic tapes and their applications in refrigeration systems

机译:低冰粘附表面使用微织物疏水胶带及其在制冷系统中的应用

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摘要

A low ice adhesion surface was generated using microtextured hydrophobic tapes. The surface microtexture was achieved by coating structural bonding tape with polytetrafluoroethylene (PTFE) powder. This technique required no chemicals or complex curing mechanisms. By introducing two powders with different average grain sizes, the surface microtexture was able to be varied for comparative testing. The average grain size ranges, and therefore the surface microtexture feature sizes, were 2 mu m to 4 mu m and 13 mu m to 21 mu m. The static contact angle varied between 102.1 degrees and 129.1 degrees, and the roll-off angle varied between 33.0 degrees and 14.6 degrees. A higher static contact angle and a lower roll-off angle were associated with a higher weight percent of the larger powder grains. The ice detachment pressure for the 1:10 powder mixture was 128 kPa, and the ice separation time under thermal defrost was 216 s. The powder coated structural bonding tape was applied to the cooling fan for a walk-in freezer. The behavior of ice accumulation due to humidity, as well as the ice removal due to defrost cycles, was qualitatively analyzed. It was found that the microtextured coating significantly reduced ice buildup on the fan and improved water collection during thermal defrost. The coating demonstrated the same level of performance after over 150 consecutive days of testing.
机译:使用微线疏水胶带产生低冰粘附表面。通过用聚四氟乙烯(PTFE)粉末涂覆结构粘合带来实现表面微织物。该技术不需要化学品或复杂的固化机制。通过引入具有不同平均晶粒尺寸的两种粉末,能够改变表面微织物以进行比较测试。平均晶粒尺寸范围,因此表面微织物特征尺寸,为2μm至4亩,13μm至21μm。静态接触角在102.1度和129.1度之间变化,滚动角度在33.0度和14.6度之间变化。较高的静态接触角和较低的折叠角度与较高的较大粉末颗粒的重量百分比相关联。 1:10粉末混合物的冰脱离压力为128kPa,热除霜下的冰分离时间为216秒。将粉末涂覆的结构粘合带应用于用于步入式冰箱的冷却风扇。定性地分析了由于湿度引起的冰积累的行为以及由于除霜循环引起的冰。发现微线涂层在粉丝中显着减少了冰块和热除霜期间的水收集。在连续150天的测试后,涂层显示出相同的性能。

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