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Shear strength of concrete beams reinforced with steel bars milled from scrap metals

机译:用废金属磨制的钢筋加固的混凝土梁的抗剪强度

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摘要

The paper reports a study on the shear resistance of concrete beams reinforced with mild steel bars that are milled from scrap metal such as old vehicle parts and obsolete machinery. It has been previously reported that because the chemical compositions of carbon, sulphur and phosphorus in these reinforcing steel bars exceed the maximum allowable limits, the characteristic tensile strengths are too high and ductility too low for standard mild steel. Concrete beams reinforced with such bars to resist flexural tensile and shear stresses were tested under a two-point loading system to provide a central constant moment region and outer shear spans. Tested beams exhibited little deflection and very low ductility prior to collapse. Experimental failure loads for the beams averaged l23 percent of the theoretical failure load, which was generally governed by either shear or yielding of the tension steel. Shear failure was mostly initiated by diagonal tension cracks, followed by either crushing of the concrete, or splitting of the concrete over the longitudinal tensile bars near the supports. Failure of the beams was brittle and the post-cracking strain energy absorption averaged 357.9 nm. At failure the maximum crack width in the beams ranged from l.l2 to 5.0 mm, the largest sizes forming in the diagonal shear cracks.
机译:这篇论文报道了用低碳钢加固的混凝土梁的抗剪强度的研究,这些低碳钢是用废旧金属(例如旧的汽车零件和陈旧的机械)碾磨而成的。先前已经报道过,由于这些钢筋中碳,硫和磷的化学成分超过了最大允许极限,因此对于标准低碳钢而言,其拉伸强度过高而延展性过低。在两点加载系统下测试了用这种钢筋加固以抵抗弯曲拉伸和剪切应力的混凝土梁,以提供中心恒定弯矩区域和外部剪切跨度。被测试的梁在坍塌之前表现出很小的挠度和非常低的延展性。梁的试验破坏载荷平均为理论破坏载荷的123%,这通常由抗剪钢的剪切或屈服决定。剪切破坏主要是由对角拉伸裂纹引起的,然后是混凝土的破碎,或者是在支撑附近的纵向拉伸杆上混凝土的分裂。光束的破坏是脆弱的,并且开裂后的应变能量吸收平均为357.9nm。破坏时,梁中的最大裂缝宽度在l2至5.0毫米之间,最大尺寸形成在对角剪切裂缝中。

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