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Pullout Behavior of Bundled Aramid Fiber in Fiber-Reinforced Cementitious Composite

机译:纤维增强水泥基复合材料中捆扎芳纶纤维的拉拔行为

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摘要

The tensile performance of fiber-reinforced cementitious composite (FRCC) after first matrix cracking is characterized by a tensile stress–crack width relationship called the bridging law. The bridging law can be obtained by an integral calculus of forces carried by individual bridging fibers considering the effect of the fiber inclination angle. The main objective of this study is to investigate experimentally and evaluate the pullout behavior of a single aramid fiber, which is made with a bundling of original yarns of aramid fiber. The bundled aramid fiber has a nonsmooth surface, and it is expected to have good bond performance with the matrix. The test variables in the pullout test are the thickness of the matrix and the inclined angle of the fiber. From the test results, the pullout load–slip curves showed that the load increases lineally until maximum load, after which it decreases gradually. The maximum pullout load and slip at the maximum load increase as the embedded length of the fiber becomes larger. The pullout load–crack width relationship is modeled by a bilinear model, and the bridging law is calculated. The calculated result shows good agreement with the experimental curves obtained by the uniaxial tension test of aramid–FRCC.
机译:纤维增强水泥基复合材料(FRCC)在第一次基体开裂后的抗拉性能的特征是称为桥架定律的拉应力与裂纹宽度之间的关系。考虑到光纤倾角的影响,可以通过单个桥接光纤所承载力的积分来获得桥接定律。这项研究的主要目的是通过实验研究和评估单根芳纶纤维的拉出性能,该纤维是由芳纶纤维的原始纱线捆绑而成的。捆扎的芳族聚酰胺纤维具有不光滑的表面,并且期望与基体具有良好的粘合性能。拔出测试中的测试变量是基体的厚度和纤维的倾斜角。从测试结果来看,拉拔载荷-滑动曲线表明载荷线性增加直到最大载荷,然后逐渐减小。随着光纤的嵌入长度变大,最大拉出载荷和最大载荷下的滑动增加。利用双线性模型对拉拔荷载与裂缝的宽度关系进行建模,并计算出桥接定律。计算结果与芳纶-FRCC单轴拉伸试验得到的实验曲线吻合良好。

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