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Anti⁃icing/De⁃icing Mechanism and Application Progress of Bio⁃inspired Surface for Aircraft 被引量:5
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作者 ZHU Yantong WANG Zelinlan +3 位作者 LIU Xiaolin ZHAO Zehui YAN Yuying CHEN Huawei 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第5期541-560,共20页
Icing on the surface of aircraft will not only aggravate its quality and affect flight control,but even cause safety accidents,which is one of the important factors restricting all-weather flight.Bio-inspired anti-ici... Icing on the surface of aircraft will not only aggravate its quality and affect flight control,but even cause safety accidents,which is one of the important factors restricting all-weather flight.Bio-inspired anti-icing surfaces have gained great attention recently due to their low-hysteresis,non-stick properties,slow nucleation rate and low ice adhesion strength.These bio-inspired anti-icing surfaces,such as superhydrophobic surfaces,slippery liquid-infused porous surfaces and quasi-liquid film surfaces,have realized excellent anti-icing performance at various stages of icing.However,for harsh environment,there are still many problems and challenges.From the perspective of bioinspiration,the mechanism of icing nucleation,liquid bounce and ice adhesion has been reviewed together with the application progress and bottleneck issues about anti-icing in view of the process of icing.Subsequently,the reliability and development prospect of active,passive and active-passive integrated anti-icing technology are discussed,respectively. 展开更多
关键词 mechanical manufacturing and automation anti-icing of aircraft superhydrophobic surface slippery liquid-infused porous surface electrothermal coating
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丝印涤纶面料的电加热性能研究 被引量:1
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作者 孔令红 冯迪飞 罗秋兰 《中国纤检》 2021年第7期73-75,共3页
本文介绍了发热面料的发展现状,初步探讨面料的电加热性能。以工业化丝印的方式在涤纶织物表面印制加热层,具备柔性可穿戴能力的同时,满足极寒天气下人们对于保暖的需求。本文从织物的电发热性能、力学性能以及使用性能等3个方面来综合... 本文介绍了发热面料的发展现状,初步探讨面料的电加热性能。以工业化丝印的方式在涤纶织物表面印制加热层,具备柔性可穿戴能力的同时,满足极寒天气下人们对于保暖的需求。本文从织物的电发热性能、力学性能以及使用性能等3个方面来综合评价制备的发热面料。测试结果表明,该面料的电学稳定性良好,发热均匀,在外力拉伸弯折作用下性能变化小,耐久性好,具有与服装良好的结合能力,为发热服装的开发和性能检测提供了研究基础。 展开更多
关键词 电热面料 碳纤维浆料 丝印 智能可穿戴
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