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Rational finite element assisted design of precast steel fibre reinforced concrete pipes

机译:钢纤维混凝土预制管的有限元辅助设计

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摘要

There has been growing interest to introduce steel fibres in precast concrete pipes as a replacement for regular reinforcement. Several experimental studies have been conducted in order to determine the optimal fibre content for various pipe design scenarios. However, there is still need for more inclusive and comprehensible design approaches. This paper aims at developing a rational design tool for precast SFRC pipes. For this purpose, a non-linear 3D finite element model was developed to simulate the three edge-bearing test. The model was verified using experimental data generated previously by the authors on full-scale SFRC pipes as well as other data available in the open literature. The model was capable of reasonably simulating the load-deformation curves of SFRC pipes tested using the three-edge-bearing method. The average error in model-predicted ultimate D-loads was about 6.5% on the conservative side. Subsequently, a parametric study was conducted. The pipe diameter, pipe wall thickness, fibre type and content, concrete compressive strength, and targeted pipe strength were the parameters under investigation. The findings of the parametric study were presented in a tabular form that can be used as a design aid supplementary to the ASTM C1765 standard. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在预制混凝土管道中引入钢纤维作为常规加固的替代品的兴趣日益浓厚。为了确定各种管道设计方案的最佳纤维含量,已经进行了一些实验研究。但是,仍然需要更具包容性和可理解性的设计方法。本文旨在为SFRC预制管开发合理的设计工具。为此,开发了一个非线性3D有限元模型来模拟三个边缘测试。使用作者先前在全尺寸SFRC管道上生成的实验数据以及公开文献中提供的其他数据对模型进行了验证。该模型能够合理地模拟使用三边缘轴承法测试的SFRC管的载荷-变形曲线。模型预测的最终D载荷的平均误差在保守方面约为6.5%。随后,进行了参数研究。管道直径,管道壁厚,纤维类型和含量,混凝土抗压强度和目标管道强度是研究的参数。参数研究的结果以表格形式列出,可用作ASTM C1765标准的补充设计辅助。 (C)2016 Elsevier Ltd.保留所有权利。

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