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The Influence of Steel Fiber Tensile Strengths and Aspect Ratios on the Fracture Properties of High-Strength Concrete

机译:钢纤维拉伸强度和长宽比对高强度混凝土断裂性能的影响

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摘要

Steel fiber embedded in concrete serves to reduce crack development and prevent crack growth at the macroscopic level of the concrete matrix. Steel fiber-reinforced concrete (SFRC) with high compressive concrete strength is affected primarily by the dimensions, shape, content, aspect ratio, and tensile strength of the embedded steel fiber. In this study, double-ended hook steel fiber was used in SFRC with a concrete compressive strength of 80 MPa. This fiber was used for the study variables with two aspect ratios (64, 80) and tensile strength values up to 1600 MPa. The flexural performance of the SFRC specimens was evaluated using crack mouth open displacement tests, and the test results were compared with code provisions. A modified reinforcement index was also used to quantify the flexural performance based on comparisons with fracture energy.
机译:嵌入混凝土中的钢纤维可减少裂缝的产生并在混凝土基体的宏观层面上防止裂缝的增长。具有高抗压混凝土强度的钢纤维增强混凝土(SFRC)主要受埋入式钢纤维的尺寸,形状,含量,长宽比和拉伸强度的影响。在这项研究中,SFRC中使用了双端钩钢纤维,混凝土抗压强度为80 MPa。该纤维用于研究变量,具有两个长宽比(64、80)和最高1600 MPa的拉伸强度值。使用裂口张开位移试验评估了SFRC试样的弯曲性能,并将试验结果与规范进行了比较。基于与断裂能的比较,修改后的增强指数还用于量化抗弯性能。

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