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3D analytical investigation on the overall pullout behavior of grouted anchorages in presence of shear failure of grout

机译:3D灌浆剪切失效存在下灌浆锚固总体拉出行为的分析研究

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摘要

Grouted anchorages have been extensively applied in practical projects like reinforcing steel anchors embedded into concrete or rock through cement grouting. The pullout behavior of the anchorages is generally a three-dimensional (3D) problem, whereas most existing analytical studies are based on a one-dimensional (1D) assumption such that the overall behavior of the anchorages has not been fully understood. In this paper, a 3D analytical solution is presented that is capable of predicting the overall pullout behavior of grouted anchorages in the presence of shear failure of grout, where the shear behavior of the grout is simulated by a bilinear shear stress-displacement relation. 3D closed-form solutions are deduced for the displacement field, the stress field and the load-displacement curve of both long and short anchorages for various loading phases. The analytical solution is validated by comparing the analytical results with the experimental and numerical results from the literature. The load-displacement characteristics of long and short anchorages are elaborated with the influence of the anchorage length on the load-displacement response evaluated. Comparative study is conducted to investigate the difference between 1D and 3D solutions on the global load-displacement response and the local shear stress distribution. The results show that there is no significant difference between 1D and 3D solutions in the case of very short anchorages. However, Poisson's effect plays an increasing role in the stress transfer as the anchorage length increases, leading to an increasing discrepancy between the two solutions, which demonstrates that neglecting Poisson's effect has an impact on the performance prediction of grouted anchorages. The present 3D analytical solution, with Poisson's effect taken into consideration compared to 1D solution, can be expected to be better capable of evaluating the overall pullout behavior of grouted anchorages, especially for long anchorages. While the present study is conducted with reference to grouted anchorages, the analytical solution remains applicable to similar bonded structures such as reinforced composites and cylindrical adhesive joints.
机译:采用灌装锚固已经广泛应用于加强钢锚,嵌入混凝土或岩石通过水泥灌浆。锚固的拉出行为通常是三维(3D)问题,而大多数现有的分析研究基于一维(1D)假设,使得锚固的整体行为尚未得到完全理解。在本文中,提出了一种能够在灌浆剪切失效存在下预测灌浆锚固的整体拉出行为的3D分析解决方案,其中通过双线性剪切应力 - 位移关系模拟灌浆的剪切行为。推导3D闭合溶液用于位移场,应力场和用于各种负载阶段的长锚固件的应力场和负载 - 位移曲线。通过将分析结果与文献的实验和数值结果进行比较来验证分析解决方案。利用锚固长度对评估的负载 - 位移响应的影响,阐述了长和短锚固的负载 - 位移特性。进行比较研究,以研究在全球负载 - 位移响应和局部剪切应力分布之间的1D和3D解决方案之间的差异。结果表明,在非常短的锚固情况下,1D和3D解决方案之间没有显着差异。然而,随着锚地长度的增加,泊松的效果在应力转移中发挥着越来越大的作用,导致两种解决方案之间的差异越来越大,这表明忽略了泊松的效果对灌浆锚固的性能预测产生了影响。本发明的3D分析解决方案与1D解决方案相比考虑的泊松效果,可以更好地评估灌浆锚固的整体拉出行为,特别是对于长锚。虽然参考灌浆锚固进行本研究,但是分析溶液保持适用于类似的粘合结构,例如增强复合材料和圆柱形粘合剂接头。

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