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Determining Efficient Strut-and-Tie Models for Simply Supported Beams Using Minimum Strain Energy

机译:使用最小应变能确定简单支撑梁的有效压杆和拉杆模型

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摘要

Strut-and-tie modeling is a design tool that can be used to address complicated problems where common assumptions made in sectional (beam) analysis do not apply. One early step in strut-and-tie modeling requires the user to envision a series of load paths within a structure. The literature contains little guidance on how to choose these load paths. This paper demonstrates how strain energy calculations can be used to quantify differences between different strut-and-tie models (STMs). The results provide insight and guidance for choosing an STM with minimum strain energy for simply supported beams. In addition, methodologies are provided that give the engineer the ability to judge the STM chosen and to affect positive changes if desired. Important conclusions include: 1) a three-panel STM shows improved efficiency over a single-panel STM; 2) the most efficient three-panel STM shows a characteristic geometry with a perpendicular compression strut and tension diagonal; 3) an analytical approach is discovered that supports using distributed longitudinal steel in D-regions; and 4) a simple method is presented to find the STM with the minimum strain energy. The work is directly applicable to deep beams and members in bending near reactions.
机译:拉杆和拉杆建模是一种设计工具,可用于解决在截面(梁)分析中采用的常见假设不适用的复杂问题。拉杆和拉杆建模的一个早期步骤要求用户设想结构中的一系列荷载路径。有关如何选择这些负载路径的文献几乎没有指导。本文演示了如何使用应变能计算来量化不同的拉杆和拉杆模型(STM)之间的差异。结果为选择简单支撑梁的最小应变能的STM提供了见识和指导。此外,还提供了使工程师能够判断所选STM并在需要时影响积极变化的方法。重要的结论包括:1)三面板STM显示出比单面板STM更高的效率; 2)最有效的三面板STM显示出具有垂直压缩支柱和张力对角线的特征几何形状; 3)发现了一种分析方法,该方法在D区使用分布式纵向钢进行支撑;和4)提出了一种简单的方法来找到具有最小应变能的STM。这项工作直接适用于深梁和在反应附近弯曲的构件。

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