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Droplet Coalescence and Freezing on Hydrophilic, Hydrophobic, and Biphilic Surfaces

机译:疏水,疏水和双亲表面上的液滴聚结和冻结

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摘要

Frost and ice formation can have severe negative consequences, such as aircraft safety and reliability. At atmospheric pressure, water heterogeneously condenses and then freezes at low temperatures. To alter this freezing process, this research examines the effects of biphilic surfaces (surfaces which combine hydrophilic and hydrophobic regions) on heterogeneous water nucleation, growth, and freezing. Silicon wafers were coated with a self-assembled monolayer and patterned to create biphilic surfaces. Samples were placed on a freezing stage in an environmental chamber at atmospheric pressure, at a temperature of 295 K, and relative humidities of 30%, 60%, and 75%. Biphilic surfaces had a significant effect on droplet dynamics and freezing behavior. The addition of biphilic patterns decreased the temperature required for freezing by 6 K. Biphilic surfaces also changed the size and number of droplets on a surface at freezing and delayed the time required for a surface to freeze. The main mechanism affecting freezing characteristics was the coalescence behavior.
机译:霜和冰的形成会带来严重的负面影响,例如飞机的安全性和可靠性。在大气压下,水会不均匀地凝结,然后在低温下冻结。为了改变这种冷冻过程,这项研究检查了双亲表面(结合了亲水和疏水区域的表面)对异质水成核,生长和冷冻的影响。硅晶片涂有自组装的单层膜,并构图以形成双亲表面。将样品放在大气压下,温度为295 K,相对湿度为30%,60%和75%的环境室中的冷冻台上。双亲表面对液滴动力学和冻结行为具有重要影响。双亲图案的添加使冷冻所需的温度降低了6K。双亲表面还改变了冷冻时表面上液滴的大小和数量,并延迟了表面冷冻所需的时间。影响冻结特性的主要机理是聚结行为。

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