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Analysis of piezoelectric ice protection systems combined with ice-phobic coatings

机译:结合防冰涂层的压电防冰系统的分析

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The aeronautics industry is looking for ice protection systems consuming less energy. Electromechanical and especially piezoelectric solutions are a promising area of research for reducing average consumptions. This article provides an analytical model of a simple structure to assess the power and voltage required to obtain the delamination of the accumulated layer of ice at the support/ice interface. This model also allows analyzing the impact of the resonance frequencies used for supplying piezoelectric actuators on the tensile stress into PZT materials. Finally, this article assesses the effect of different ice-phobic coatings combined with piezoelectric ice protection systems. Experimental measurements of ice adhesion for different ice-phobic coatings allow evaluating the shear stress at which ice is detached from the surface. These results are then used to estimate - thanks to the proposed analytical model - the additional gain of power that would be provided by the use of such coatings.
机译:航空业正在寻找消耗更少能量的防冰系统。机电解决方案,尤其是压电解决方案是减少平均消耗的有前途的研究领域。本文提供了一种简单结构的分析模型,用于评估在支架/冰界面处获得积聚的冰层分层所需的功率和电压。该模型还允许分析用于向PZT材料中提供压电致动器的拉伸应力上的共振频率的影响。最后,本文评估了结合压电防冰系统的不同防冰涂层的效果。通过对不同的憎冰涂层进行冰粘附的实验测量,可以评估冰从表面脱离的剪切应力。由于采用了建议的分析模型,这些结果随后可用于估算使用此类涂层可提供的额外功率增益。

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