Improving Behavior of Castellated Beam by Adding Spacer Plat and Steel Rings

H. W. Al-Thabhawee, M. A. Al-kannoon
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引用次数: 11

Abstract

Castellated steel beams are those members which are made from hot rolled steel I-section firstly by cutting the web in zigzag pattern and rejoining the two halves by welding together to form a hexagonal castellated beam such that the depth of section will be increased. Generally, the openings made in the web are with hexagonal shape; however, octagonal shape of web openings is typically obtained by providing spacer plate which is utilized to increase the depth of beam. Nowadays, using castellated beams in building construction becomes very popular because of their useful functions such as ease of service provision, strength and low cost. This study focuses on improving the behavior of hexagonal and octagonal castellated beam with spacer plate. The ultimate strength of the original (parent) Isection beam increases due to the increasing its depth. The increment of castellated beam depth; however, leads to post buckling in its web and to many other modes of failure when these beams are subjected for loading. Hexagonal and octagonal castellated beams which are fabricated using parent I-section (IPN140) are analyzed using finite element model (FEM).The analysis results revealed that using ring stiffeners around edge of holes contributes effectively in strengthening the web. It was found that using ring steel stiffeners can reduce the stress concentration around the edge of holes and improve the behavior of these beams by increasing the ultimate strength and minimizing the deflection. From the numerical (FEM) results obtained by using ANSYS14, it is concluded that ultimate strength of castellated beam can be improved by providing spacer plate and ring stiffeners around the web hole. Also, the results showed that ultimate strength of octagonal castellated steel beam can be increased up to (53%) more than the parent beam (IPN140) with providing only (13.0%) weight of steel (spacer plate plus ring steel stiffeners). Key word: Castellated steel beam (CSB), Spacer plate, Ring steel stiffeners, Ultimate strength, Parent section, Finite element method (FEM). Journal of University of Babylon, Engineering Sciences, Vol.(26), No.(4): 2018.
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通过添加间隔板和钢环改善连铸梁的性能
连体钢梁是以热轧工字型钢为材料,先将腹板切割成锯齿形,再将两半焊接成六角形连体钢梁,从而增加截面深度的构件。腹板开孔一般为六角形;然而,腹板开口的八角形通常是通过提供间隔板来增加梁的深度。如今,在建筑施工中使用城堡梁因其易于提供服务、强度高和成本低等有用功能而变得非常流行。本文主要研究了采用间隔板改善六边形和八边形槽形梁的性能。原(母)截面梁的极限强度随其深度的增加而增大。桩形梁深度增量;然而,当这些梁受到载荷时,导致其腹板后屈曲和许多其他模式的破坏。采用有限元模型对母工字截面(IPN140)制作的六角形和八角形槽形梁进行了分析。分析结果表明,在孔边加劲环能有效加强腹板。研究发现,采用环钢加强筋可以通过提高极限强度和减小挠度来降低孔边应力集中,改善梁的性能。利用ANSYS14软件进行数值计算,得出在腹板孔周围加劲隔板和环形加劲板可以提高群形梁的极限强度的结论。结果还表明,八角形槽形钢梁的极限强度比母梁(IPN140)提高了53%,而仅提供13.0%的钢重量(间隔板加环钢加强筋)。关键词:槽形钢梁,间隔板,环钢加强筋,极限强度,母截面,有限元法巴比伦大学学报,工程科学,Vol (26), No(4): 2018。
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