采用杆系模型对桩承台3号桩在偏心荷载作用下的结构性能进行了数值设计

Panji Ginaya Taufik, D. Sulistyo, A. Aminullah
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引用次数: 0

摘要

承台是一种将上部结构的荷载分配给下部结构的结构。桩承台的设计通常被视为以桩为约束的双向板或梁,分别考虑弯曲和剪切。与传统方法分别考虑单向剪切、双向剪切和弯曲的情况一样。用桁架模型逼近承台的应力轨迹,可作为承台设计的另一种方法。本研究将采用常规方法和拉杆模型进行桩承台的设计,桩承台为3桩承台,外加偏心荷载。然后使用Abaqus对结果进行数值测试,以确定行为的差异。柱拉模型法得到的主筋结果受力比常规方法更均匀,达到柱拉模型法主筋屈服应力所需的竖向荷载(1100 kN)大于常规方法(900 kN)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STRUCTURAL BEHAVIOR OF PILE CAP 3 PILE WITH EKSENTRIC LOAD DESIGNED USING STRUT AND TIE MODEL WITH NUMERICAL METHOD
Pile cap is a structure to distribute load from the upper structure to the sub structure. Often the planning of the pile cap is approached as a two way slab or beam with pile as restrain, by consider the bending and shear separately. As is the case with conventional methods that consider 1-way shear, 2-way shear, and bending separately. The strut and tie model can be used as an alternative method in designing a pile cap, by approaching the stress trajectory with the truss model. In this study, a pile cap will be designed using the conventional method and the strut and tie model, the pile cap with 3 pile cap and an eccentric load. Then the results are tested numerically using Abaqus to determine the difference in behavior. The main reinforcement results from the strut and tie model method are more evenly stressed than the conventional method, also the vertical load needed to achieve the main reinforcement yield stress strut and tie model (1100 kN) is greater than the conventional method (900 kN).
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