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首页> 外文期刊>ACS nano >Modus Operandi of Protective and Anti-icing Mechanisms Underlying the Design of Longstanding Outdoor Icephobic Coatings
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Modus Operandi of Protective and Anti-icing Mechanisms Underlying the Design of Longstanding Outdoor Icephobic Coatings

机译:长户外冰冻涂料设计保护和防冰机制的调制操作

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摘要

Atmospheric icing has become a global concern due to hazardous consequences of ice accretion on air, land, and sea transport and infrastructure. Icephobic surfaces due to their physicochemical properties facilitate a decrease in ice and snow accumulation under outdoor conditions. However, a serious problem of most super hydrophobic surfaces described in the literature is poor operational durability under harsh corrosive and abrasive loads characteristic of atmospheric operation. Here, we elucidate main surface phenomena determining the anti icing behavior and show experimentally how different mechanisms contribute to long-term durability. For comprehensive exploitation of those mechanisms, we have applied a recently proposed strategy based on fine-tuning of both laser processing and protocols of deposition of the fluorooxysilanes onto the nanotextured surface. Prolonged outdoor tests evidence that a developed strategy for modification of materials on the nanolevel allows overcoming the main drawbacks of icephobic coatings reported so far and results in resistance to destroying atmospheric impacts.
机译:由于空气,土地和海运和海运和基础设施冰川造成的危险后果,大气结冰已成为全球担忧。由于其物理化学特性,冰冻表面有助于在室外条件下减少冰雪积累。然而,在文献中描述的大多数超级疏水表面的严重问题是在苛刻的腐蚀性和磨料载荷的常压和磨料载荷的耐受性耐久性差。在这里,我们阐明了确定反糖霜行为的主要表面现象,并通过实验表明不同的不同机制有助于长期耐久性。为了综合利用这些机制,我们已经基于激光加工的微调和氟氧硅烷沉积协议在纳米夹层表面上进行了最近提出的策略。长时间的户外测试证据表明,纳米叶轮上材料改变的发达战略允许克服到目前为止所报告的冰冻涂层的主要缺点,并导致抵抗抵抗造成大气影响。

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