钢绞线预压在连续梁托架施工中的应用研究

    Research on Application of Steel Strand Prepressing in Continuous Beam Scaffold Construction

    • 摘要: 为解决传统堆载预压法在连续梁桥0#、1#块托架施工中存在的效率低、风险高、荷载控制不精确等问题, 以瑞丽至孟连高速公路南扩大桥为工程背景, 对钢绞线预压技术的应用进行了系统研究。先阐述了该技术的力学原理与标准化工艺流程, 进而采用有限元软件建立了托架系统的数值模型, 分析了其在混凝土荷载下的力学性能与变形特性。通过现场实施基于反力系统的钢绞线分级同步张拉预压, 验证了托架结构的安全性, 并揭示了其弹性变形规律。结果表明: 钢绞线预压技术具有加载精准、作业高效、安全性好等突出优点, 能将预压周期缩短50%以上, 综合成本降低约30%。

       

      Abstract: To solve the limitations of traditional surcharge prepressing—including low efficiency, high safety risk, and imprecise load control—during the construction of 0# and 1# block scaffolds for continuous beam bridges, it systematically investigated the application of steel strand prepressing technology, with the Nankuo bridge of the Ruili-Menglian Expressway as the engineering case. First, the mechanical mechanism and standardized process flow of the technology were elaborated. Subsequently, a numerical model of the scaffold system was established by finite element software to analyze its mechanical behavior and deformation characteristics under concrete loads. Through on-site implementation of graded synchronous tension prepressing based on the reaction system for steel strands, the safety of the support structure was verified, and its elastic deformation law was accurately obtained. Results indicated that steel strand prepressing exhibited distinct advantages: precise load application, high operational efficiency, and enhanced safety. It shortened the prepressing cycle by over 50% and reduced comprehensive costs by approximately 30%.

       

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