FLEXURAL TESTING OF VARIOUS COMPOSITE-BEAMSUNDER QUASI-STATIC LOADS

Wael Slika, A. Masri, O. Baalbaki
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Abstract

The successful interaction between concrete and steel has inspired researchers to develop composite structural systems. Steel and concrete are utilized in various configurations to reduce construction costs and assure optimal load-response behavior. Since the response spectrum of the composite system varies from one system to another, adequate understanding of the composite system behavior is essential to guarantee a desired response. Several parameters affect the flexural capacity and failure mode of a composite section, such as geometry, material properties and bond. In practice, advanced material mechanics and numerical modeling can be utilized for simulating section response, however, variability in the material response hinders accurate prediction. To serve as a benchmark and facilitate optimal composite section design, this paper presents a thorough experimental investigation of four types of composite beams under flexural loading. The first type represents reinforced concrete T-shaped beams confined by structural steel members. The second system comprises steel tubes filled with concrete. The third type consists of an open web steel joist encased in reinforced concrete. The fourth system represents rectangular shaped RC beams strengthened by steel plates. The results confirm the diversity of behavior of composite sections and reveal significant enhancement in the failure mode and flexural behavior as compared to control non-composite sections.
准静态载荷下各种复合梁的弯曲试验
混凝土和钢之间成功的相互作用激发了研究人员开发复合结构体系。钢和混凝土在各种配置中使用,以降低建筑成本并确保最佳的负载响应行为。由于复合系统的响应谱因系统而异,因此充分了解复合系统的行为对于保证期望的响应至关重要。几个参数影响复合材料截面的抗弯能力和破坏模式,如几何形状、材料性能和粘结。在实践中,先进的材料力学和数值模拟可以用来模拟截面响应,然而,材料响应的可变性阻碍了准确的预测。本文对受弯荷载作用下的四种组合梁进行了深入的试验研究,为优化组合梁截面设计提供参考。第一类为钢筋混凝土t型梁,受钢构件约束。第二个系统由填充混凝土的钢管组成。第三种类型由钢筋混凝土包裹的开腹板钢托梁组成。第四个系统代表由钢板加固的矩形RC梁。结果证实了复合材料截面性能的多样性,并且与对照非复合材料截面相比,复合材料截面的破坏模式和抗弯性能显著增强。
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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