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Piezoelectric material selection for ultrasonic transducer and actuator applications

机译:超声波换能器和执行器应用的压电材料选择

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摘要

Multi attribute decision making approaches are used to screen and rank selected materials for piezoelectric applications including ultrasonic transducers and actuators. We have investigated two separate multi attribute decision making techniques namely the technique for order preference by similarity to ideal solution and non-linear simple additive weighting methods to rank and compare selected materials for high and room temperature piezoelectric applications. Subjective weights have been determined using modified digital logic approach. Lead-based piezoceramics acquire all the top ranking positions, indicating their functional superiority among all the selected materials. However, some lead-free materials show comparable performance index with that of the lead-based ceramics. The KNN (K_(0.5)Na_(0.5)NbO_3) family in particular shows positive simple additive weighting index, indicating potential lead-free candidates for piezoelectric applications.
机译:多属性决策方法用于筛选和排序用于压电应用程序的选定材料,包括超声换能器和执行器。我们研究了两种独立的多属性决策技术,即通过类似于理想解决方案的顺序偏好技术和非线性简单加法加权方法对用于高温和室温压电应用的选定材料进行排名和比较。已经使用改进的数字逻辑方法确定了主观权重。铅基压电陶瓷获得所有最高排名,表明它们在所有选定材料中的功能优势。但是,某些无铅材料的性能指标可与铅基陶瓷相媲美。 KNN(K_(0.5)Na_(0.5)NbO_3)族尤其显示出正的简单添加剂加权指数,表明了压电应用的潜在无铅候选材料。

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