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Development of a Laser-Based Geometric Imperfection Measurement Platform with Application to Cold-Formed Steel Construction

机译:基于激光的几何缺陷测量平台的开发及其在冷弯型钢结构中的应用

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Geometric imperfections play an important role in the strength and behavior of thinwalled metal parts such as those commonly used in cold-formed steel construction. The objective of this paper is to detail a newly developed imperfection measurement platform, where the full-three dimensional (3D) imperfect geometry of a cold-formed steel member can be measured and reconstructed with reasonably high throughput and sufficient accuracy to explore all relevant imperfections. The measurement platform is composed of a two-dimensional laser sensor mounted on rotary and linear stages. Specimens are placed within a rotary ring and along a reference beam. The linear stage provides a means to scan the length of the specimen and the rotary stage a means to scan from any angle. Control of the custom linear and rotary stages are detailed in the paper, and corresponding control accuracies are studied. A procedure for registering the individual scans into the complete 3D model reconstruction (point cloud) is provided by specific calibration tests, from which rotation and translation quantities can be found to transform surfaces measured in local coordinates to a universal global coordinate system. A variety of different imperfection quantities, from basic dimensions and out-of-plane deviations to more advanced spectral and modalbased imperfection magnitudes may be rapidly processed from the 3D model. Accurate understanding of geometric imperfections is critical to the long-term success of analysis-based design paradigms for cold-formed steel constructions. The apparatus detailed herein will be used to provide a broad suite of imperfection information to assist in these new efforts.
机译:几何缺陷在薄壁金属零件(例如,冷弯钢结构中常用的金属零件)的强度和性能中起着重要作用。本文的目的是详细介绍一个新开发的缺陷测量平台,在该平台上,可以以合理的高通量和足够的精度来测量和重建冷弯型钢构件的三维(3D)缺陷几何形状,以探索所有相关的缺陷。测量平台由安装在旋转和线性平台上的二维激光传感器组成。标本放置在旋转环内并沿参考光束放置。线性平台提供了一种扫描样品长度的方法,而旋转平台则提供了从任何角度进行扫描的方法。本文详细介绍了自定义线性和旋转级的控制,并研究了相应的控制精度。通过特定的校准测试,可以提供将各个扫描记录到完整的3D模型重建中的过程(点云),从中可以找到旋转和平移量,以将在局部坐标中测量的曲面转换为通用全局坐标系。从基本尺寸和平面外偏差到更高级的基于光谱和模态的缺陷量,可以从3D模型中快速处理各种不同的缺陷量。对几何缺陷的正确理解对于冷弯钢结构基于分析的设计范例的长期成功至关重要。本文详述的设备将用于提供广泛的缺陷信息套件,以帮助进行这些新的工作。

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