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Elasto-Plastic Analysis of Steel Framed Structures Based on Rigid Body Rule and Plastic-Hinge Concept

机译:基于刚体规则和塑料铰链概念的钢框架结构弹性塑性分析

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摘要

Aimed at its elegance, the rigid-body-based procedure for geometric nonlinear analysis is extended to including the plastic-hinge concept for elasto-plastic analysis of framed structures. To this end, the rigid body test for initially stressed elements is first briefed, followed by derivation of the tangent stiffness of the 2D elasto-plastic beam element using the initial and full yield surfaces to consider gradual yielding of the cross-section. Of theoretical importance, the tangent and geometric stiffnesses are jointly tested by the rigid body rule for initially stressed elements. The above concepts are contained in the global and local strategies, respectively, for tracing the load- deflection curves and for performing the trial-and-error iterations. The former can deal with the formation of multi plastic hinges, in addition to multi-critical points, whereas the latter is strongly rooted in the rigid body rule and thus is free of fictitious forces (source of slow convergence). The accuracy and efficiency of the solutions obtained are confirmed by comparison with the existing ones. In conclusion, the procedure proposed in its entity makes the elasto-plastic analysis simpler and faster. The more complicated the problem is, the greater the saving in computation time using the proposed procedure. Since only minimal mathematical operations are required, this procedure has the potential of being widely accepted by structural engineers in routine analysis.
机译:旨在优雅,基于刚体非线性分析的过程延伸到包括塑料铰链概念,用于框架结构的弹性塑性分析。为此,首先向最初应力元件进行刚性体检测,然后使用初始和满率表面推导2D弹性塑料梁元件的切线刚度,以考虑横截面的逐渐产生。理论重要性,切线和几何刚度由初始压力元素的刚体规则共同测试。以上概念分别包含在全局和本地策略中,用于跟踪负载偏转曲线并执行试验和错误迭代。前者可以处理多重塑料铰链的形成,除了多关键点之外,后者在刚体规则中根深蒂固,因此没有虚构的力量(缓慢收敛的来源)。通过与现有的溶液的准确性和效率确认。总之,其实体中提出的程序使弹塑性分析更简单,更快。问题越复杂,使用所提出的过程节省的计算时间越大。由于仅需要最小的数学操作,因此该过程具有在常规分析中被结构工程师被广泛接受的潜力。

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