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A novel thermo-mechanical anti-icing/de-icing system using bi-stable laminate composite structures with superhydrophobic surface

机译:一种使用具有超疏水表面的双稳态层压复合结构的新型热机械除冰/除冰系统

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A novel anti-icing/de-icing system composed of bi-stable laminate composite structures with superhydrophobic surface and soft electrothermal patch is investigated in this paper. In this system, the superhydrophobic surface has superior performance in anti-icing and de-icing by reducing the adhesion of the ice-skin interface; meanwhile, a thermo-mechanical way to remove ice is conducted by deforming the bi-stable structures using heating actuation method. The superhydrophobic layer is fabricated by decreasing the free energy of copper oxide on the copper surface. The water contact angle of the superhydrophobic surface is tested by an optical contact angle measuring device, which reaches above 155 degrees and the sliding angle is less than 10 degrees. In addition, the microstructure of superhydrophobic layer is characterized by using a scanning electron microscope (SEM) to illustrate the superhydrophobic mechanism. Moreover, outstanding self-cleaning properties and UV-durability are obtained on the prepared surface. Experimental results indicate that the system has good performances in both anti-icing and de-icing processes when working at the subzero temperature. Meanwhile, there is no liquid water left on the surface after the snap-through process of bi-stable structures. Besides, the factors that affect the anti-icing and de-icing performance of system are discussed, including the superhydrophobic property, morphing characteristic of bi-stable laminate composite structures and actuating method. Finally, the finite element method is used to simulate the factors that affect the deformation of bi-stable structures independently, including the single layer thickness, stacking sequence of the laminate and the embedment of the electrothermal alloy. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了一种新型的由双稳态层压复合结构组成的新型防冰除冰系统,该复合结构具有超疏水的表面和柔软的电热补丁。在该系统中,超疏水表面通过减少冰皮界面的附着力而具有优异的防冰和除冰性能。同时,采用热致动方法使双稳态结构变形,进行热机械除冰。通过减少铜表面上氧化铜的自由能来制造超疏水层。超疏水表面的水接触角通过光学接触角测量装置测试,达到155度以上,滑动角小于10度。此外,通过使用扫描电子显微镜(SEM)来表征超疏水层的微观结构,以说明超疏水机制。而且,在制备的表面上获得了优异的自清洁性能和紫外线耐久性。实验结果表明,该系统在零以下温度下工作时,在防冰和除冰过程中均具有良好的性能。同时,经过双稳态结构的快速吸附处理后,表面上没有残留液态水。此外,还讨论了影响系统除冰和除冰性能的因素,包括超疏水性能,双稳态层状复合结构的变形特性和驱动方法。最后,利用有限元方法独立地模拟了影响双稳态结构变形的因素,包括单层厚度,层压板的堆叠顺序和电热合金的嵌入。 (C)2017 Elsevier Ltd.保留所有权利。

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