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Finite Element Modeling of Compressive and Splitting Tensile Behavior of Plain Concrete and Steel Fiber Reinforced Concrete Cylinder Specimens

机译:普通混凝土钢纤维混凝土圆筒样品压缩和分裂拉伸行为的有限元模型

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摘要

Plain concrete and steel fiber reinforced concrete (SFRC) cylinder specimens are modeled in the finite element (FE) platform of ANSYS 10.0 and validated with the experimental results and failure patterns. Experimental investigations are conducted to study the increase in compressive and tensile capacity of cylindrical specimens made of stone and brick concrete and SFRC. Satisfactory compressive and tensile capacity improvement is observed by adding steel fibers of 1.5% volumetric ratio. A total of 8 numbers of cylinder specimens are cast and tested in 1000 kN capacity digital universal testing machine (UTM) and also modeled in ANSYS. The enhancement of compressive strength and splitting tensile strength of SFRC specimen is achieved up to 17% and 146%, respectively, compared to respective plain concrete specimen. Results gathered from finite element analyses are validated with the experimental test results by identifying as well as optimizing the controlling parameters to make FE models. Modulus of elasticity, Poisson’s ratio, stress-strain behavior, tensile strength, density, and shear transfer coefficients for open and closed cracks are found to be the main governing parameters for successful model of plain concrete and SFRC in FE platform. After proper evaluation and logical optimization of these parameters by extensive analyses, finite element (FE) models showed a good correlation with the experimental results.
机译:普通的混凝土和钢纤维钢筋混凝土(SFRC)气缸样品在ANSYS 10.0的有限元(FE)平台中建模,并验证了实验结果和故障模式。进行了实验研究,研究了石材和砖混凝土和SFRC制成的圆柱形试样的压缩和拉伸能力的增加。通过将钢纤维增加1.5%体积比,观察到令人满意的压缩和拉伸能力改善。在1000 kN容量数字通用试验机(UTM)中,共铸造8个气缸样品并在ANSYS中进行建模。与相应的普通混凝土样本相比,SFRC样本的抗压强度和分裂拉伸强度的增强分别达到17%和146%。从有限元分析中收集的结果通过识别实验测试结果,并通过识别来优化控制参数来制造FE模型。弹性模量,泊松比,应力 - 应变行为,拉伸强度,密度和剪切传递系数的开放和闭合裂缝是用于Fe平台普通混凝土和SFRC成功模型的主要控制参数。在通过广泛的分析通过广泛的分析进行适当的评估和逻辑优化这些参数后,有限元(FE)模型与实验结果显示出良好的相关性。

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