Fabrication, modelling and use of porous ceramics for ultrasonic transducer applications

被引:47
|
作者
Levassort, F.
Holc, J.
Ringgaard, E.
Bove, T.
Kosec, M.
Lethiecq, M.
机构
[1] Univ Tours, LUSSI, Lab Ultrasons Signaux Instrumentat, F-37032 Tours, France
[2] Jozef Stefan Inst, Ljubljana 1000, Slovenia
关键词
porous ceramic; piezoelectricity; modelling; ultrasonic transducer;
D O I
10.1007/s10832-007-9117-3
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Porous ceramics are of interest for ultrasonic transducer applications. Porosity allows to decrease acoustical impedance, thus improving transfer of acoustical energy to water or biological tissues. For underwater applications, the d(h)g(h) figure of merit can also be improved as compared to dense materials. In the case of high frequency transducers, namely for high resolution medical imaging, thick film technology can be used. The active films are generally porous and this porosity must be controlled. An unpoled porous PZT substrate is also shown to be an interesting solution since it can be used in a screen-printing process and as a backing for the transducer. This paper describes the fabrication process to obtain such materials, presents microstructure analysis as well as functional properties of materials. Modelling is also performed and results are compared to measurements. Finally, transducer issues are addressed through modelling and design of several configurations. The key parameters are identified and their effect on transducer performance is discussed. A comparison with dense materials is performed and results are discussed to highlight in which cases porous piezoceramics can improve transducer performance, and improvements are quantified.
引用
收藏
页码:127 / 139
页数:13
相关论文
共 50 条
  • [21] Novel piezocomposites for ultrasonic transducer applications
    Safari, A
    Danforth, SC
    Panda, RK
    Lous, G
    Cornejo, I
    Kholkine, A
    1998 IEEE ULTRASONICS SYMPOSIUM - PROCEEDINGS, VOLS 1 AND 2, 1998, : 615 - 618
  • [22] ULTRASONIC TRANSDUCER MATERIALS FOR MEDICAL APPLICATIONS
    Hadjicostis, A. N.
    Hottinger, C. F.
    Rosen, J. J.
    Wells, P. N. T.
    FERROELECTRICS, 1984, 60 : 107 - 126
  • [23] Applications of porous ceramics
    Nettleship, I
    ADVANCED CERAMIC MATERIALS: APPLICATIONS OF ADVANCED MATERIALS IN A HIGH-TECH SOCIETY I, 1996, 122-1 : 305 - 324
  • [24] Applications of porous ceramics
    Nettleship, I.
    Key Engineering Materials, 1996, 122-124 : 305 - 324
  • [25] Purification of diatomite powder by acid leaching for use in fabrication of porous ceramics
    San, Osman
    Goren, Remzi
    Ozgur, Cem
    INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 2009, 93 (01) : 6 - 10
  • [26] Fabrication and characterization of SU-8-based capacitive micromachined ultrasonic transducer for airborne applications
    Joseph, Jose
    Singh, Shiv Govind
    Vanjari, Siva Rama Krishna
    JOURNAL OF MICRO-NANOLITHOGRAPHY MEMS AND MOEMS, 2018, 17 (01):
  • [27] Fabrication and Characterization of Porous Diopside/Akermanite Ceramics with Prospective Tissue Engineering Applications
    Nicoara, Adrian Ionut
    Alecu, Andrada Elena
    Balaceanu, Gabriel-Costin
    Puscasu, Eliza Maria
    Vasile, Bogdan Stefan
    Trusca, Roxana
    MATERIALS, 2023, 16 (16)
  • [28] Fabrication and characterization of micro-machined ultrasonic transducer
    Jia, CP
    Wiemer, M
    Zichner, N
    Otto, T
    Gessner, T
    2005 IEEE Ultrasonics Symposium, Vols 1-4, 2005, : 1945 - 1947
  • [29] Design and Fabrication of a 1.75D Ultrasonic Transducer
    Lee, Wonseok
    Roh, Yongrae
    JOURNAL OF THE ACOUSTICAL SOCIETY OF KOREA, 2013, 32 (03): : 199 - 207
  • [30] Design and fabrication of a 20 MHz high frequency linear array ultrasonic transducer for medical use
    Lee, Wonseok
    Roh, Yongrae
    JOURNAL OF THE ACOUSTICAL SOCIETY OF KOREA, 2016, 35 (06): : 466 - 472