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多孔陶瓷作为高温传感器的背衬元件。

Porous ceramics as backing element for high-temperature transducers.

作者信息

Amini Mohammad, Coyle Thomas, Sinclair Tony

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2015 Feb;62(2):360-72. doi: 10.1109/TUFFC.2014.006711.

Abstract

A new application of porous ceramics as the attenuative backing element in high-temperature transducers is introduced. By introducing pores of different volume fractions and various sizes into the ceramic matrix, acoustic impedance and attenuation can be controlled to match their optimal values as predicted by a simple numerical model of the entire transducer, coupled with a model of the attenuative effect of the pores. This concept was applied to the design and manufacture of porous 3mol% Yttria-stabilized zirconia (YSZ) backing elements for a 2.8-MHz lithium niobate (LiNbO3) piezoelectric crystal, with a targeted operating temperature of 700°C to 800°C. Acoustic measurements revealed that the actual acoustic impedance and attenuation of the porous samples matched well with their predicted values. The design and fabrication process can be employed in manufacturing backing elements for a variety of transducers with specified center frequency and signal bandwidth.

摘要

介绍了多孔陶瓷作为高温换能器中衰减背衬元件的一种新应用。通过在陶瓷基体中引入不同体积分数和各种尺寸的孔隙,可以控制声阻抗和衰减,使其与整个换能器的简单数值模型以及孔隙衰减效应模型预测的最佳值相匹配。这一概念应用于设计和制造用于2.8兆赫兹铌酸锂(LiNbO3)压电晶体的多孔3摩尔%氧化钇稳定氧化锆(YSZ)背衬元件,目标工作温度为700°C至800°C。声学测量表明,多孔样品的实际声阻抗和衰减与预测值匹配良好。该设计和制造工艺可用于制造具有特定中心频率和信号带宽的各种换能器的背衬元件。

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