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Strain measurements and analyses around the bolt holes of structural steel plate connections using full-field measurements

机译:使用全场测量进行结构钢板连接螺栓孔周围的应变测量和分析

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The mechanical response of cover-plates connections combines various phenomena such as the contact evolution between bolts and holes, the elastic-plastic behavior of the constitutive materials and the effect of large displacements occurring in some cases. The interaction between the holes in the plates needs to be evaluated regarding various configurations of joint and hole positions, especially to take into account the localization of failure around bolts. The different failure modes such as net section fracture, gross section yielding, shear out and bearing, are difficult to predict because they combine local compression under bolt and shear at loaded end distance of the plate. Numerical models show the complexity of stress distribution around the holes depending on the connection configurations. The main originality of this work is to rely on a full-field measurement technique, namely the grid method, to estimate the strain fields that really occur in the specimens under test. Compared to digital image correlation, this technique features a better compromise between strain resolution and spatial resolution. This enables us to analyze in details the strain distribution on the plates with various configurations for the bolts and holes. Both the elastic and the plastic regimes are analyzed. This approach enables us to understand the evolution of the failure zones regarding the bearing mode. A numerical simulation is finally performed and obtained results are compared with their experimental counterparts. Differences observed highlight the relevance of full-field measurements in the current context of high strain gradients. (C) 2016 Elsevier Ltd. All rights reserved.
机译:盖板连接的机械响应综合了各种现象,例如螺栓和孔之间的接触演变,本构材料的弹塑性行为以及在某些情况下发生的大位移的影响。需要针对接头和孔位置的各种配置评估板中孔之间的相互作用,特别是要考虑到螺栓周围故障的定位。很难预测不同的破坏模式,例如净截面断裂,总截面屈服,剪力和承载力,因为它们结合了在螺栓作用下的局部压缩和板在载荷端距离处的剪切力。数值模型显示了取决于连接配置的孔周围应力分布的复杂性。这项工作的主要创意是依靠一种全场测量技术,即网格法,来估计被测样品中实际出现的应变场。与数字图像相关性相比,该技术在应变分辨率和空间分辨率之间具有更好的折衷。这使我们能够详细分析螺栓和孔具有各种配置的板上的应变分布。分析了弹性和塑性状态。这种方法使我们能够了解有关轴承模式的失效区域的演变。最后进行数值模拟,并将获得的结果与实验结果进行比较。观察到的差异突出了当前高应变梯度情况下全场测量的相关性。 (C)2016 Elsevier Ltd.保留所有权利。

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