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首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >Design of an Orthotropic Piezoelectric Composite Material Phased Array Transducer for Damage Detection in a Concrete Structure
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Design of an Orthotropic Piezoelectric Composite Material Phased Array Transducer for Damage Detection in a Concrete Structure

机译:用于混凝土结构损伤检测的正交压电复合材料相控阵换能器的设计

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摘要

In order to verify the feasibility and effectiveness of the sensor used in complex concrete materials, an innovative application of ultrasonic phased array detection for a concrete structure was investigated. Comparing with the traditional piezoelectric composites, orthotropic piezoelectric composite material (OPCM) can be used as transducers in damage detection show clear advantages because of their high sensitivity and directivity along the polarization direction. A low frequency ultrasonic phased array transducer consisting of 16 OPCM elements is studied. The optimal array parameters, such as the phased array element interval, the array element width, and number of elements, are obtained by studying the total displacement changes as various parameters change at the focus point in the concrete structure. This configuration allowed the variation and control of the wave field directivity in the concrete structure during the measurements. The measurements were taken on concrete specimens using a precise time-delay device. The experimental measurements were compared to theoretical calculations to investigate the influence of different array element parameters. The results show that an OPCM phased array transducer can be used to detect damage in a concrete block.
机译:为了验证复杂混凝土材料中使用的传感器的可行性和有效性,研究了对混凝土结构的超声波相位阵列检测的创新应用。与传统的压电复合材料相比,正向压电复合材料(OPCM)可用作损坏检测中的换能器,显示出明显的优点,因为它们沿偏振方向的高灵敏度和方向性。研究了由16个OPCM元件组成的低频超声相位阵列换能器。通过在混凝土结构中的焦点处改变的各种参数改变,通过研究总位移变化来获得最佳阵列参数,例如相位阵列元素间隔,阵列元素宽度和元件数量。该配置在测量期间允许在混凝土结构中的波场方向性的变化和控制。使用精确的时间延迟装置在混凝土试样上拍摄测量。将实验测量与理论计算进行比较,以研究不同阵列元素参数的影响。结果表明,OPCM相控阵换能器可用于检测混凝土块中的损坏。

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