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Studi on the Efficiency Using Nature Materials in the Structural Elements of Reinforced Concrete Beam

机译:天然材料在钢筋混凝土梁结构构件中的使用效率研究

摘要

In general bending loads acting on structural elements of concrete beams are retained by the compression area on its pressured area while its drag area is being ignored. Therefore, it is reasonable if the concrete beam section on drag area is minimized with concrete mass reduction in tensile region by ignoring concrete tensile stress while receiving static loads or the area is filled with styrofoam concrete (styrocon). One effort to make efficient the concrete economic value is by reducing concrete and using styrocon thus natural material component such as sand mining, coarse aggregate, and cement and heavy construction becomes lighter. Styrofoam as waste can be used as filler to reduce the volume of concrete, especially for areas where the concrete section is not working mechanically. In an effort to study the flexural strength of concrete beams external reinforcement and composite Styrofoam filled, then a series of tests performed. Test material is in the form of blocks of 15 cm x 20 cm x 270 cm in dimension. Test material is consisted of concrete quality normal beam of 26.0 MPa with transverse reinforcement as a control of test material and the test material with external transverse reinforcement, as well as truss systems and Styrofoam filled composite. The normal-styrocon composite is beam with Styrofoam variation content. The beam is placed on 2 simple pedestal by 2 point loading method testing. The results indicated that normal concrete beam flexural strength is 36.7 kN, but the external transverse reinforcement beams decreased to 30.6 kN, but the external reinforcement beam truss system reinforcement is relatively equal to 35.8 kN. However, the beams with external reinforcement is susceptible to corrosion, fire resistant, and requires treatment. Therefore styrocon is used on the outer portion with styrofoam content of 30%, 40%, and 50% relatively having flexural strengths of 33.8 kN, 31.0 kN and 29.0 kN, respectively. It can be concluded that the use of normal-styrocon composite concrete beams can make efficient the use of natural materials of the concrete block and to reduce the weight construction as well as has environmental aspects by using the waste.
机译:通常,作用在混凝土梁结构元件上的弯曲载荷由受压区域保持在受压区域,而其受力区域则被忽略。因此,合理的做法是,在承受静载荷的同时忽略混凝土的拉应力,或者在该区域中填充聚苯乙烯泡沫混凝土(聚苯乙烯),从而通过减小受拉区域中的混凝土质量来减小受拉区域中的混凝土梁截面,从而是合理的。提高混凝土经济价值的一项努力是减少混凝土用量并使用苯乙烯,从而使天然材料成分(例如采砂,粗骨料和水泥)变得更轻。聚苯乙烯泡沫塑料可以用作填充剂,以减少混凝土的体积,特别是在混凝土部分无法进行机械加工的区域。为了研究混凝土梁的外部增强和填充的聚苯乙烯泡沫塑料的抗弯强度,然后进行了一系列测试。测试材料为尺寸为15厘米x 20厘米x 270厘米的块状。测试材料由26.0 MPa的混凝土质量普通梁(带有作为控制材料的横向增强材料)和带有外部横向增强的测试材料以及桁架系统和填充泡沫聚苯乙烯的复合材料组成。普通聚苯乙烯泡沫塑料复合材料是具有泡沫聚苯乙烯含量变化的梁。通过2点加载方法测试将梁放置在2个简单的基座上。结果表明,正常混凝土梁的抗弯强度为36.7 kN,但外部横向加固梁降低至30.6 kN,而外部加固梁的桁架系统加固相对等于35.8 kN。但是,带有外部加强筋的梁易受腐蚀,耐火,并且需要进行处理。因此,相对于具有33.8kN,31.0kN和29.0kN的挠曲强度的聚苯乙烯泡沫体含量,聚苯乙烯被用于外部,泡沫聚苯乙烯含量为30%,40%和50%。可以得出结论,使用普通聚苯乙烯基混凝土组合梁可以有效地利用混凝土砌块的天然材料,并通过利用废物来减轻建筑的重量,并具有环境方面的意义。

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