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Surface flatness and distortion inspection of precast concrete elements using laser scanning technology

机译:使用激光扫描技术检查预制混凝土构件的表面平整度和变形

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摘要

Precast concrete elements are widely used in the construction of buildings and civil infrastructures as they provide higher construction quality and requires less construction time. However, any abnormalities in precast concrete surfaces such as non-flatness or distortion, can influence the erection of the elements as well as the functional performance of the connections between elements. Thus, it is important to undertake surface flatness and distortion inspection (SFDI) on precast concrete elements before their delivery to the construction sites. The traditional methods of SFDI which are conducted manually or by contact-type devices are, however, time-consuming, labor-intensive and error-prone. To tackle these problems, this study proposes techniques for SFDI of precast concrete elements using laser scanning technology. The proposed techniques estimate the FF number to evaluate the surface flatness, and estimate three different measurements, warping, bowing, and differential elevation between adjacent elements, to evaluate the surface distortion. The proposed techniques were validated by experiments on four small scale test specimens manufactured by a 3D printer. The measured surface flatness and distortion from the laser scanned data were compared to the actual ones, which were obtained from the designed surface geometries of the specimens. The validation experiments show that the proposed techniques can evaluate the surface flatness and distortion effectively and accurately. Furthermore, scanning experiments on two actual precast concrete bridge deck panels were conducted and the proposed techniques were successfully applied to the scanned data of the panels.
机译:预制混凝土元件被广泛用于建筑物和民用基础设施的建设中,因为它们可提供更高的施工质量且所需的建设时间更少。但是,预制混凝土表面的任何异常(例如不平整或变形)都可能影响元件的安装以及元件之间连接的功能性能。因此,重要的是在预制混凝土构件交付施工现场之前对其进行表面平整度和变形检查(SFDI)。然而,手动或通过接触式装置进行的SFDI的传统方法费时,费力且容易出错。为了解决这些问题,本研究提出了使用激光扫描技术对预制混凝土构件进行SFDI的技术。所提出的技术估计FF数以评估表面平整度,并估计三个不同的测量值(翘曲,弯曲和相邻元素之间的差异高程)以评估表面变形。通过对3D打印机制造的四个小规模试样的实验验证了提出的技术。从激光扫描数据测得的表面平整度和变形与实际的相比,后者是从样品的设计表面几何形状获得的。验证实验表明,所提出的技术可以有效,准确地评估表面平整度和变形。此外,在两个实际的预制混凝土桥面板上进行了扫描实验,并将所提出的技术成功应用于面板的扫描数据。

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