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TRIPPING ANALYSIS AND DESIGN CONSIDERATION OF PERMANENT MEANS OF ACCESS STRUCTURE

机译:永久性出入结构的脱扣分析与设计考虑

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An efficient Rayleigh-Ritz approach is presented for analyzing the lateral-torsional buckling ("tripping") behavior of permanent means of access (PMA) structures. Tripping failure is dangerous and often occurs when a stiffener has a tall web plate. For ordinary stiffeners of short web plates, tripping usually occurs after plate local buckling and often happens in plastic range. Since PMA structures have a wide platform for a regular walk-through inspection, they are vulnerable to elastic tripping failure and may take place prior to plate local buckling. Based on an extensive study of finite element linear buckling analysis, a strain distribution is assumed for PMA platforms. The total potential energy functional, with a parametric expression of different supporting members (flat bar, T-stiffener and angle stiffener), is formulated, and the critical tripping stress is obtained using eigenvalue approach. The method offers advantages over commonly used finite element analysis because it is mesh-free and requires only five degrees of freedom; therefore the solution process is rapid and suitable for design space exploration. The numerical results are in agreement with NX NASTRAN [l1 linear buckling analysis. Design recommendations are proposed based on extensive parametric studies.
机译:提出了一种有效的Rayleigh-Ritz方法,用于分析永久性通道(PMA)结构的横向扭转屈曲(“绊倒”)行为。跳闸失败是危险的,通常在加劲肋具有较高的腹板时发生。对于短腹板的普通加劲肋,跳闸通常发生在板局部屈曲之后,并且经常发生在塑性范围内。由于PMA结构具有广泛的平台,可进行常规的通过检查,因此它们很容易发生弹性跳闸故障,并且可能会在板局部屈曲之前发生。基于对有限元线性屈曲分析的广泛研究,假定了PMA平台的应变分布。公式化了具有不同支撑构件(扁钢,T型加强筋和角形加强筋)的参数表示形式的总势能函数,并使用特征值方法获得了临界跳闸应力。该方法无网格且仅需要五个自由度,因此与常用的有限元分析相比具有优势。因此,解决方案过程迅速,适用于设计空间探索。数值结果与NX NASTRAN [11线性屈曲分析]一致。根据广泛的参数研究提出了设计建议。

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