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Structural Behaviour and Optimization of Moment-Shaped Reinforced Concrete Beams.

机译:弯矩型钢筋混凝土梁的结构性能及优化。

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摘要

This research includes a preliminary study prior to the commencement of the Ph.D. work and three phases of design, construction and testing of three generations of moment-shaped beams. Each phase of the research brought a better understanding of curved beams which follow the shape of the moment diagram. The moment diagram in this study was for simply supported beams supporting a uniformly distributed load as would be the case in the majority of building designs.;The original theory for this research can be described as follows: Moment-shaped beams are the natural outcome of a fundamental understanding of stress paths in a horizontal load bearing member. By following these stress paths we may provide materials where required to most efficiently carry the compression and tension stresses to the supports. Allowing stresses to follow their naturally desired paths reduces regions where stresses cross paths called disturbed regions.;The outcome of the final phase of this research was the development of the third generation of curved beams with a camber. These beams, designated as Cambered Curve beams (CCBs), exhibited the same behaviour as the rectangular control beam design using CSA-A23.3 up to the serviceability failure of L/360 (12mm).;The CCB moment-shaped beams require 20% less concrete and 40% less reinforcing steel (no shear stirrups) to carry the ultimate load which is only 12% less than that carried by the CSA-designed control beam.;Due to a closed system of internal forces, the moment-shaped beams remain intact and are able to sustain self weight, even after total failure.;A significant part of this research was to modify and verify a FORTRAN-based finite element analysis program: FINIT-Y. This program was reconstructed to analyse a full size beam, and enabled the researcher to model and correctly predict the maximum load, crack pattern and failure mode.;This study found that moment-shaped beams with no shear reinforcement have the same stiffness and load carrying capacity as the CSA-designed rectangular control beam with shear reinforcement up to serviceability failure (L/360). The study also found that moment-shaped beams have significantly lower ductility at the ultimate load.
机译:该研究包括在博士开始之前的初步研究。工作和三个阶段的矩形梁的设计,建造和测试的三个阶段。研究的每个阶段都使人们对弯矩梁的理解变得更好,弯矩梁遵循矩量图的形状。本研究中的弯矩图是针对支撑均匀分布载荷的简支梁,在大多数建筑设计中都是如此。这项研究的原始理论可以描述如下:矩形梁是自然梁的自然结果。对水平承重构件中应力路径的基本了解。通过遵循这些应力路径,我们可以提供所需的材料,以最有效地将压缩应力和拉伸应力传递到支撑件。允许应力遵循其自然所需的路径,可以减少应力穿过称为干扰区域的路径的区域。该研究的最后阶段的结果是开发了具有弧度的第三代弯曲梁。这些光束称为弧形弯曲光束(CCB),在使用L / 360(12mm)失效之前,表现出与使用CSA-A23.3的矩形控制光束相同的性能。; CCB矩形光束需要20个承受的最终载荷仅比CSA设计的控制梁少12%,而混凝土和钢筋(无剪切箍筋)少40%.;由于封闭的内力系统,力矩形横梁保持完好无损,即使在完全失效后也能保持自重。该研究的重要部分是修改和验证基于FORTRAN的有限元分析程序FINIT-Y。对该程序进行了重构以分析全尺寸梁,并使研究人员能够建模并正确预测最大载荷,裂缝模式和破坏模式。;研究发现,没有抗剪加固的弯矩形梁具有相同的刚度和载荷具有CSA设计的矩形控制梁的最大承载能力,并具有抗剪加固功能,直至使用寿命失效(L / 360)。研究还发现,矩形梁在极限载荷下的延性大大降低。

著录项

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 392 p.
  • 总页数 392
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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