通过 FEM-Abaqus 建立肯纳夫纤维轻质混凝土梁的结构行为模型

Eídos Pub Date : 2024-01-25 DOI:10.29019/eidos.v17i23.1239
Sayed Javid Azimi, Abdulhai Kaiwaan, Sayed Alem Azimi
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摘要

本研究介绍了油棕壳槿麻纤维轻质混凝土(OPS-KFLC)梁的结构特性。这项研究的主要目的是调查槿麻纤维在改善 OPS-RC 梁结构性能方面的潜在优势。这项研究采用了两种方法:实验和数值建模。实验工作主要针对两根横梁。第一根梁采用全剪加固,不含纤维(SI = 0%,Vf = 0%),称为对照梁。与此同时,还分别建造了一个全剪切加固(SI = 0%)和纤维体积分数为 Vf = 1%的梁。实验工作考虑了简支梁的四点抗弯试验。因此,考虑使用有限元法 FEM 软件 Abaqus 进行数值建模,以校准和验证实验结果。首先,进行敏感性分析(网格和时间),以获得与实验结果的最佳相关性。然后,在有限元建模研究中使用梁的实验结果进行校准。结果对比显示,实验测试结果与非线性有限元分析 NLFEA 结果之间存在良好的一致性。总体而言,这项研究表明,加入 Vf = 2%kenaf 纤维后,OPS-RC 梁的结构性能改善了 37%。
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Structural Behaviour of Kenaf Fibre Lightweight Concrete Beams Modelling Via FEM-Abaqus
This study presents the structural properties of oil palm shell kenaf fibre Lightweight concrete (OPS-KFLC) beams. The main objective of this research was to investigate the potential advantage of kenaf fiber for improving the structure properties of OPS-RC beams. This investigation carried out by two methods experimental and consequently numerical modelling. The experimental work focused on two beams. First beam constructed with full shear reinforcement and without fibre (SI = 0% and with Vf = 0%) denoted as a control beam. Meanwhile one more beams with full shear reinforcement (SI = 0%) and with fibre volume fraction of Vf = 1% constructed respectively. The experimental work has been considered four point flexural tests on simply supported beam. Consequently, numerical modelling with finite element method FEM software Abaqus for calibration and validation of experiment results considered. First, sensitivity analysis (mesh and time) conducted up to acquire the best correlation with experimental result. Then, the experiments result of beams was used, for calibration in FEM modelling investigation. The results comparison showed that there is a good agreement between the experimental test and nonlinear finite element analysis NLFEA results. Generally, this investigation demonstrated up to 37% improvement on structure properties of OPS-RC beam by addition of Vf = 2%kenaf fiber.
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