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Reinforcement design for the anchorage of externally prestressed bridges with 'tensile stress region'

机译:带有“拉应力区域”的外部预应力桥梁的锚固加固设计

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摘要

Two-dimensional tensile stresses are occurring at the back of the anchorage of the tendons of prestressed concrete bridges. A new method named "tensile stress region" for the design of the reinforcement is presented in this paper. The basic idea of this approach is the division of an anchor block into several slices, which are described by the tensile stress region. The orthogonal reinforcing wire mesh can be designed in each slice to resist the tensile stresses. Additionally the sum of the depth of every slice defined by the tensile stress region is used to control the required length of the longitudinal reinforcement bars. An example for the reinforcement design of an anchorage block of an external prestressed concrete bridge is analyzed by means of the new presented method and a finite element model is established to compare the results. Furthermore the influence of the transverse and vertical prestressing on the ordinary reinforcement design is taken into account. The results show that the amount of reinforcement bars at the anchorage block is influenced by the layout of the transverse and the vertical prestressing tendons. Using the "tensile stress region" method, the ordinary reinforcement bars can be designed more precisely compared to the design codes, and arranged according to the stress state in every slice.
机译:在预应力混凝土桥梁的钢筋束锚固的背面出现二维拉伸应力。本文提出了一种用于钢筋设计的新方法“拉伸应力区域”。这种方法的基本思想是将锚块分为几个切片,这些切片由张应力区域描述。可以在每个切片中设计正交钢筋网以抵抗拉伸应力。另外,由拉应力区域限定的每个切片的深度的总和用于控制纵向钢筋的所需长度。通过提出的新方法,分析了外部预应力混凝土桥梁锚固块的加固设计实例,并建立了有限元模型进行比较。此外,考虑了横向和垂直预应力对普通钢筋设计的影响。结果表明,锚固块处钢筋的数量受横向和垂直预应力筋布置的影响。使用“拉伸应力区域”方法,与设计规范相比,可以更精确地设计普通钢筋,并根据每个切片中的应力状态进行布置。

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