• DocumentCode
    3363766
  • Title

    A study on airborne piezoelectric transducer for geological simulation

  • Author

    Sheng Zhou ; Chao Chen

  • Author_Institution
    State Key Lab. of Mech. & Control of Mech. Struct., Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
  • fYear
    2012
  • fDate
    23-25 Nov. 2012
  • Firstpage
    113
  • Lastpage
    116
  • Abstract
    In this work, we report a new application of airborne piezoelectric transducer for ultrasonic seismic physical modeling technology. In the lab, we can obtain the internal structure of geologic model by analyzing the received echo signals which were launched by airborne ultrasonic transducer. Here we use different piezoelectric materials and matching layers to design and manufacture airborne transducers. The piezoelectric materials are ferroelectric single crystals (PMNT), 1-3 composites with volume fraction of 60% and 15% respectively. Using membranes as matching layers can improve more than 20 dB in two-way insertion loss which is a good solution to acoustic match of airborne transducers. The experiments show that the airborne transducer made with 1-3 composites with volume fraction of 60% has the best bandwidth and sensitivity compared to the other two. The characteristics of its high sensitivity and broadband are very suitable for airborne transducers in geological simulation field.
  • Keywords
    composite materials; ferroelectric devices; ferroelectric materials; geophysical equipment; lead compounds; membranes; piezoelectric materials; piezoelectric transducers; seismology; ultrasonic transducers; 1-3 composites; PMNT; Pb(Mg0.33Nb0.67)0.65Ti0.35O3-PZT; airborne piezoelectric transducer design; airborne piezoelectric transducer manufacture; airborne ultrasonic transducer; ferroelectric single crystals; geologic model internal structure; geological simulation; matching layers; membranes; piezoelectric materials; received echo signals; two-way insertion loss; ultrasonic seismic physical modeling technology; volume fraction; Acoustics; Atmospheric modeling; Bandwidth; Piezoelectric materials; Piezoelectric transducers; Sensitivity; Airborne applications; Geological simulation; Piezoelectric transducer;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Piezoelectricity, Acoustic Waves and Device Applications (SPAWDA), 2012 Symposium on
  • Conference_Location
    Shanghai
  • Print_ISBN
    978-1-4673-4814-0
  • Type

    conf

  • DOI
    10.1109/SPAWDA.2012.6464049
  • Filename
    6464049