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Investigation of strain measurements in (curved) wide plate specimens using digital image correlation and finite element analysis

机译:利用数字图像相关和有限元分析研究(弯曲)宽板试样的应变测量

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摘要

Some pipelines face global plastic straining due to the nature of their installation process or harsh environmental conditions during operation. The ability of the girth welds to withstand these plastic strains is often evaluated on the basis of wide plate tests. Key for the validity of these tests is a representative measurement of remote strain, mostly obtained by linear variable differential transformers and/or strain gauges. The outcome of the remote strain measurement depends on the specimen geometry and the position of these sensors. In an attempt to investigate a specific geometric design of wide plate specimens and to find appropriate remote strain sensor positions, the authors have performed a series of tension tests on medium-sized wide plate specimens, supported by digital image correlation strain measurements. In addition, finite element simulations have been performed to evaluate whether the experimental observations can be extrapolated to a wider range of conditions. The results indicate that the strain distribution is mostly influenced by the weld strength mismatch, which governs the lateral restraint. For all experiments and simulations, nevertheless, the strain field was highly uniform in an identified zone, resulting in simple guidelines regarding specimen geometry and sensor positioning.
机译:由于某些管道的安装过程或操作过程中恶劣的环境条件,它们会面临整体塑料应力。环缝焊缝承受这些塑性应变的能力通常基于宽板试验来评估。这些测试的有效性的关键是远程应变的代表性测量,该测量主要是通过线性可变差动变压器和/或应变仪获得的。远程应变测量的结果取决于样品的几何形状和这些传感器的位置。为了研究宽板样本的特定几何设计并找到合适的远程应变传感器位置,作者在数字图像相关应变测量的支持下对中型宽板样本进行了一系列拉伸测试。此外,已经进行了有限元模拟,以评估是否可以将实验观察推算到更广泛的条件下。结果表明,应变分布主要受焊接强度不匹配的影响,该不匹配决定了横向约束。但是,对于所有实验和模拟,应变场在一个确定的区域内都是高度均匀的,从而产生了有关试样几何形状和传感器位置的简单准则。

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