Behavior of Castellated Beams with and Without Stiffeners

C. S. Reddy, M. Kumar, Gandhavalla Madhavarao, Thirumalairaja R, Manikandan C
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Abstract

Castellated beam applications for diverse buildings are quickly gaining popularity. This is a result of the section's enhanced depth without adding weight, excellent strength-to-weight ratio, low maintenance requirements, and low cost of painting. Increased vertical bending stiffness, ease of service provision, and appealing appearance are the main advantages of castellated beams. Castellated beams are made by zigzaggingly cutting I sections, then rejoining them to increase the depth of the parent I sections. When castellated beams are loaded, their increased depth makes them more susceptible to web post buckling and lateral torsional buckling failure. There are numerous other forms of failure that must be considered, such as the development of flexure mechanisms, lateral torsional buckling, and vierendeel mechanisms, rupture of the welded joint in a web post, and shear buckling of a web post. A study demonstrates how using stiffeners in the beam's web part can reduce these failures. Therefore, it is necessary to do a thorough analysis of the stiffeners' number, size, and readily available places in the web part of the castellated beam. In order to explore the experimental and analytical behavior of the castellated beam with stiffeners, an attempt has been undertaken in the current paper. The outcome shows that using end stiffeners at the ends of castellated beams increases their strength and reduces their deflection.
加筋和不加筋城堡梁的性能
城堡梁在各种建筑中的应用正迅速普及。这是由于该段在不增加重量的情况下增加了深度,具有优异的强度重量比,维护要求低,涂装成本低。增加垂直弯曲刚度,易于提供服务,和吸引人的外观是城堡梁的主要优点。城堡梁是由锯齿形切割I段,然后重新连接它们,以增加母体I段的深度。当受荷载作用时,其深度的增加使其更容易发生腹板后屈曲和侧向扭转屈曲破坏。还有许多其他形式的失效必须考虑,如弯曲机制的发展,侧向扭转屈曲,纵向机制,腹板焊接接头的破裂,以及腹板的剪切屈曲。一项研究表明,在梁的腹板部分使用加强筋可以减少这些故障。因此,有必要对加强筋的数量、尺寸和在城形梁腹板部分的可用位置进行彻底的分析。为了探讨加筋的槽形梁的实验和分析性能,本文进行了尝试。结果表明,在城形梁端部加劲可提高其强度,减小其挠度。
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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