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Comprehensive analysis of Mn:PIN-PMN-PT single crystals for Class IV flextensional transducer

机译:综合分析Mn:IV类杂项换能器的PIN-PMN-PT单晶

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AbstractAs a crucial part of flextensional transducer (FT), the piezoelectric stack has an essential influence on the transducer. However, up to date, there are no literatures on considering the loss characteristics of the piezoelectric materials in the design of FT. Manganese-modified PIN-PMN-PT (Mn:PIN-PMN-PT) single crystals have greatly improvedQmvalues compared with the binary and ternary single crystals. In this paper, Class IV FTs based on Mn:PIN-42%PMN-32%PT and Mn:PIN-47%PMN-29%PT crystals were analyzed comprehensively on the heat losses, as well as transmitting voltage response (TVR), source level (SL), acoustic pressure (AP) and admittance. Compared with PIN-47%PMN-29%PT, PMN-28%PT and PZT4, the Mn:PIN-42%PMN-32%PT FT has a decrease of heat loss by 47.9%, 79.5% and 93.6%, respectively, under the same strain of 5 × 10?5. The results indicated that the Mn:PIN-PMN-PT FT possesses simultaneously the less heat loss and lower resonant frequency, the higher AP, TVR, SL and effective electromechanical coupling coefficient. This research provides a guide for the design of FT and illuminates the immense potential of Mn:PIN-PMN-PT single crystals in making low heat generation, low frequency and high power FT.]]>
机译:<![cdata [ 抽象 作为败声传感器(ft)的关键部分,压电堆对换能器具有重要影响。但是,迄今为止,考虑到FT设计中的压电材料的损耗特性,没有文献。 Manganese改性的Pin-PMN-Pt(Mn:Pin-PMN-PT)单晶大大改善了 Q m 值与二进制和三元单晶相比。本文基于Mn:Pin-42%PMN-32%Pt和Mn:Pin-47%PMN-29%PT晶体的IV类FTS在热损失上进行了分析,以及传输电压响应(TVR) ,源电平(SL),声压(AP)和导纳。与PIN-47%PMN-29%PT,PMN-28%PT和PZT4相比,Mn:PIN-42%PMN-32%PT FT分别降低了热量损失47.9%,79.5%和93.6% ,在5×10的相同应变下,?5 。结果表明,Mn:PIN PMN-PT FT同时具有较少的热损失和较低的谐振频率,更高的AP,TVR,SL和有效机电耦合系数。本研究提供了FT的设计指南,并照亮Mn的巨大电位:Pin-PMN-PT单晶在制作低发热,低频和高功率ft时。 ]]>

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