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Reinforced Concrete by Using the Rectangular Shape of Voided Beam

机译:使用空隙梁矩形的钢筋混凝土

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© 2020 Faculty of Mechanical Engineering. All Rights Reserved.In conventional RC beam, the transition from compression to tension zone of the beam when load applied producing ineffective region at the middle area of the neutral axis. This is because, the area experiencing less compression and tension compare to the region above and below the neutral axis. Thus, the purpose of this research is to replace the use of concrete at the middle of the neutral axis by incorporating 4 PVC pipes to reduce cost and the self-weight of the structure. 4 pipes with a diameter of 20mm, 25mm and 50mm will be combined together to form a continuous voided square beam of V40, V50 and V100. The size of RC beam specimens is 1200mm x 160mm x 160mm, these beams were test with 3-point load test to identify the flexural strength. From the test, the ordinary beam recorded lowest maximum load, which is 15,35kN and VRB 100mm is the strongest beam with the maximum load 33.75kN and has the highest strength increment compared to another voided rectangular beam. Besides that, VRB 100mm also can reduced until 42.69 self-weight of RC beam and reduce until 37.5 of the concrete usage. From this study, it shows that the Voided Square Beam can reduce the self-weight of beam and reduce the concrete usage. Besides that, this idea also can implement to produce the lightweight structure that meet the standard of Industrialized Building System (IBS).
机译:© 2020 机械工程学院。所有权利 Reserved.In 传统的钢筋混凝土梁,当施加荷载时,梁从压缩区过渡到拉伸区,在中性轴的中间区域产生无效区域。这是因为,与中性轴上方和下方的区域相比,该区域承受的压缩和张力较小。因此,本研究的目的是通过加入 4 根 PVC 管来取代中性轴中间的混凝土使用,以降低结构的成本和自重。4根直径分别为20mm、25mm和50mm的管子组合在一起,形成V40、V50和V100的连续空隙方梁。RC梁试样的尺寸为1200mm x 160mm x 160mm,这些梁采用三点载荷试验进行测试,以确定抗弯强度。从测试来看,普通梁记录的最大载荷最低,为15,35kN,VRB 100mm是最强的梁,最大载荷为33.75kN,与另一个空心矩形梁相比,强度增量最高。除此之外,VRB 100mm还可以减少到RC梁自重的42.69%,并减少到混凝土使用量的37.5%。从这项研究中可以看出,空隙方梁可以降低梁的自重,减少混凝土的使用量。除此之外,这个想法还可以实现,以生产符合工业化建筑系统(IBS)标准的轻质结构。

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