Nie Hailiang, Hao Fengdan, Wang Litao, Guo Qiang, Chen Hongda, Ren Junjie, Wang Ke, Dang Wei, Liang Xiaobin, Ma Weifeng
Institute of Safety Assessment and Integrity, State Key Laboratory for Performance and Structure Safety of Petroleum Tubular Goods and Equipment Materials, Tubular Goods Research Center of CNPC, Xi'an 710077, China.
China Promotion Association for Special Equipment Safety and Energy-Saving, Beijing 100029, China.
ACS Omega. 2023 Jul 20;8(30):27323-27332. doi: 10.1021/acsomega.3c02701. eCollection 2023 Aug 1.
At present, polyethylene pipeline is widely used in urban gas projects, but a relatively mature and reliable nondestructive testing technology has not been formed. Therefore, it is urgent to develop a new nondestructive testing technology to meet the increasing demand for inspection of non-metallic pipes. The terahertz testing technology and related equipment have played an increasingly important role in the nondestructive testing of many nonmetallic structures, but they have not been applied to polyethylene (PE) pipes. In this work, terahertz time-domain spectroscopy was used to detect prefabricated defects inside the PE pipe specimens. The results show that the terahertz nondestructive testing technology can be used to detect common defects in nonblack PE pipes with a detection error of less than 10%. Higher-power terahertz devices can detect defects in black PE pipe, while lower-power terahertz devices cannot. Because the black PE pipe contains carbon and has a strong absorption of terahertz waves. The penetration of lower-power terahertz devices to the black PE pipe is not enough, resulting in a low resolution of the imaging. The results of this work may promote the progress of the nondestructive testing technology of nonmetallic pipelines.
目前,聚乙烯管道在城市燃气工程中广泛应用,但尚未形成较为成熟可靠的无损检测技术。因此,迫切需要开发新的无损检测技术以满足对非金属管道检测日益增长的需求。太赫兹检测技术及相关设备在许多非金属结构的无损检测中发挥着越来越重要的作用,但尚未应用于聚乙烯(PE)管道。在本工作中,采用太赫兹时域光谱法检测PE管试件内部预制缺陷。结果表明,太赫兹无损检测技术可用于检测非黑色PE管中的常见缺陷,检测误差小于10%。高功率太赫兹设备可检测黑色PE管中的缺陷,而低功率太赫兹设备则不能。因为黑色PE管含碳,对太赫兹波有较强吸收。低功率太赫兹设备对黑色PE管的穿透不足,导致成像分辨率低。本工作结果可能推动非金属管道无损检测技术的进步。