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首页> 外文期刊>Journal of structural engineering >Unified Flexural Resistance Equations for Stability Design of Steel I-Section Members: Uniform Bending Tests
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Unified Flexural Resistance Equations for Stability Design of Steel I-Section Members: Uniform Bending Tests

机译:用于工字钢构件稳定性设计的统一抗弯方程:均匀弯曲试验

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摘要

The 2004 AASHTO and 2005 AISC provisions for flexural design of steel I-section members have been revised in their entirety relative to previous specifications to simplify their logic, organization, and application, while also improving their accuracy and generality. This paper evaluates the lateral-torsional and flange local buckling (LTB and FLB) predictions from these and previous specifications versus uniform bending experimental test results. A total of 154 rolled and 123 welded I-section member LTB tests, and 11 rolled and 36 welded I-section member FLB tests are considered. Reliability indices are estimated for load and resistance factor design (LRFD) of buildings based on the test statistics combined with established statistics for material and fabrication bias factors and the ASCE 7 load model. The notional reliability for LTB is found to be reasonably constant and consistent with the targeted level in the first AISC LRFD specification of 1986. The unified equations, combined with a design-oriented procedure for calculation of elastic LTB K factors, are shown to capture the test results accurately throughout the inelastic and elastic LTB ranges, leading to substantial liberalization of the calculated resistances in certain cases. The mean resistances for inelastic LTB and FLB are captured accurately by a linear equation in the corresponding slenderness parameters. The reliability for FLB is found to be slightly higher than that for LTB.
机译:2004年AASHTO和2005 AISC关于钢制I型截面构件抗弯设计的规定已相对于以前的规范进行了整体修订,以简化其逻辑,组织和应用,同时还提高了其准确性和通用性。本文评估了根据这些规范和先前的规范得出的横向扭转和凸缘局部屈曲(LTB和FLB)预测与均匀弯曲实验测试结果的对比。总共考虑了154个轧制和123个焊接I型截面构件LTB测试,以及11个轧制和36个焊接I型截面构件FLB测试。根据测试统计数据,已建立的材料和制造偏差因子统计数据以及ASCE 7负载模型,估算建筑物的载荷和阻力因子设计(LRFD)的可靠性指标。在1986年的AISC LRFD规范中,LTB的名义可靠性被认为是合理恒定的,并且与目标水平相一致。统一的方程式,结合以设计为导向的程序,用于计算弹性LTB K因子,表明了这一点。在整个非弹性和弹性LTB范围内均能准确地获得测试结果,从而在某些情况下可大大放宽计算出的电阻。非弹性LTB和FLB的平均电阻通过相应的细长参数中的线性方程式准确捕获。发现FLB的可靠性略高于LTB。

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