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Fatigue behavior of steel reinforced concrete (SRC) beams with different shear span-to-depth ratios

机译:剪跨纵横比不同的钢筋混凝土梁的疲劳性能

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摘要

There is an increase in the use of steel reinforced concrete (SRC) beams in high-speed railway platforms and bridges that are subjected to fatigue loading. It was found by the authors in their previous research on SRC beams under fatigue loading that flexural fatigue failure was the dominating failure mode when a large shear span-to-beam depth ratio (lambda) of 2.63 was used. Research on reinforced concrete (RC) beams under fatigue loading and research on SRC beams under static loading revealed that shear failure may dominate when the shear span-to-beam depth ratio gets smaller. It is unknown if shear fatigue failure will happen in SRC beams with smaller shear span-to-beam depth ratio. This paper presents an experimental investigation of fatigue behavior of SRC beams with shear span-to-beam depth ratio of 1.8, 1.5, 1.1 and 1.0. It was found that shear fatigue failure did not occur in all twenty-seven SRC beams tested even for lambda ratio as low as 1.0. Because the failure mode is found to be the same (i.e. dominated by flexural fatigue failure) for all the SRC beams with 2. ranging from 1.0 to 2.63, the test results of all 39 SRC beams under fatigue loading were grouped together to derive fatigue strength curves for SRC beam design.
机译:在承受疲劳载荷的高速铁路平台和桥梁中,越来越多地使用钢钢筋混凝土(SRC)梁。作者在先前对疲劳载荷下的SRC梁的研究中发现,当使用2.63的大剪力跨梁深度比(lambda)时,弯曲疲劳破坏是主要的破坏模式。疲劳荷载下钢筋混凝土梁的研究和静荷载下SRC梁的研究表明,当剪切跨梁深度比变小时,剪切破坏可能占主导地位。尚不知道剪切跨度与横梁深度比较小的SRC梁是否会发生剪切疲劳破坏。本文对剪力跨梁深度比为1.8、1.5、1.1和1.0的SRC梁的疲劳行为进行了实验研究。发现即使在λ比低至1.0的情况下,在所有测试的27个SRC梁中也没有发生剪切疲劳破坏。由于发现所有1.0到2.63范围内的SRC梁的失效模式相同(即以弯曲疲劳失效为主),因此将所有39根SRC梁在疲劳载荷下的测试结果组合在一起,以得出疲劳强度SRC梁设计的曲线。

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