Lead-Free Piezoelectric Ceramics as Candidates on the Development of Morphing Winglets in Aircrafts

Kevin Jiménez, G. Herrera
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引用次数: 3

Abstract

In this paper we discussed the development of a morphing wingtip device or winglet for aircraft. The aim of this research is enhancing the aerodynamic of aircrafts, by optimizing the winglet shape, angle and torsion, to reduce wingtip vortices at each flight stage, reduce drag, fuel consumption and increase its endurance. The development of a working physical wingtip device with morphing functionality, is possible by using piezoelectric MFCs (Macro Fiber Composites) as actuators in wing structures. Due to their excellent properties like flexibility, light weight, tolerant to damage and long term stability MFC fit most of the requirements and specifications of morphing structures. Unfortunately, they are based on the toxic compound of PbZrxTi1-xO3 (PZT). Lead-free materials can replace lead based compounds. Also, other aim of this inquiry is the development of piezoelectric lead-free compounds based on the solid solution Ba1-xCaxTi0.9Zr0.1O3 (BCZT) with x = 0.1, 0.125, 0.15. The reason for choosing these compositions is because BZCT compounds could reach a piezoelectricity coefficient d33~400 pC/N. This value is comparable with commercial PZT, therefore it is a great candidate to replace it.
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无铅压电陶瓷作为飞机可变形小翼发展的候选材料
本文讨论了飞机可变形翼尖装置或小翼的研制。本研究的目的是通过优化小翼的形状、角度和扭转来增强飞机的气动性能,从而减少各飞行阶段的翼尖涡,减少阻力,降低油耗,提高飞机的续航能力。通过在机翼结构中使用压电mfc(宏纤维复合材料)作为致动器,开发具有变形功能的工作物理翼尖装置成为可能。由于其优异的性能,如柔韧性,重量轻,耐损伤和长期稳定的MFC适合大多数变形结构的要求和规格。不幸的是,它们是基于PbZrxTi1-xO3 (PZT)的有毒化合物。无铅材料可以代替铅基化合物。此外,本研究的另一个目的是开发基于x = 0.1, 0.125, 0.15的固溶体Ba1-xCaxTi0.9Zr0.1O3 (BCZT)的压电无铅化合物。选择这些成分的原因是BZCT化合物可以达到d33~ 400pc /N的压电系数。该值与商用PZT相当,因此它是取代它的一个很好的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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