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Finite element analysis of continuous prestressed composite girders

机译:连续预应力组合梁的有限元分析

摘要

Prestressing a steel girder reduces the required structural steel weight, limits tension stresses in the section, increases the ultimate strength, and increases the fatigue resistance. The technique of prestressing with tendons can be used for strengthening of existing bridges as well as for construction of new bridges. This thesis presents an analytical study of the behavior of simply-supported and continuous prestressed composite girders and describes the benefits of prestressing steel in composite construction. Analytical models are developed and used as a basis for a computer program that calculates the stresses and displacements in the cables and the girder at discrete number of nodes along the length of the girder. The effects of design variables such as prestress force, tendon profile, eccentricity and tendon length are studied. The results indicate that prestressing is an effective means of increasing the load carrying capacity of simple-span as well as continuous composite girders.
机译:对钢梁进行预应力可以减少所需的结构钢重量,限制截面中的拉应力,提高极限强度并提高抗疲劳性。筋束预应力技术可用于加固现有桥梁以及建造新桥梁。本文对简单支撑和连续预应力组合梁的性能进行了分析研究,并描述了预应力钢在组合结构中的优势。开发了分析模型,并将其用作计算机程序的基础,该计算机程序可计算沿梁的长度在离散数量的节点上的电缆和梁的应力和位移。研究了诸如预应力,肌腱轮廓,偏心率和肌腱长度等设计变量的影响。结果表明,预应力是增加简单跨度和连续组合梁的承载能力的有效方法。

著录项

  • 作者

    Tong Wenxia 1958-;

  • 作者单位
  • 年度 1990
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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