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Circular grid pattern based surface strain measurement system for sheet metal forming

机译:基于圆形网格图案的钣金件表面应变测量系统

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摘要

A surface strain measurement system (XJTUSM) for sheet metal forming is developed based on close range industry photogrammetry. A circular grid pattern is electrochemically etched onto the surface of flat sheet metal before forming. As the sheet metal is pressed into a desired shape, these circular grid nodes are deformed into approximate elliptical shapes. Original images are then recorded from different photo stations using a single camera. The three-dimensional (3D) coordinates of these ellipse centers are reconstructed according to image processing technologies, which include noise reduction, adaptive thresholding, sub-pixel edge detection, least-square ellipse fitting, camera calibration, fast matching and reconstruction of grid nodes. Subsequently, a 3D grid generation procedure is performed to build the topology of separate grid nodes and the deformation gradient tensor is calculated. Finally, the surface strains are derived from the deformation gradient tensor and the forming limit diagram (FLD) is thus obtained. To evaluate the accuracy of the novel system, a tensile experiment was carried out, and the high-accuracy surface strain measurement system XJTUDIC was employed for comparison. The surface strains measured by two systems agree well. The XJTUSM system can be used to diagnose production problems, identify critical areas and/or verify the accuracy of numerical modeling.
机译:基于近距离工业摄影测量技术,开发了用于钣金成型的表面应变测量系统(XJTUSM)。在形成之前,将圆形栅格图案电化学蚀刻到平板金属的表面上。当金属板被压制成所需形状时,这些圆形网格节点变形为近似椭圆形。然后使用一台相机从不同的照相站记录原始图像。这些椭圆中心的三维(3D)坐标是根据图像处理技术重建的,这些技术包括降噪,自适应阈值处理,亚像素边缘检测,最小二乘椭圆拟合,相机校准,网格节点的快速匹配和重建。随后,执行3D网格生成过程以构建单独的网格节点的拓扑,并计算变形梯度张量。最后,从变形梯度张量导出表面应变,从而获得成形极限图(FLD)。为了评估该新型系统的准确性,进行了拉伸实验,并使用高精度表面应变测量系统XJTUDIC进行了比较。由两个系统测量的表面应变非常吻合。 XJTUSM系统可用于诊断生产问题,识别关键区域和/或验证数值建模的准确性。

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