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Inclined Fiber Pullout from a Cementitious Matrix: A Numerical Study

机译:水泥基中倾斜纤维的拔出:数值研究

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摘要

It is well known that fibers improve the performance of cementitious composites by acting as bridging ligaments in cracks. Such bridging behavior is often studied through fiber pullout tests. The relation between the pullout force vs. slip end displacement is characteristic of the fiber-matrix interface. However, such a relation varies significantly with the fiber inclination angle. In the current work, we establish a numerical model to simulate the entire pullout process by explicitly representing the fiber, matrix and the interface for arbitrary fiber orientations. Cohesive elements endorsed with mixed-mode fracture capacities are implemented to represent the bond-slip behavior at the interface. Contact elements with Coulomb’s friction are placed at the interface to simulate frictional contact. The bond-slip behavior is first calibrated through pull-out curves for fibers aligned with the loading direction, then validated against experimental results for steel fibers oriented at 30 and 60. Parametric studies are then performed to explore the influences of both material properties (fiber yield strength, matrix tensile strength, interfacial bond) and geometric factors (fiber diameter, embedment length and inclination angle) on the overall pullout behavior, in particular on the maximum pullout load. The proposed methodology provides the necessary pull-out curves for a fiber oriented at a given angle for multi-scale models to study fracture in fiber-reinforced cementitious materials. The novelty lies in its capacity to capture the entire pullout process for a fiber with an arbitrary inclination angle.
机译:众所周知,纤维通过在裂缝中起到桥接韧带的作用来改善水泥基复合材料的性能。通常通过光纤拉拔测试研究这种桥接行为。拉拔力与滑移端位移之间的关系是纤维-基质界面的特征。但是,这种关系随着纤维倾斜角度而显着变化。在当前的工作中,我们通过明确表示纤维,基质和任意纤维取向的界面,建立一个数值模型来模拟整个拉拔过程。实施具有混合模式断裂能力的粘结元件,以表示界面处的粘结滑动行为。具有库仑摩擦力的接触元件放置在界面上,以模拟摩擦接触。首先通过与载荷方向对齐的纤维的拉出曲线来校准粘结滑移行为,然后针对取向为30 和60 的钢纤维的实验结果进行验证。然后进行参数研究,以探索材料特性(纤维屈服强度,基体拉伸强度,界面结合力)和几何因素(纤维直径,包埋长度和倾角)对整体拉拔性能,特别是最大拉拔性能的影响加载。所提出的方法为多尺度模型研究纤维增强胶凝材料的断裂提供了必要的拔出曲线,该曲线以给定角度定向的纤维为多尺度模型。新颖之处在于它能够捕获具有任意倾斜角度的光纤的整个拔出过程。

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