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首页> 外文期刊>Journal of structural engineering >Cold-Formed Steel Lipped Channel Columns Influenced by Local-Distortional Interaction: Strength and DSM Design
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Cold-Formed Steel Lipped Channel Columns Influenced by Local-Distortional Interaction: Strength and DSM Design

机译:受局部变形相互作用影响的冷弯钢唇形通道柱:强度和DSM设计

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This paper deals with the ultimate strength and design of fixed-ended lipped channel columns experiencing local-distortional buckling mode interaction. First, the paper reports the results of an experimental investigation involving a set of 26 columns with several cross-section dimensions and yield stresses that were tested to determine their failure loads and also to provide experimental evidence of the occurrence of local-distortional mode interaction. These results consist of the column geometries, material properties, initial geometric imperfections, nonlinear equilibrium paths, and ultimate strength values. Then, after comparing the experimental column ultimate loads with the estimates provided by the current direct strength method (DSM) design curves against local and distortional failures, which clearly show that they lead to inaccurate and often very unsafe ultimate strength estimates, the paper presents and assesses the quality of DSM-based design procedures based on approaches providing nominal strengths against local-distortional and distortional-local interactive failures. Next, an in-depth comparison is made between all the experimental ultimate strength results available in the literature and their estimates provided by the preceding DSM design procedures. Finally, the paper closes with design considerations and recommendations, motivated by the conclusions drawn from this investigation.
机译:本文讨论了经历局部-扭曲屈曲模式相互作用的固定端唇形通道柱的极限强度和设计。首先,本文报告了一项实验研究的结果,该实验涉及一组26个具有若干横截面尺寸和屈服应力的圆柱,这些圆柱经测试以确定其破坏载荷,并提供发生局部-变形模式相互作用的实验证据。这些结果包括柱的几何形状,材料特性,初始几何缺陷,非线性平衡路径和极限强度值。然后,在将试验柱的极限载荷与当前的直接强度方法(DSM)设计曲线提供的估计值进行比较之后,针对局部破坏和变形破坏进行了比较,这些结果清楚地表明,它们会导致不准确且通常非常不安全的极限强度估计,评估基于DSM的设计程序的质量,该方法基于可提供针对局部变形和局部变形的交互式故障的标称强度的方法。接下来,在文献中提供的所有实验极限强度结果与先前DSM设计程序提供的估计值之间进行了深度比较。最后,本文以设计调查和建议作为结尾,以本次调查得出的结论为动力。

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