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Piezocrystal-polymer composites: new materials for transducers for ultrasonic NDT

机译:压电晶体-聚合物复合材料:超声波无损检测换能器的新材料

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摘要

Piezoceramic-polymer composite materials are finding increasing acceptance in ultrasonic transducers for NDT. However, new piezocrystal materials are also becoming available, such as lead zinc niobate doped with lead titanate (PZN-PT). Made into piezocomposite, they have significant theoretical performance advantages. Although the new materials are presently more expensive than piezoceramic, their prices have recently fallen dramatically, making them viable for high-end NDT. In this paper, the authors first review the background to the new piezocrystals then report their experience in piezocomposites made with them. The authors describe how they have predicted the main piezoelectric properties of these piezocomposites, establishing a robust design process. The composite fabrication method is outlined and the properties for four different single-crystal volume fractions are reported. Prototype elements have been realised in the form of coupons approximately 5 mm × 10 mm suitable for dual-element probes and these probes have been evaluated on test objects of various materials, including a steel block, an aluminium block and a carbon fibre reinforced composite (CFRC) panel. The results confirm that the theoretical performance advantages can be achieved in practice, including doubling the gain-bandwidth product compared with conventional piezoceramic-polymer composite. It is concluded that applications such as ultrasonic spectroscopy, inspection of difficult materials and multi-element imaging arrays may benefit significantly.
机译:压电陶瓷复合材料在无损检测超声换能器中的接受度不断提高。但是,也可以使用新的压电晶体材料,例如掺有钛酸铅(PZN-PT)的铌酸铅锌。制成压电复合材料,它们具有明显的理论性能优势。尽管新材料目前比压电陶瓷更昂贵,但最近它们的价格却急剧下降,使其可用于高端无损检测。在本文中,作者首先回顾了新型压电晶体的背景,然后报告了他们在用它们制成的压电复合材料中的经验。作者描述了他们如何预测这些压电复合材料的主要压电性能,并建立了可靠的设计过程。概述了复合材料的制造方法,并报告了四种不同单晶体积分数的性质。原型元件以大约5 mm×10 mm的试样形式实现,适用于双元素探针,并且这些探针已在各种材料的测试对象上进行了评估,包括钢块,铝块和碳纤维增强复合材料( CFRC)面板。结果证实,在实践中可以实现理论上的性能优势,包括与传统的压电陶瓷-聚合物复合材料相比,增益带宽乘积增加一倍。结论是,诸如超声光谱,难于检查的材料和多元素成像阵列等应用可能会受益匪浅。

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