Effect of Concrete Slab on Built-up Double Web Castellated Steel Beam under Combined Flexural and Torsion Load

Farroq A Abass, Alaa M. Al-Khekany
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Abstract

The research examines the behavior and reactions of six double-web steel sections of non-composite and composite-reinforced concrete deck slabs and castellated steel beams. The composite beams with concrete slabs and non-composite steel beams with different levels of castellation were isolated from the specimens at 0%, 25%, and 50%. The ultimate strength, load at cracking, failure mechanism, load/deflection relationship at midspan, stiffness, and ductility were evaluated. The concrete slab increased the ultimate load by 61.1%, 63.3%, and 55.5% for castellation ratios of 0%, 25%, and 50%, respectively. The non-composite and composite castellated beams' shear strength decreased as the expansion ratio increased. The angle twist of non-composite samples was greater than that of composite samples due to their greater ductility and lower stiffness. The concrete slab also restricted the samples and reduced their rotation.
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混凝土板在组合挠曲和扭转载荷下对内置双腹板浇注钢梁的影响
研究考察了非复合材料和复合材料加固混凝土桥面板以及浇注钢梁的六个双网钢截面的行为和反应。在 0%、25% 和 50%的试样中分离出了带混凝土板的复合梁和不同浇注程度的非复合钢梁。对极限强度、开裂荷载、破坏机理、中跨荷载/挠度关系、刚度和延性进行了评估。当浇注率为 0%、25% 和 50%时,混凝土板的极限荷载分别增加了 61.1%、63.3% 和 55.5%。非复合材料和复合材料浇注梁的抗剪强度随着膨胀比的增加而降低。非复合材料样品的角度扭转大于复合材料样品,这是因为它们具有更大的延展性和更低的刚度。混凝土板也限制了样品并减少了其旋转。
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