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Evaluation of Shear and Tensile Bridging Characteristics of PVA Fibers Based on Bridging Law

机译:基于桥接法的PVA纤维剪切和拉伸桥接特性评价

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摘要

Strain-Hardening Cementitious Composites (SHCC), in which short fibers are mixed in mortar, show improved tensile performance and ductility of the cementitious material because fibers bridging the crack transfer tensile forces after first cracking. It is considered that the stress field at the shear crack surface in the structural element under the shear force is a biaxial stress field in which tensile and shear stresses exist concurrendy. In fiber-reinforced cementitious composites, both tensile and shear stresses are transmitted via fibers that bridge shear cracks. It is necessary that the effect of fibers bridging a shear crack under tensile and shear stresses is investigated. In this study, uniaxial tension tests were carried out for specimens which have a square cross-section and an inclined notch. The biaxial stress field can be expressed by the inclined crack surface produced by the tensile loading. From the test results, it was confirmed that the tensile stress decreased with increasing notch angle in the tension tests. A calculation method for the bridging law with an inclined crack was introduced and the calculation results were compared with the test results. Though the maximum tensile stress in the tests was smaller than that in the calculation results, the curves after the maximum stress show good agreements with the calculations. The maximum stress reached in the tests tends to decrease with increasing crack angle (notch angle) as in the calculation results.
机译:在砂浆中混合短纤维的菌株硬化水泥复合材料(SHCC),显示出改善胶凝材料的拉伸性能和延展性,因为纤维在首先开裂后桥接裂纹传递拉伸力。认为剪切力下的结构元件中的剪切裂纹表面处的应力场是双轴应力场,其中拉伸和剪切应力存在并发生。在纤维增强的水泥复合材料中,抗拉和剪切应力均通过桥接剪切裂缝的纤维透射。研究了在拉伸和剪切应力下桥接剪切裂纹的纤维的影响是必要的。在该研究中,对具有正方形横截面和倾斜凹口的样品进行单轴张力试验。双轴应力场可以由由拉伸载荷产生的倾斜裂缝表面表示。从测试结果中,证实拉伸应力随着张力试验中的凹凸角度的增加而降低。引入了具有倾斜裂缝的桥接法的计算方法,并将计算结果与测试结果进行了比较。虽然测试中的最大拉伸应力小于计算结果中的最大拉伸应力,但在最大应力之后的曲线与计算出现了良好的协议。在测试结果中,试验中达到的最大应力随着裂缝角(凹口角)而降低,如在计算结果中。

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