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Current and New Approaches to Predict the Deflections of One-Way Flexural Members with a Focus on Composite Steel Deck Slabs Voided by Circular Tubes

机译:预测单向弯曲构件的偏转与圆形管空隙的复合钢甲板板的单向弯曲构件的偏转

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摘要

A new type of composite voided slab, the TUBEDECK (TD), which utilizes the structural function of profiled steel decks, has recently been proposed. Previous studies have confirmed that the flexural strength of TD slabs can be calculated based on the full composite contribution of the steel deck, but for long-span flexural members, the deflection serviceability requirement is often dominant. Herein, we derived a novel deflection prediction approach using the results of flexural tests on slab specimens, focusing on TD slabs. First, deflection prediction based on modifications of the current code was proposed. Results revealed that TD slabs exhibited smaller long-term deflections and at least 10% longer maximum span lengths than solid slabs, indicating their greater efficiency. Second, a novel rational method was derived for predicting deflections without computing the effective moment of inertia. The ultimate deflections predicted by the proposed method correlated closely with the deflection under maximum bending moments. To calculate immediate deflections, variation functions for the concrete strain at the extreme compression fiber and neutral axis depth were assumed with predictions in good agreement with experiments. The proposed procedure has important implications in highlighting a new perspective on the deflection prediction of reinforced concrete and composite flexural members.
机译:最近提出了一种新型的复合空隙板,该模块(TD),其利用异形钢甲板的结构功能。以前的研究证实,TD板的弯曲强度可以基于钢甲板的完整复合贡献来计算,但对于长跨度弯曲构件,偏转可用性需求通常是显性的。这里,我们使用板坯样本上的弯曲试验结果来源的新颖偏转预测方法,专注于TD板。首先,提出了基于当前代码的修改的偏转预测。结果表明,TD板块表现出较小的长期偏转,比固体板的最大跨度长度至少为10%,表明其提高效率。其次,导出了一种新的Rational方法,用于预测偏转而不计算惯性的有效时刻。所提出的方法预测的终极偏转与最大弯矩下的偏转密切相关。为了计算立即偏转,假设具有良好协议的极端压缩纤维和中性轴深度在极压纤维和中性轴深度的混凝土应变的变化功能。该拟议的程序对突出钢筋混凝土和复合弯曲构件偏转预测的新观点具有重要意义。

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