Degree of composite action of steel beams with precast concrete hollow core slabs

Parinaz Panjehbashi Aghdam , Serge Parent , David W. Dinehart , Nathalie Roy
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引用次数: 0

Abstract

Different construction challenges followed by harsh environmental conditions triggered the human intention to precast composite structures. The precast concrete hollow core (PCHC) slabs have been popular, especially for multi-story long-span composite structures. In comparison to conventional solid concrete slabs, they have the advantages of being more lightweight, fire-resistant, soundproof, and cost-effective. However, the composite action between the steel beams and PCHC slabs is neglected in the design codes. This paper aims to investigate the composite action between the PCHC slabs and steel beams through an experimental study. Two full-scale flexural tests were performed on specimens of 203 cm and 254 cm PCHC slabs connected to the steel beam via 19 mm diameter shear studs. Instrumentations and data acquisition systems recorded the failure modes and crack formations. Also, the digital image correlation (DIC) technique was applied to capture the neutral axis position during the loading process. Finally, the degree of composite action (DCA), an important parameter to describe the structural behavior of the composite beam, was calculated based on the analytical and experimental bending moments of the specimens.
钢梁与预制混凝土空心板的复合作用程度
不同的施工挑战和恶劣的环境条件引发了人类对预制复合结构的关注。预制混凝土空心板(PCHC)一直很受欢迎,尤其是在多层大跨度复合结构中。与传统的实心混凝土板相比,它具有重量轻、耐火、隔音和成本效益高等优点。然而,设计规范中忽略了钢梁与 PCHC 板之间的复合作用。本文旨在通过实验研究 PCHC 板与钢梁之间的复合作用。通过直径为 19 毫米的剪力螺柱将 203 厘米和 254 厘米的 PCHC 板与钢梁连接起来,对试样进行了两次全尺寸抗弯试验。仪器和数据采集系统记录了破坏模式和裂缝的形成。此外,还采用了数字图像相关(DIC)技术来捕捉加载过程中的中性轴位置。最后,根据试样的分析和实验弯矩计算了复合作用度(DCA),这是描述复合梁结构行为的一个重要参数。
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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CiteScore
1.70
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