Effect of Beam Length and Braced Length on Moment-Rotation Behavior of Castellated Beams

M. Gerami, H. Saberi, V. Saberi, A. Firouzi
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引用次数: 3

Abstract

The presence of web openings in castellated beams introduces different modes of failure at the perforated sections such as excessive stresses in tee-sections, excessive stresses in mid-depth of the web post, web-post buckling, developing plastic Vierendeel mechanism. This paper presents nonlinear behavior of castellated beams under moment gradient loading and investigates the effect of beam length and braced length on moment-rotation behavior and ductility of this type of beams. Accuracy of finite element models of plain-webbed beams is evaluated comparing moment-rotation behavior and failure mode of other researchers’ numerical models and cleared a satisfactory accuracy. Rotational capacity of castellated beams, derived from numerical modeling, is compared with corresponding I-shaped plain-webbed steel beams and it is cleared that for the short beams, web openings reduce energy absorbance and plastic moment capacity of the beams more than long ones.
梁长和支撑长度对槽形梁矩转性能的影响
城形梁腹板开口的存在在穿孔部分引入了不同的破坏模式,如三节截面的过度应力,腹板中深度的过度应力,腹板屈曲,发展塑性Vierendeel机制。本文介绍了弯矩梯度荷载作用下筒形梁的非线性特性,并研究了梁长和支撑长度对筒形梁的弯矩转动特性和延性的影响。通过比较前人数值模型的弯矩转动特性和破坏模式,对平腹板梁有限元模型的精度进行了评价,得到了满意的精度。数值模拟结果表明,与相应的i型平腹板钢梁相比,腹板开口对短梁的吸能和塑性弯矩的影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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