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用于医疗和传感器应用的多孔压电陶瓷的开发。

Development of Porous Piezoceramics for Medical and Sensor Applications.

作者信息

Ringgaard Erling, Lautzenhiser Frans, Bierregaard Louise M, Zawada Tomasz, Molz Eric

机构信息

Meggitt Sensing Systems Denmark, Porthusvej 4, Kvistgaard DK-3490, Denmark.

Meggitt Sensing Systems Indiana, 8431 Georgetown Road, Indianapolis, IN 46268, USA.

出版信息

Materials (Basel). 2015 Dec 21;8(12):8877-8889. doi: 10.3390/ma8125498.

Abstract

The use of porosity to modify the functional properties of piezoelectric ceramics is well known in the scientific literature as well as by the industry, and porous ceramic can be seen as a 2-phase composite. In the present work, examples are given of applications where controlled porosity is exploited in order to optimise the dielectric, piezoelectric and acoustic properties of the piezoceramics. For the optimisation efforts it is important to note that the thickness coupling coefficient will be maximised for some non-zero value of the porosity that could be above 20%. On the other hand, with a good approximation, the acoustic velocity decreases linearly with increasing porosity, which is obviously also the case for the density. Consequently, the acoustic impedance shows a rather strong decrease with porosity, and in practice a reduction of more than 50% may be obtained for an engineered porous ceramic. The significance of the acoustic impedance is associated with the transmission of acoustic signals through the interface between the piezoceramic and some medium of propagation, but when the porous ceramic is used as a substrate for a piezoceramic thick film, the attenuation may be equally important. In the case of open porosity it is possible to introduce a liquid into the pores, and examples of modifying the properties in this way are given.

摘要

利用孔隙率来改变压电陶瓷的功能特性,在科学文献以及工业领域中都是广为人知的,多孔陶瓷可被视为一种两相复合材料。在本工作中,给出了一些应用实例,其中利用可控孔隙率来优化压电陶瓷的介电、压电和声学性能。对于优化工作而言,需要注意的是,对于某些可能高于20%的非零孔隙率值,厚度耦合系数将达到最大值。另一方面,在良好近似的情况下,声速随孔隙率增加呈线性下降,密度显然也是如此。因此,声阻抗随孔隙率呈现出相当显著的下降,实际上对于一种工程化多孔陶瓷,可能会获得超过50%的降低。声阻抗的重要性与声信号通过压电陶瓷和某种传播介质之间的界面传输有关,但当多孔陶瓷用作压电陶瓷厚膜的基板时,衰减可能同样重要。在开孔孔隙率的情况下,可以将液体引入孔隙中,并给出了以此方式改变性能的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b8c/5458825/a5e7f989daac/materials-08-05498-g001.jpg

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