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Residual bearing capacity of steel-concrete composite beams under fatigue loading

机译:疲劳负荷下钢混凝土复合梁的剩余承载力

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摘要

This study was conducted to investigate the residual bearing capacity of steel-concrete composite beams under high-cycle fatigue loading through experiments and theoretical analysis. Six test beams with stud connectors were designed and fabricated for static, complete fatigue, and partial fatigue tests. The failure modes and the degradation of several mechanical performance indicators of the composite beams under high-cycle fatigue loading were analyzed. A calculation method for the residual bearing capacity of the composite beams after certain quantities of cyclic loading cycles was established by introducing nonlinear fatigue damage models for concrete, steel beam, and shear connectors beginning with the material residual strength attenuation process. The results show that the failure mode of the composite beams under the given fatigue load appears to be primarily affected by the number of cycles. As the number of fatigue loadings increases, the failure mode transforms from mid-span concrete crushing to stud cutting. The bearing capacity of a 3.0-m span composite beam after two million fatigue cycles is degraded by 30.7% due to premature failure of the stud. The calculated values of the residual bearing capacity method of the composite beam established in this paper agree well with the test values, which indicates that the model is feasibly applicable.
机译:通过实验和理论分析,进行该研究以研究高循环疲劳负载下钢混凝土复合梁的剩余承载力。设计和制造带螺柱连接器的六个测试梁,用于静态,完全疲劳和部分疲劳试验。分析了在高循环疲劳负载下复合梁几种机械性能指标的故障模式和劣化。通过从材料残余强度衰减过程开始的混凝土,钢梁和剪切连接器的非线性疲劳损伤模型建立了多种循环加载循环后复合梁残余承载能力的计算方法。结果表明,在给定的疲劳负荷下的复合梁的故障模式似乎主要受循环次数的影响。随着疲劳负荷的数量增加,失效模式从中间跨度混凝土压碎转换为螺柱切割。由于螺柱过早失效,200万疲劳循环后3.0米跨度复合梁的承载力降低了30.7%。在本文中建立的复合光束的剩余承载能力方法的计算值与测试值吻合得很好,这表明该模型是可行的。

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