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Use of digital image correlation technique in full-scale testing of prestressed concrete structures

机译:数字图像相关技术在预应力混凝土结构全面测试中的应用

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This paper reports the advantages and limitations of the digital image correlation (DIC)-based non-contact measurement technique through full-scale testing of prestressed concrete (PC) structures. Specifically, two ultimate load tests were conducted on a full-scale pre-stressed I-shaped beam and measurements were collected from both conventional instruments (displacement transducers) and a pair of high definition cameras. Stereographic images were processed using the DIC technique to obtain full field 3-D displacement (and strain) fields. The results were compared with those from conventional instruments. It was observed that the DIC technique could provide very accurate and detailed information, which is not possible to obtain using conventional techniques, including the in-plane and out-of-plane strains and their spatial variations, and the locations of high tensile and compressive strains which at later stages of loading result in cracking or crushing of concrete. Nevertheless, certain limitations of the DIC technique exist when used in testing of concrete structures such as the sensitivity to external light sources and preparation of the measurement surface, loss of data points after spalling of cover concrete, and the inability of the used algorithm to identify cracks and report crack widths. Currently, research is being conducted to address these limitations. Although providing useful information on the pros and cons of the DIC-based non-contact measurements for PC structures, it is noted that the results presented in this paper are based on a limited number of tests. Future research is needed to draw general conclusions.
机译:本文通过对预应力混凝土(PC)结构进行全面测试,报告了基于数字图像相关(DIC)的非接触式测量技术的优缺点。具体来说,在一个完整的预应力I形梁上进行了两次极限载荷测试,并从常规仪器(位移传感器)和一对高清摄像机中收集了测量值。使用DIC技术处理立体图像,以获得全场3-D位移(和应变)场。将结果与常规仪器的结果进行比较。据观察,DIC技术可以提供非常准确和详细的信息,这是使用常规技术无法获得的,包括平面内和平面外应变及其空间变化以及高拉伸和压缩位置在加载后期会导致混凝土开裂或压碎的应变。然而,当用于混凝土结构测试时,DIC技术仍然存在某些局限性,例如对外部光源的敏感性和测量表面的准备,覆盖混凝土剥落后数据点的丢失以及所使用的算法无法识别裂缝并报告裂缝宽度。当前,正在进行研究以解决这些限制。尽管提供了有关PC结构基于DIC的非接触式测量的优缺点的有用信息,但需要注意的是,本文中提出的结果是基于有限数量的测试。需要进一步研究得出一般结论。

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