首页> 外文期刊>The Journal of the Acoustical Society of America >Single-crystal lead magnesium niobate-lead titanate (PMN/PT) as a broadband high power transduction material
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Single-crystal lead magnesium niobate-lead titanate (PMN/PT) as a broadband high power transduction material

机译:铌酸铅镁单晶钛酸铅(PMN / PT)作为宽带大功率转换材料

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摘要

Two experimental underwater acoustic projectors, a tonpilz array, and a cylindrical line array, were built with single crystal, lead magnesium niobate/lead titanate, a piezoelectric transduction material possessing a large electromechanical coupling factor (k(33)=0.9). The mechanical quality factor, Q(m), and the effective coupling factor, k(eff), determine the frequency band over which high power can be transmitted; k(eff) cannot be greater than the piezoelectric material value, and so a high material coupling factor is a requisite for broadband operation. Stansfield's bandwidth criteria are used to calculate the optimum Q(m) value, Q(opt)similar to 1.2 (1-k(eff)(2))(1/2)/k(eff). The results for the tonpilz projector exhibited k(eff)=0.730, Q(m)=1.17 (very near optimal), and a fractional bandwidth of 0.93. For the cylindrical transducer array, k(eff)=0.867, Q(m)=0.91 (larger than the optimum value, 0.7), and the bandwidth was 1.16. Although the measured bandwidths were less than optimal, they were accurately predicted by the theory, despite the highly simplified nature of the Van Dyke equivalent circuit, on which the theory is based.
机译:用单晶铌酸铅镁/钛酸铅(一种具有较大机电耦合系数(k(33)= 0.9)的压电换能材料)制造了两个实验性水下声投射器,分别为tonpilz阵列和圆柱线阵列。机械品质因数Q(m)和有效耦合因数k(eff)决定了可以传输大功率的频带; k(eff)不能大于压电材料的值,因此高的材料耦合系数是宽带工作的必要条件。斯坦斯菲尔德的带宽标准用于计算最佳Q(m)值Q(opt)类似于1.2(1-k(eff)(2))(1/2)/ k(eff)。 tonpilz投影机的结果显示k(eff)= 0.730,Q(m)= 1.17(非常接近最佳值),分数带宽为0.93。对于圆柱形换能器阵列,k(eff)= 0.867,Q(m)= 0.91(大于最佳值0.7),带宽为1.16。尽管所测量的带宽不是最佳带宽,但尽管理论所基于的Van Dyke等效电路具有极为简化的性质,但该理论仍可通过该理论准确预测它们。

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