Attenuation of Ultrasonic Guided Wave on Buried Illumination Pillar

Hiroyuki Nakamoto, Akiko Kaji
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Abstract

This paper aims the development of a nondestructive inspection system for illumination pillars. The system detects the corrosion of a pillar by a screening inspection with a guided wave. Corrosion mainly occurs in the root part of the pillar in the ground. Small corrosion scatters and attenuates the guided wave. The soil around the root part of the pillar also attenuates the guided wave. Accurate detection of the corrosion needs to estimate the attenuation of the guided wave by the soil. This paper derives an attenuation variable from a model of a pillar partially buried in the soil. Experiments using electromagnetic acoustic transducers demonstrate guided wave propagation. We verify the attenuation variable of T(0,1) and L(0,2) modes from the experimental data.
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埋地照明柱上超声导波的衰减
本文旨在开发一种照明灯柱无损检测系统。该系统通过导波筛检检测矿柱的腐蚀情况。腐蚀主要发生在地下矿柱根部。小腐蚀使导波散射和衰减。柱子根部周围的土壤也会使导波衰减。准确的腐蚀检测需要估计导波在土壤中的衰减。本文从部分埋于土中的矿柱模型中导出了衰减变量。利用电磁声换能器的实验证明了导波的传播。我们从实验数据中验证了T(0,1)和L(0,2)模式的衰减变量。
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