Stress and Deflection of a Concrete Block in a Four-Point Bending (FPB) Test

W. Siswanto, Bayu Putra Martama
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Abstract

This study aims to identify the stress concentration and distribution pattern in the mid-cross-section of a concrete block in a four-point bending (FPB) test with notch and without notch using a finite element method (FEM). The research was preceded by a meshing sensitivity analysis (MSA) with verification of reference from FPB test deflection theories. The selected finite element model was then used for numerical FPB testing with load variants of 100 kN, 200 kN and 300 kN. Simulation test results show that the greatest stress and deflection of the model from the FPB simulation with notch occur in the mid-bottom area, while in the model without notch the strongest stress takes place in the mid-bottom area and the largest deflection in the mid-center area. The influence of load variation indicates that the greater the load, the greater the stress concentration and deflection around the notch. Simulation by FEM can replace real material tests by means of the finite element model applied in this study.
混凝土块体四点弯曲试验中的应力和挠度
本研究旨在利用有限元法(FEM)确定带缺口和不带缺口的混凝土块体四点弯曲(FPB)试验中应力集中和分布规律。在此之前进行了网格敏感性分析(MSA),并参考FPB试验挠度理论进行了验证。将选取的有限元模型分别在100 kN、200 kN和300 kN载荷下进行FPB数值试验。模拟试验结果表明,在有缺口的FPB模拟模型中,模型的最大应力和挠度发生在底部中部区域,而在没有缺口的模型中,应力最强发生在底部中部区域,挠度最大发生在中心中部区域。载荷变化的影响表明,载荷越大,缺口周围的应力集中和挠度越大。有限元模拟可以代替本研究中采用的有限元模型进行的实际材料试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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