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首页> 外文期刊>Journal of Materials Research and Technology >Cement/epoxy-based embedded ultrasonic transducers for concrete structure applications
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Cement/epoxy-based embedded ultrasonic transducers for concrete structure applications

机译:用于混凝土结构应用的水泥/环氧基嵌入式超声换能器

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Embedded ultrasonic technology has the potential for a wide range of applications in structural health monitoring. In this study, embedded ultrasonic transducers were prepared with cement powder/epoxy resin composites as the matrix of each structural layer. It was found that the incorporation of cement powder has a toughening effect on epoxy resin, which results in the composite material having stronger deformability and higher strength. The packaging layer material was also used for the matching layer, which effectively simplified the transducer fabrication process;the acoustic impedance of the matching layer was close to the acoustic impedance of hardened cement. When the thickness of the backing layer was 5 mm, the transducer had the best sensitivity or resolution. After shielding, the transducer embedded in concrete was effectively protected against external noise and interference. The application of the transducer for monitoring the early hydration and hardening process of concrete showed that the acquired ultrasonic signal had high stability, repeatability, and recognizability. Embedding the transducer in concrete did not decrease the bearing capacity of concrete. The developed transducer can be used as a “smart aggregate” for large-scale, networked, and low-cost active ultrasonic monitoring of concrete buildings.
机译:嵌入式超声波技术有可能在结构健康监测方面具有广泛的应用。在本研究中,用水泥粉末/环氧树脂复合材料制备嵌入式超声换能器作为每个结构层的基质。结果发现,水泥粉的掺入对环氧树脂具有增韧效果,这导致具有较强可变形性和更高强度的复合材料。包装层材料也用于匹配层,其有效地简化了换能器制造过程;匹配层的声阻抗接近硬化水泥的声阻抗。当背衬层的厚度为5mm时,换能器具有最佳的灵敏度或分辨率。屏蔽后,嵌入混凝土中的换能器有效地防止外部噪声和干扰。换能器用于监测混凝土早期水合和硬化过程的应用表明,所获得的超声信号具有高稳定性,可重复性和可识别性。将换能器嵌入混凝土中没有降低混凝土的承载力。开发的换能器可用作大规模,网络和低成本主动超声波监测的“智能聚集体”。

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