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Use of 3D laser scanning on evaluating reduction of initial geometric imperfection of steel column with pre-stressed CFRP

机译:使用3D激光扫描评估通过预应力CFRP减少钢柱的初始几何缺陷

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摘要

A novel method for obtaining initial geometric imperfections by three-dimensional (3D) laser scanning is developed to study a discovery of reducing initial geometric imperfections using pre-stressed (PS) carbon fiber reinforced polymer (CFRP) strips. New methodologies for establishing digital geometric models of specimens based on point cloud data are presented. The initial deflections along the weak axes of two series of specimens with I-shaped section, 10 specimens in total, are obtained by these methods. It is found that the initial deflections along the weak axes of the steel columns are reduced by the PS CFRPs. Then, the force method is implemented to establish a theoretical model for steel columns strengthened with PS CFRPs. The model illustrates the mechanism for decreasing geometric imperfections in a self-balanced process. Corresponding equations based on the theoretical model are proposed to explain the reduction of the initial deflections. Finally, the model is verified by comparing its predictions to the measurement results.
机译:开发了一种通过三维(3D)激光扫描获得初始几何缺陷的新颖方法,以研究使用预应力(PS)碳纤维增强聚合物(CFRP)条减少初始几何缺陷的发现。提出了基于点云数据建立标本数字几何模型的新方法。通过这些方法,可以得到两个截面为I形的系列试样沿弱轴的初始挠度,共10个试样。发现通过PS CFRP可以减小沿钢柱弱轴的初始挠度。然后,采用力法建立了PS CFRP加固钢柱的理论模型。该模型说明了在自平衡过程中减少几何缺陷的机制。提出了基于理论模型的相应方程式来解释初始挠度的减小。最后,通过将模型的预测结果与测量结果进行比较来验证模型。

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