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首页> 外文期刊>CERAMICS INTERNATIONAL >Fabrication and properties of the thickness mode ultrasonic transducer based on 0.15Pb(Mg1/3Nb2/3)O-3-0.38PbHfO(3)-0.47PbTiO(3) piezoelectric ceramics
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Fabrication and properties of the thickness mode ultrasonic transducer based on 0.15Pb(Mg1/3Nb2/3)O-3-0.38PbHfO(3)-0.47PbTiO(3) piezoelectric ceramics

机译:基于0.15pb(mg1 / 3nb2 / 3)o-3-0.38pbhfo(3)-0.47pbtio(3)压电陶瓷的厚度模式超声换能器的制造和性能

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摘要

In this paper, the 0.15Pb(Mg1/3Nb2/3)O-3-0.38PbHfO(3)-0.47PbTiO(3) ternary piezoelectric ceramic fabricated by the partial oxalate method that exhibits superior electrical properties (d(33) = 447 pC/N and k(t) = 56.9%) and excellent thermal stability of the piezoelectric properties below T-C was studied. The newly discovered piezoelectric ceramic had a high Curie temperature (T-m = 297 degrees C), this feature was used to fabricate a novel single-element ultrasonic transducer whose center frequency was 2.15 MHz, with a - 6 dB bandwidth of up to 79.07%, and a sensitivity that reached -31.75 dB. The result of the experiment agreed well with that of PiezoCAD software based on the KLM model. This transducer's outstanding thermal stability below T-C can be widely used in non-destructive evaluation. At the same time, we measured the sound field distribution of the ultrasonic transducer. The focal length was measured approximately 47 mm. An obvious main lobe was clearly seen from the z-x scan. The power was measured as 17.98 mW; the beam width of -3dB was 3.5 x 3.6 mm; and the area was 9.83 mm(2) according to the FDA and IEC standards.
机译:本文,0.15pb(Mg1 / 3nb2 / 3)O-3-0.38pbhfo(3)-0.47pbtio(3)三元压电陶瓷由表现出卓越的电性能的部分草酸方法(D(33)= 447研究了PC / N和K(t)= 56.9%,研究了TC以下压电性能的优异热稳定性。新发现的压电陶瓷具有高居里温度(TM = 297摄氏度),该特征用于制造新的单元素超声换能器,其中心频率为2.15 MHz,具有-6 dB带宽,高达79.07%,和达到-31.75 dB的敏感性。实验结果与基于KLM模型的压电软件相同。该换能器在T-C以下的出色热稳定性可广泛应用于非破坏性评估。同时,我们测量了超声波换能器的声场分布。测量焦距约47毫米。从Z-X扫描清楚地看到明显的主叶。电力被测量为17.98兆瓦; -3dB的光束宽度为3.5 x 3.6 mm;根据FDA和IEC标准,该地区为9.83毫米(2)(2)。

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