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Study on fracture behavior of polypropylene fiber reinforced concrete with bending beam test and digital speckle method

机译:弯曲试验与数字散斑法研究聚丙烯纤维混凝土的断裂性能

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摘要

Portland cement concrete, which has higher strength and stiffness than asphalt concrete, has been widely applied on pavements. However, the brittle fracture characteristic of cement concrete restricts its application in highway pavement construction. Since the polypropylene fiber can improve the fracture toughness of cement concrete, Polypropylene Fiber-Reinforced Concrete (PFRC) is attracting more and more attention in civil engineering. In order to study the effect of polypropylene fiber on the generation and evolution process of the local deformation band in concrete, a series of three-point bending tests were performed using the new technology of the digital speckle correlation method for FRC notched beams with different volumetric contents of polypropylene fiber. The modified Double-K model was utilized for the first time to calculate the stress intensity factors of instability and crack initiation of fiber-reinforced concrete beams. The results indicate that the polypropylene fiber can enhance the fracture toughness. Based on the modified Double-K fracture theory, the maximum fracture energy of concrete with 3.2% fiber (in volume) is 47 times higher than the plain concrete. No effort of fiber content on the strength of the concrete was found. Meanwhile to balance the strength and resistant fracture toughness, concrete with 1.6% fiber is recommended to be applied in pavement construction.
机译:波特兰水泥混凝土比沥青混凝土具有更高的强度和刚度,已广泛应用于路面。但是,水泥混凝土的脆性断裂特性限制了其在公路路面施工中的应用。由于聚丙烯纤维可以提高水泥混凝土的断裂韧性,因此聚丙烯纤维增强混凝土(PFRC)在土木工程中越来越受到关注。为了研究聚丙烯纤维对混凝土局部变形带的产生和演化过程的影响,采用数字散斑相关新技术对不同体积的FRC缺口梁进行了一系列的三点弯曲试验。聚丙烯纤维的含量。首次使用改进的Double-K模型计算纤维增强混凝土梁的不稳定性和裂纹萌生的应力强度因子。结果表明,聚丙烯纤维可以增强断裂韧性。根据改进的Double-K断裂理论,纤维含量为3.2%(体积)的混凝土的最大断裂能比普通混凝土高47倍。没有发现纤维含量对混凝土强度的影响。同时,为了平衡强度和抗断裂韧性,建议在路面施工中使用纤维含量为1.6%的混凝土。

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