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Initial Geometric Imperfection Measurement and Characterization of Cold-Formed Steel C-Section Structural Members with 3D Non-Contact Measurement Techniques

机译:利用3D非接触式测量技术对C型钢冷弯结构件进行初始几何缺陷测量和表征

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Local flange and web imperfections, cross-sectional twist, and global sweep were measured for cold-formed steel C-section structural members (studs and joists) using non-contact measurement methods (photogrammetry and laser scanning) and a manual measurement method (dial gauges mounted on a precision rail). Cold-formed steel members acquire geometric imperfections from manufacturing, shipping, storage and construction, and these imperfections affect axial and flexural capacity. Photogrammetry and a newly constructed laser measurement method are demonstrated to be viable and accurate alternatives to manual measurements, producing 3D point clouds that allow detailed study of imperfections along a member. Measured imperfections provide an accurate geometry representation, which can be used in experimental comparisons and computational modeling. Each measured imperfection shape is characterized as a series of trigonometric functions along the member's length. This format allows researchers to reconstruct the member geometry and to understand the influence of imperfection shape on local, distortional, and global buckling deformations. The imperfection fields measured in this study, as well as past measurements from previous research, are organized with a common format in a new imperfections database hosted by the Cold-Formed Steel Research Consortium for communal access and future study.
机译:使用非接触式测量方法(摄影测量和激光扫描)和手动测量方法(刻度盘)测量冷弯型钢C型截面结构构件(立柱和托梁)的局部凸缘和腹板缺陷,横截面扭曲和整体掠角量规安装在精密导轨上)。冷弯型钢构件在制造,运输,存储和构造过程中会出现几何缺陷,这些缺陷会影响轴向和挠曲能力。摄影测量法和新构建的激光测量方法被证明是手动测量的可行且准确的替代方法,可产生3D点云,从而可以详细研究沿构件的缺陷。测得的缺陷可提供准确的几何图形表示,可用于实验比较和计算建模。每个测量的瑕疵形状的特征是沿着构件长度的一系列三角函数。这种格式使研究人员可以重构构件的几何形状,并了解不完美形状对局部,变形和整体屈曲变形的影响。由冷成型钢研究协会主办的新缺陷数据库中,以通用格式组织了本研究中测量的缺陷领域以及以前研究的过去测量结果,以供公共使用和未来研究之用。

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