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Second Order Effect in Unbraced Steel Frames at Ultimate State

机译:无支撑钢框架在极限状态下的二阶效应

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摘要

Second order effect is evaluated for unbraced frames at ultimate state. As a case study, an unbraced one bay frame is evaluated using first order elastic, second order elastic, first order plastic and second order plastic analyses. Second order plastic analysis is based on proposed procedures using magnification factor as its basis. These procedures take the effect of formation of plastic hinges and in turn, the softening of the frame on the critical load (buckling load) of the frame into consideration. It has been found by second order plastic analysis that frame strength dramatically deteriorates after formation of the second plastic hinge. While first order plastic analysis puts the strength on the ascending branch, second order analysis puts the strength on the descending branch of load-deformation curve regardless of the level of axial load in the system. It has also been found that while full mechanism failure develops under low levels of axial load, it cannot develop under moderate and high levels of axial loads. Furthermore, it has been found that the strength deteriorate rapidly after formation of the second plastic hinge leads to early collapse before the development of full failure mechanism. The codes are challenged to produce practical procedures for second order effect to account for structure behavior at ultimate state.
机译:对于处于最终状态的无支撑框架,将评估二阶效果。作为案例研究,使用一阶弹性,二阶弹性,一阶塑性和二阶塑性分析来评估无支撑的单托架框架。二阶塑性分析基于以放大倍数为基础的拟议程序。这些步骤考虑到形成塑料铰链的影响,进而考虑了框架的软化对框架的临界载荷(屈曲载荷)的影响。通过二阶塑性分析已经发现,在形成第二塑料铰链之后,框架强度急剧下降。一阶塑性分析将强度放在上升支路上,而二阶分析将强度放在荷载-变形曲线的下降支路上,而与系统中的轴向载荷水平无关。还已经发现,虽然在低水平轴向载荷下会出现完整的机构故障,但在中等水平和较高水平的轴向载荷下却不会发展。此外,已经发现,在形成第二塑料铰链之后,强度迅速降低,导致在完全破坏机理发展之前的早期塌陷。挑战这些代码以产生用于产生二阶效应的实用程序,以说明最终状态下的结构行为。

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