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Comparative study of the flexural behavior of lightweight and normal weight prestressed concrete beams

机译:轻型和普通重量预应力混凝土梁抗弯性能的比较研究

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摘要

The objective of this research was to evaluate the feasibility of producing structural lightweight concrete prestressed girders with load-bearing capacities similar to conventional concrete girders. The methodology consisted of comparing the results of the production and monitoring of scaled prestressed concrete beams at a precasting plant and the subsequent flexural testing. The beams were produced using two types of lightweight concrete and a conventional reference concrete with similar compressive strengths to allow for a comparison of the structural performance of the beams. The goal was to estimate an upper bound for the development length of fully developed prestressing strands with a diameter of 15.2 mm (0.6"). The load-bearing capacity and ductility of the beams were determined by flexural tests. All lightweight and conventional concrete beams exceeded their nominal flexural strengths, which were calculated without accounting for the splitting cracks that all manufactured lightweight concrete beams developed alter the prestress release on their lower side. Based on these tests, upper bounds were determined for the development length of the prestressed strands with a diameter of 15.2 mm for the three types of concrete tested. Subsequently, the ductility factors of the beams tested under flexure were determined. Despite all of the tested beams were able to develop the full strength of the prestressed strands and showed a remarkably ductile behavior, it was concluded that the use of these lightweight concretes is not recommended in the fabrication of prestressed concrete bridge girders because of the potential reduction in their durability and bearing capacity due to stress corrosion, which is a result of the splitting cracks detected in all of the produced prestressed lightweight concrete beams.
机译:这项研究的目的是评估生产与常规混凝土梁相似的承重能力的结构轻质混凝土预应力梁的可行性。该方法包括比较预制工厂中按比例缩放的预应力混凝土梁的生产和监控结果以及随后的抗弯测试。使用两种类型的轻质混凝土和具有类似抗压强度的常规参考混凝土来生产梁,以便比较梁的结构性能。目的是估计直径为15.2毫米(0.6英寸)的完全展开的预应力绞线的展开长度的上限。通过弯曲试验确定梁的承载力和延性。所有轻型和传统混凝土梁超过了它们的标称抗弯强度,该强度没有计算出所有制造的轻质混凝土梁在下侧改变的预应力释放所产生的裂口裂缝,基于这些测试,确定了具有三种被测混凝土的最大直径为15.2毫米,随后确定了受弯梁的延性因子,尽管所有被测梁都能发挥预应力钢绞线的全部强度,并表现出显着的延性,结论是,不建议在预制件的制造中使用这些轻质混凝土。由于应力腐蚀可能会导致其耐久性和承载能力降低,从而导致钢筋混凝土桥形梁断裂,这是在所有已生产的预应力轻质混凝土梁中检测到裂痕的结果。

著录项

  • 来源
    《Engineering Structures》 |2013年第11期|1868-1879|共12页
  • 作者单位

    Centre for Technological Innovation in Construction and Civil Engineering, CITEEC, University of La Coruna, Campus de Elvina SN, 15071 La Coruna, Spain,Also at Institute of Engineering, National Autonomous University of Mexico,Ciudad Universitaria, Delegation Coyoacan, Mexico D.F.,CP04510, Mexico;

    Centre for Technological Innovation in Construction and Civil Engineering, CITEEC, University of La Coruna, Campus de Elvina SN, 15071 La Coruna, Spain;

    Cimarq SL Engineering, Civil, Environmental, and Architectural Consulting Firm, Spain;

    Centre for Technological Innovation in Construction and Civil Engineering, CITEEC, University of La Coruna, Campus de Elvina SN, 15071 La Coruna, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Prestressed concrete; Transfer; Length; Bond; Development; Lightweight; Ductility;

    机译:预应力混凝土;传递;长度;键;发展;轻巧;延展性;

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