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Strain measurement and determining coefficient of plastic anisotropy using digital image correlation (DIC)

机译:使用数字图像相关性的塑性各向异性的应变测量和确定系数(DIC)

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The deformation and strain measurements have always been one of the main issues in structural engineering. Measuring displacements accurately without damaging structures are an important aim in experimental analysis. For an example, the existing structures need to be evaluated whether they are still fit for purposes or not. To assess complex structures, we need an acceptable and enough amount of data Current strain measurement technologies are not capable of evaluating compounded structures. This paper investigates on an alternative method that uses digital images to provide a full displacement and strain field called Digital Image Correlation (DIC); This technique compares the digital images taken from digital cameras, before and after deformation. We also calculated the coefficient of plastic anisotropy. An aluminium 1050 specimen was loaded in tension according to ASTM E8 testing method while the Sony camcorder captured the video of the specimen being loaded. Once the video was captured, the images were snapshot from video strip using a built-in function of the camera. After that, the images were processed using the Matlab software. The results determined by the extensometer and the optical strain measurement method were compared to each other. This comparison shows that if the test's setup could be configured in a good way, the error will be less than 2%.
机译:变形和应变测量始终是结构工程中的主要问题之一。无需损坏结构的准确测量位移是实验分析中的重要目标。例如,需要评估现有结构是否仍然适合目的。为了评估复杂结构,我们需要可接受的,并且足够量的数据电流应变测量技术不能评估复合结构。本文研究了一种使用数字图像来提供称为数字图像相关(DIC)的完整位移和应变字段的替代方法;该技术比较了从数码相机,变形之前和之后的数字图像。我们还计算了塑料各向异性系数。根据ASTM E8测试方法,铝合金1050样品加载张力,而索尼摄像机捕获了被装配的样本的视频。捕获视频后,图像使用相机的内置功能从视频带中的快照。之后,使用MATLAB软件处理图像。通过伸展计和光学应变测量方法确定的结果彼此比较。此比较表明,如果测试的设置可以以好方法配置,则错误将小于2%。

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