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Influence of steel fibers on the static and blast response of beams built with high-strength concrete and high-strength reinforcement

机译:钢纤维对高强度混凝土和高强度加固梁静态爆破响应的影响

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This paper presents the results of a study examining the influence of steel fibers on the static and blast performance of beams built with high-strength concrete (HSC) and high-strength steel reinforcement. As part of the study, a series of fiber-reinforced HSC beams designed with Grade 690 MPa ASTM A1035 reinforcement are tested under static and blast load conditions using a shock-tube. The performance of the beams is compared to that of a control set of specimens built with plain HSC and high-strength bars. In addition to the effects of the steel fibers, the effects of reinforcement type (Grade 690 MPa vs. 400 MPa) and high-strength steel ratio (rho = 1-2.2%) are also investigated. Under static loads the provision of fibers is found to significantly enhance the ductility of the high-strength reinforced concrete beams. Under dynamic conditions, the use of fiber-reinforced HSC leads to important enhancements in blast behavior, including better control of displacements, increased blast capacity and improved damage resistance. As part of the numerical study the blast response of the beams is predicted using 2D finite element (FE) modelling.
机译:本文介绍了研究钢纤维对高强度混凝土(HSC)和高强度钢筋内置梁静电和喷射性能的研究结果。作为该研究的一部分,一系列具有690MPa ASTM A1035钢筋设计的一系列纤维增强HSC光束在静态和鼓胀条件下进行测试,并使用冲击管测试。将光束的性能与用普通HSC和高强度杆构建的试样的对照组进行比较。除了钢纤维的影响外,还研究了增强型(690MPa与400MPa)和高强度钢比(RHO = 1-2.2%)的影响。在静电载荷下,发现纤维的提供明显增强了高强度钢筋混凝土梁的延展性。在动态条件下,使用纤维增强的HSC导致爆炸行为的重要增强,包括更好地控制位移,增加爆炸能力和改善损伤阻力。作为数值研究的一部分,使用2D有限元(FE)建模预测光束的喷射响应。

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