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Effectiveness of Continuity Diaphragm for Skewed Continuous Prestressed Concrete Girder Bridges

机译:连续偏斜预应力混凝土梁桥连续性膜片的有效性

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摘要

Continuity diaphragms have caused difficulties in detailing and construction when used in bridges composed of prestressed concrete girders supported on skewed bents. This study investigates the effect of full-depth continuity diaphragms on the deflection of, and stress in, skewed precast, prestressed concrete girders. Bridge models used in this study had the following parameters: girder type and spacing, bridge skew angle, span length, and diaphragm type. As either the skew angle increases or the girder spacing decreases in these types of bridges, construction becomes more difficult and the effectiveness of the diaphragms becomes questionable. If diaphragms are determined to be unnecessary as an outcome of this research, the construction and maintenance costs of these types of bridges could possibly be reduced. The objectives of this research were to determine the need for continuity diaphragms in skewed, precast, prestressed concrete girder bridges; study the load transfer mechanism through full-depth continuity diaphragms; and determine the minimum skew angle at which a diaphragm becomes ineffective in performing its function.
机译:当用于由倾斜弯头支撑的预应力混凝土梁组成的桥梁中时,连续性膜片在细节和施工上造成了困难。这项研究调查了全深度连续隔板对偏斜的预制,预应力混凝土梁的挠度和应力的影响。本研究中使用的桥梁模型具有以下参数:大梁类型和间距,桥梁偏斜角,跨度长度和隔板类型。在这些类型的桥中,随着偏斜角的增加或梁间距的减小,构造变得更加困难,并且隔板的有效性变得令人怀疑。如果这项研究的结果是确定不需要隔板,则可以减少这类桥梁的建造和维护成本。这项研究的目的是确定偏斜,预制,预应力混凝土箱梁桥梁中连续隔板的需求。通过全深度连续膜片研究载荷传递机理;并确定隔膜在执行其功能时无效的最小偏斜角。

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