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Load transfer mechanism and fatigue performance evaluation of suspender-girder composite anchorage joints at serviceability stage

机译:悬索梁复合锚固节点服役阶段的荷载传递机理及疲劳性能评估

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摘要

To evaluate the mechanical and fatigue behavior of composite suspender-girder anchorage joints in arch bridges, fatigue tests of two composite joints including pure-shear and shear-compression types were conducted and the load transfer mechanisms were evaluated based on the static loading. The experimental results indicated that both proposed composite anchorage joints presented great combined behavior. The load ratio of PBLs dropped sharply with the increase of embedded depth. Approximately 1/3 of the suspender tensile load was carried by the PBLs in the first row. Due to the redundant PBLs and large embedded depth, few loads were resisted by the bearing plate. Before and after the fatigue loading process, the shear amplitude of PBLs and the vertical stress distribution of concrete were almost consistent, indicating the favorable fatigue performance of joints. Parameterized solid nonlinear finite element models were established and verified by the test results to investigate the effect of total row number of PBLs and presence of bearing plate on the load transfer mechanics. The numerical results showed that the increase of total row number of PBLs enlarged the degree of irregularity of load distribution and reduced the load ratio of bearing plate. Finally, the load ratio formula of PBLs and bearing plate under serviceability stage was derived. The calculated load ratios were in good agreement with the test and numerical results. It was proposed that the total row numbers of PBLs were no 4 or 6 for the joints with or without bearing plate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了评估拱桥中的复合悬索梁锚固节点的力学和疲劳行为,对两种复合节点(包括纯剪切型和剪切压缩型)进行了疲劳测试,并基于静载荷评估了载荷传递机理。实验结果表明,两种拟议的复合锚固接头均具有良好的综合性能。随着埋深的增加,PBL的负载率急剧下降。第一行中的PBL承受大约1/3的吊架拉伸载荷。由于冗余的PBL和较大的嵌入深度,因此轴承板可承受的载荷很小。在疲劳荷载作用前后,PBLs的剪切幅度与混凝土的垂直应力分布基本一致,表明接头具有良好的疲劳性能。建立了参数化的固体非线性有限元模型,并通过测试结果进行了验证,以研究PBL的总行数和承压板的存在对载荷传递力学的影响。数值结果表明,PBL总行数的增加,增大了载荷分布的不均匀度,减小了支承板的载荷比。最后,推导了可维修阶段的PBL与支承板的载荷比公式。计算的载荷比与试验和数值结果吻合良好。建议带或不带承压板的接头的PBL的总行数不大于4或6。 (C)2018 Elsevier Ltd.保留所有权利。

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