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A 2D Ultrasonic Array design incorporating Hexagonal-shaped Elements and Triangular-cut Piezocomposite Substructure for NDE applications

机译:用于NDE应用的六边形元件和三角切割压电复合材料结构的2D超声阵列设计

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Contemporary 2D Ultrasonic arrays suffer from low SNR and limited steering capabilities. Yet, there is a great desire in the industry to increase the operational frequency, in order to enhance their volumetric imaging resolution. State-of-the art arrays use an orthogonal matrix of rectangular elements as this is a natural step forward from the conventional 1D array structure. The objective of this work is to evaluate properties of triangular, rather than rectangular ceramic pillars in a 1-3 connectivity piezoelectric composite for application in a hexagonal-element 2D array. A 3MHz prototype device exploiting new hexagonal substructure have been manufactured. Measured mechanical cross-coupling level is -21.9dB between neighbouring hexagonal elements, providing validation of simulation result. Corroboration between measured and FE modelled device behaviour is demonstrated.
机译:现代风格2D超声波阵列遭受低SNR和有限的转向能力。然而,在行业中有一种巨大的愿望来增加运行频率,以提高其体积成像分辨率。最先进的阵列使用正交矩阵的矩形元件,因为这是从传统的1D阵列结构前进的自然步骤。这项工作的目的是评估三角形,而不是矩形陶瓷柱的特性,而不是矩形陶瓷支柱,用于在六边形元件2D阵列中应用。已经制造了一种利用新六边形子结构的3MHz原型设备。测量的机械交叉耦合水平为相邻六边形元素之间的21.9dB,提供仿真结果的验证。证明了测量和FE模型设备行为之间的粗化。

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