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Application of digital-image-correlation techniques in analysing cracked cylindrical pipes

机译:数字图像相关技术在破裂圆柱管分析中的应用

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Cracks induced by external excitation on a material that has defects may generate the stress concentration phenomenon. The stress concentration behaviour causes local buckling, which will induce the damage of the members made of this material. Thus, developing techniques to monitor the strain variation of a cracked member is an important study. The traditional technique (such as strain gauge) can only measure the average strain of a region. The strain variation within this region cannot be determined. Therefore, it cannot sufficiently reflect the mechanical behaviour surrounding the crack. The Digital image correlation technique recently developed is an image identification technique to be applied for measuring the object deformation. This technique is capable of correlating the digital images of an object before and after deformation and further determining the displacement and strain field of an object based on the corresponding position on the image. In this work, this technique is applied to analyse the mechanics of a cylindrical pipe experiencing crack destruction. The fixing device is used to avoid shaking the specimen during the pressurizing process. The image capture instruments are fixed on the stable frame to measure the deformation of specimen accurately. Through the cylindrical pipe cracking test, the capacity of the digital image correlation technique for surveying the strain variation in a tiny region is validated. Then, the experimental results obtained using the digital image correlation analysis is used to demonstrate the crack development tendency in defect materials and the stress concentration zone.
机译:由外部激励在具有缺陷的材料上引起的裂纹可能会产生应力集中现象。应力集中行为会引起局部屈曲,这会引起这种材料制成的构件的损坏。因此,开发监测破裂构件的应变变化的技术是一项重要的研究。传统技术(例如应变仪)只能测量区域的平均应变。无法确定该区域内的应变变化。因此,它不能充分反映裂纹周围的机械性能。最近开发的数字图像相关技术是一种图像识别技术,将用于测量物体变形。该技术能够在变形之前和之后使物体的数字图像相关,并基于图像上的相应位置进一步确定物体的位移和应变场。在这项工作中,该技术被用于分析经历裂纹破坏的圆柱管的力学。固定装置用于避免在加压过程中晃动样品。图像采集仪器固定在稳定的框架上,以准确测量样品的变形。通过圆柱管破裂测试,验证了数字图像相关技术在微小区域中测量应变变化的能力。然后,利用数字图像相关分析获得的实验结果被用来证明缺陷材料和应力集中区的裂纹发展趋势。

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