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Proposal to Improve the DSM Design of Cold-Formed Steel Angle Columns: Need, Background, Quality Assessment, and Illustration

机译:改进冷弯型钢角钢塔的DSM设计的提案:需求,背景,质量评估和插图

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This paper presents a proposal for the codification of an efficient design approach based on the direct strength method (DSM) for cold-formed steel equal-leg angle columns with short-to-intermediate lengths, i.e., those buckling in flexural-torsional modes. Initially, the available experimental failure load data consisting of fixed-ended and pin-ended (cylindrical hinges) columns with several geometries (cross-section dimensions and lengths) and tested by various researchers are collected. These are used to show that the currently codified DSM design provisions are not able to handle adequately short-to-intermediate angle columns and that a specific DSM-based design approach is needed to estimate the failure loads of such columns. Then, the paper presents a brief overview of the structural reasoning behind the proposed DSM-based design approach. Next, the quality (accuracy and reliability) of the failure load estimates obtained with this design approach is assessed through the comparison with the aforementioned experimental failure load data and also a fairly large number of numerical failure loads previously obtained by the authors. This merit assessment includes the determination of the load-resistance factor design (LRFD) resistance factors concerning the failure-to-predicted load ratios. It is shown that the value recommended for compression members by the North American specification, phi c=0.85, can also be adopted for short-to-intermediate angle columns designed with this DSM-based approach. Finally, the paper presents and discusses a few numerical examples that illustrate the application of the proposed design approach and provide evidence of its user-friendliness and advantages/benefits when compared with the currently codified one.
机译:本文提出了一种对直接长度法(DSM)的有效设计方法进行编码的建议,该方法适用于短至中间长度(即弯曲挠曲模式下的屈曲)的冷弯钢制等边角钢柱。最初,收集由具有几种几何形状(横截面尺寸和长度)的固定端和销端(圆柱铰链)柱组成的可用实验失效载荷数据,并由各种研究人员进行了测试。这些被用来表明当前已编纂的DSM设计规定不能处理足够短到中间的角柱,并且需要一种基于DSM的特定设计方法来估计这种柱的破坏载荷。然后,本文简要介绍了所提出的基于DSM的设计方法背后的结构推理。接下来,通过与上述实验性故障载荷数据以及作者先前获得的相当数量的数字故障载荷进行比较,来评估通过这种设计方法获得的故障载荷估计的质量(准确性和可靠性)。优点评估包括确定与故障预测负载比有关的负载抵抗因子设计(LRFD)抵抗因子。结果表明,北美规范推荐的压缩构件值phi c = 0.85,也可以用于采用这种基于DSM的方法设计的短至中角柱。最后,本文提出并讨论了一些数值示例,这些示例说明了所提出的设计方法的应用,并提供了与当前已编纂的方法相比其用户友好性和优点/优点的证据。

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