Tokizane Yu, Yamaguchi Takayoshi, Minamikawa Takeo, Hase Eiji, Yamaguchi Kenzo, Suzuki Akihiro, Ueda Takao, Yasui Takeshi
Opt Express. 2022 Jan 31;30(3):4392-4401. doi: 10.1364/OE.449092.
Nondestructive testing of concrete materials is essential in civil engineering to maintain social infrastructure such as buildings or bridges. In this study, we constructed an ultralow-frequency, ultranarrow-bandwidth, coherent terahertz (THz) imaging system based on THz time-domain spectroscopy (THz-TDS). Based on its ultralow-frequency-localized THz wave and coherent detection, the present system achieved a wide dynamic range of THz power over 100 dB at 0.046 THz, which is appropriate to measure the mortar material. The achieved dynamic range of the THz power was 59 dB larger than that of a commercialized THz-TDS system and 49 dB larger than that of an ultralow-frequency noncoherent THz imaging system equipped with a high-power electric THz source. Ultimately, the proposed system could visualize the inner structure of a mortar sample with a thickness of 10 mm, and the present system can investigate a mortar sample with a thickness of over 130 mm. The proposed method is an attractive tool for non-destructive testing of thick concrete structures characterized by non-invasiveness and non-contact remoteness.
混凝土材料的无损检测在土木工程中对于维护诸如建筑物或桥梁等社会基础设施至关重要。在本研究中,我们基于太赫兹时域光谱技术(THz-TDS)构建了一个超低频、超窄带宽的相干太赫兹(THz)成像系统。基于其超低频局域太赫兹波和相干检测,本系统在0.046太赫兹频率下实现了超过100分贝的太赫兹功率宽动态范围,这适合于测量砂浆材料。所实现的太赫兹功率动态范围比商业化太赫兹时域光谱系统大59分贝,比配备高功率电太赫兹源的超低频非相干太赫兹成像系统大49分贝。最终,所提出的系统能够可视化厚度为10毫米的砂浆样品的内部结构,并且本系统能够检测厚度超过130毫米的砂浆样品。所提出的方法是以非侵入性和非接触远程化为特征的厚混凝土结构无损检测的一种有吸引力的工具。