Stress analysis of stiffener plate at the base of the overhanging traffic sign post under effect of vehicle-induced gusts

Luangsod Somchai, T. Anan, F. Thongchai, C. Prakorb
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引用次数: 2

Abstract

This research is an analysis of stiffener plate dimensions at the column base of the overhanging traffic sign post under effect on vehicle-induced gusts. The finite element analysis (FEA) result is compared with the result form computation using mathematical equation and an experimental result which cited from Fongsamootr T. and Chartpuk P. [2006]. It is found that the FEA result has deviation about 1% and 8% respectively. Traffic sign post structure is exerted by three forces in the same time; body force, Vehicle-Induced Gusts and wind load. The higher stiffener plate leads to decrease of maximum stress at the column base. Height extension of stiffener plate from 250 to 350 mm with fixed thickness and base width leads to increase in the safety factor of column and stiffener plate. Rectangular stiffener plate with cut off a corner (type C) is the best type for supporting the base of traffic sign post column. Cutting of a corner of rectangular stiffener plate results increase of stress in itself but less than maximum stress in traffic sign post column.
车辆阵风作用下悬垂交通标志柱底部加劲板应力分析
本文研究了车辆阵风作用下悬挑交通标志柱基础加劲板尺寸的影响。采用数学方程和引用Fongsamootr T. and Chartpuk P.[2006]的实验结果,将有限元分析(FEA)结果与计算结果进行比较。结果表明,有限元分析结果偏差分别为1%和8%左右。交通标志立柱结构受三种力量同时作用;车身力,车辆诱导阵风和风荷载。加劲板越高,柱底最大应力越小。在固定厚度和基础宽度的情况下,加筋板高度由250 mm增加到350 mm,使柱和加筋板的安全系数增加。截角矩形加筋板(C型)是支撑交通标志立柱底座的最佳型式。矩形加劲板截角后,其本身应力增大,但小于交通标志柱的最大应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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