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闭口肋加劲板屈曲临界应力计算方法

张茜 狄谨 周绪红

张茜, 狄谨, 周绪红. 闭口肋加劲板屈曲临界应力计算方法[J]. 交通运输工程学报, 2012, 12(5): 37-42. doi: 10.19818/j.cnki.1671-1637.2012.05.005
引用本文: 张茜, 狄谨, 周绪红. 闭口肋加劲板屈曲临界应力计算方法[J]. 交通运输工程学报, 2012, 12(5): 37-42. doi: 10.19818/j.cnki.1671-1637.2012.05.005
ZHANG Qian, DI Jin, ZHOU Xu-hong. Calculation method of critical buckling stress for stiffened plate with closed ribs[J]. Journal of Traffic and Transportation Engineering, 2012, 12(5): 37-42. doi: 10.19818/j.cnki.1671-1637.2012.05.005
Citation: ZHANG Qian, DI Jin, ZHOU Xu-hong. Calculation method of critical buckling stress for stiffened plate with closed ribs[J]. Journal of Traffic and Transportation Engineering, 2012, 12(5): 37-42. doi: 10.19818/j.cnki.1671-1637.2012.05.005

闭口肋加劲板屈曲临界应力计算方法

doi: 10.19818/j.cnki.1671-1637.2012.05.005
基金项目: 

国家自然科学基金项目 50608005

详细信息
    作者简介:

    张茜(1982-), 女, 陕西大荔人, 兰州大学讲师, 长安大学工学博士研究生, 从事钢结构与钢-混组合结构桥梁研究

    周绪红(1956-), 男, 湖南南县人, 中国工程院院士, 兰州大学教授, 工学博士

  • 中图分类号: U448.213

Calculation method of critical buckling stress for stiffened plate with closed ribs

More Information
    Author Bio:

    ZHANG Qian(1982-), female, lecturer, doctoral student, +86-931-8915368, windzhq@163.com

    ZHOU Xu-hong(1956-), male, academician of Chinese Academy of Engineering, professor, PhD, +86-931-8915368, zhouxuhong@126.com

  • 摘要: 采用能量法, 推导了单向均匀受压四边简支闭口肋加劲板屈曲临界应力计算方法, 考虑加劲肋扭转刚度的影响, 按照截面实际形心位置计算了加劲肋和母板的抗弯刚度。以苏通大桥钢箱梁中采用的梯形闭口肋加劲板为例, 采用Timoshenko方法、小西一郎方法、板壳有限元法及提出的能量法进行了屈曲临界应力比较。分析结果表明: 加劲板长宽比β小于1时, Timoshenko方法和小西一郎方法计算的临界应力与钢材屈服强度比值λ大于能量法计算值; β在1~6之间时, Timoshenko方法和小西一郎方法计算的λ值小于能量法计算值; β在3~6之间时, 能量法计算值与有限元分析结果最接近, 偏差在9%~25%之间。可见, 采用能量法进行正交异性钢箱梁顶、底板弹性稳定分析可行。

     

  • 图  1  闭口肋加劲板

    Figure  1.  Stiffened plate with closed ribs

    图  2  加劲板基本构造

    Figure  2.  Basic constrution of stiffened plate

    图  3  SP1加劲板屈曲临界应力比较

    Figure  3.  Comparison of critical buckling stresses for SP1

    图  4  SP2加劲板屈曲临界应力比较

    Figure  4.  Comparison of critical buckling stresses for SP2

    图  5  SP3加劲板屈曲临界应力比较

    Figure  5.  Comparison of critical buckling stresses for SP3

    图  6  SP4加劲板屈曲临界应力比较

    Figure  6.  Comparison of critical buckling stresses for SP4

    表  1  加劲板参数

    Table  1.   Parameters of stiffened plates mm

    加劲板号 参数
    B t bf bs h tw tf R1 R2
    SP1 800 24 404 254 262 8 8 34 34
    SP2 800 20 404 254 262 8 8 34 34
    SP3 800 18 404 254 262 8 8 34 34
    SP4 800 16 404 254 262 8 8 34 34
    下载: 导出CSV

    表  2  三种方法计算的λ值与有限元法计算值的偏差比例

    Table  2.   Difference ratios ofλvalues calculated by three methods to values calculated by finite element method %

    加劲板号 计算方法 β
    1 2 3 4 5 6
    SP1 Timoshenk 33 -39 -65 -72 -68 -62
    小西一郎 48 -33 -62 -70 -67 -61
    本文 52 34 17 10 19 25
    SP2 Timoshenk 50 -36 -66 -76 -76 -73
    小西一郎 65 -30 -64 -74 -75 -72
    本文 64 37 19 9 14 18
    SP3 Timoshenk 62 -33 -66 -77 -78 -77
    小西一郎 76 -28 -63 -76 -77 -76
    本文 71 40 21 10 14 16
    SP4 Timoshenk 61 -30 -65 -78 -80 -80
    小西一郎 73 -24 -63 -76 -79 -80
    本文 65 44 24 11 15 16
    下载: 导出CSV
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  • 收稿日期:  2012-03-06

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