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STEEL FIBRE REINFORCED CONCRETE OPENING CORNERS

机译:钢纤维钢筋混凝土开口角

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This paper presents some of the results of a comprehensive experimental programme underway at the Department of Civil Engineering, University of Roorkee, to evaluate the structural behaviour of opening corners reinforced with some of the prevalent and widely used detailing systems. Four different detailing systems were investigated for strength measured in terms of joint efficiency, ductility, crack control and ease of reinforcement layout and fabrication. None of the detailing systems investigated satisfied all the above four parameters, A substantial increase in post-cracking tensile strength, crack control, toughness and ductility can be achieved by adding steel fibers to the matrix. Subsequently, the four detailing systems were tested a fresh with 50 mm long crimped type Xorex steel fibres at a lower bound 0.75% volume fraction and subsequently one of the shortlised detailing system was investigated with 1.25%. 1.50%, 1.75% and 2% volume fraction of 25 mm and 50 mm long crimped type steel fibres. The investigations indicate that fibre volume fraction and aspect ratio have a significant effect on corner efficiency, ductility, toughness and crack control. There is an upper bound to the fibre volume fraction which can be effectively incorporated in the matrix without hindering mix workability and structural performance.
机译:本文介绍了罗克大学土木工程系正在进行综合实验计划的一些结果,以评估利用一些普遍存在和广泛使用的细节系统增强的开口角落的结构行为。研究了四种不同的细节系统,以便在联合效率,延展性,裂缝控制和易于加固布局和制造方面测量的强度。没有详细的系统研究满足所有上述四个参数,通过向基质中添加钢纤维可以实现裂解后抗拉强度,裂缝控制,韧性和延展性的大幅增加。随后,在下限的0.75%体积分数下测试四种细节系统,用50mm长的卷曲型Xorex钢纤维,随后研究了1.25%的缩小细节系统。 1.50%,1.75%和2%体积分数为25mm和50 mm长的压接型钢纤维。该研究表明,纤维体积分数和纵横比对角效率,延展性,韧性和裂缝控制具有显着影响。纤维体积分数有一个上限,可以有效地掺入基质中而不妨碍混合可加工性和结构性能。

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