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Deformation behavior at SLS of welded I-section steel beams with longitudinally profiled flanges

机译:带有纵剖面法兰的焊接工字型钢梁在SLS处的变形行为

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Welded I-section steel beams with longitudinally profiled (LP) flanges, in which LP steel plates are utilized as the flanges may be applied to achieve structural optimization. Their special geometry raises challenges in deformation design, which leads to requirement of calculation equations. In this paper, theoretical solutions for mid span deflections considering the influence of variable flange thickness have been deduced with the unit-load method and mathematical integration, and three different static loading conditions are incorporated. Then the reliability is verified by comparing with finite element (FE) models and test results. Straightforward design formulae are proposed by introducing a coefficient on the basis of formulae of conventional beams, which depends on all independent geometrical parameters and is determined through a nonlinear fitting of abundant theoretical results. It also indicated that remarkable amount of steel could be saved with a certain amount increase of additional deformation. The formulae developed herein for SLS deformation design of LP beams may be applied in practical construction design of building and bridge structures, which may also promote application of such advanced steel products. (C) 2018 Elsevier Ltd. All rights reserved.
机译:可以使用带有纵向轮廓(LP)法兰的焊接I型钢梁,其中使用LP钢板作为法兰,可以实现结构优化。它们的特殊几何形状在变形设计中提出了挑战,从而导致需要计算方程。本文通过单位荷载法和数学积分推导了考虑翼缘可变厚度影响的中跨挠度的理论解,并结合了三种不同的静载荷条件。然后通过与有限元(FE)模型和测试结果进行比较来验证可靠性。通过在常规梁公式的基础上引入系数来提出简单的设计公式,该系数取决于所有独立的几何参数,并通过大量理论结果的非线性拟合确定。这也表明,随着额外变形量的增加,可以节省大量钢材。本文开发的用于LP梁的SLS变形设计的公式可以应用于建筑和桥梁结构的实际施工设计中,这也可以促进此类高级钢产品的应用。 (C)2018 Elsevier Ltd.保留所有权利。

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