首页> 外文期刊>Latin American Journal of Solids and Structures >Continuous Modeling Technique of Fiber Pullout from a Cement Matrix with Different Interface Mechanical Properties Using Finite Element Program
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Continuous Modeling Technique of Fiber Pullout from a Cement Matrix with Different Interface Mechanical Properties Using Finite Element Program

机译:用有限元程序连续建模不同界面力学性能的水泥基纤维拉拔连续建模技术

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摘要

Abstract Fiber-matrix interface performance has a great influence on the mechanical properties of fiber reinforced composite. This influence is mainly presented during fiber pullout from the matrix. As fiber pullout process consists of fiber debonding stage and pullout stage which involve complex contact problem, numerical modeling is a best way to investigate the interface influence. Although many numerical research works have been conducted, practical and effective technique suitable for continuous modeling of fiber pullout process is still scarce. The reason is in that numerical divergence frequently happens, leading to the modeling interruption. By interacting the popular finite element program ANSYS with the MATLAB, we proposed continuous modeling technique and realized modeling of fiber pullout from cement matrix with desired interface mechanical performance. For debonding process, we used interface elements with cohesive surface traction and exponential failure behavior. For pullout process, we switched interface elements to spring elements with variable stiffness, which is related to the interface shear stress as a function of the interface slip displacement. For both processes, the results obtained are very good in comparison with other numerical or analytical models and experimental tests. We suggest using the present technique to model toughening achieved by randomly distributed fibers.
机译:摘要纤维-基质界面性能对纤维增强复合材料的力学性能有很大影响。这种影响主要是在从基体中拔出光纤时出现的。由于光纤拔出过程由涉及复杂接触问题的光纤剥离阶段和拔出阶段组成,因此数值模拟是研究界面影响的最佳方法。尽管已经进行了许多数值研究工作,但仍缺乏适用于纤维拔出过程连续建模的实用有效技术。原因在于数值差异经常发生,导致建模中断。通过将流行的有限元程序ANSYS与MATLAB交互,我们提出了连续建模技术,并实现了具有所需界面机械性能的水泥基纤维拉拔的建模。对于脱粘过程,我们使用具有内聚表面牵引力和指数破坏行为的界面元素。对于拔出过程,我们将界面元件切换为具有可变刚度的弹簧元件,这与界面剪切应力随界面滑移位移的函数有关。对于这两个过程,与其他数值或分析模型和实验测试相比,获得的结果都非常好。我们建议使用本技术来模拟由随机分布的纤维实现的增韧。

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