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Model Test for Fatigue Performance on New Type Solid Round Rigid Suspender for a High-Speed Railway Bridge

机译:高速铁路桥梁新型实心圆形刚性悬挂装置疲劳性能模型试验

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This paper presents a study on the fatigue performance of a new type solid round rigid suspender in a high-speed railway bridge. The relevant information about the model design, manufacture, loading procedure and test scheme is presented. The model test results show that the maximum axial stress amplitude are less than the allowable fatigue stress amplitude for most of the measuring points, and no crack occurs on the short and the long suspender models' body and connection structural detail after 2 million fatigue cycles, the fatigue performance meets the requirement. The bearing capacity test results after fatigue test show that the short and the long suspender models entering plastic state and without fracture under 131% and 119% of the test load. The suspenders' bearing capacity meets the design requirement. This fatigue model test study shows that the design of the new type solid round rigid suspender is reasonable and safe.
机译:本文提出了一种新型的高速铁路桥梁实心圆形刚性悬挂器的疲劳性能。介绍了有关模型设计,制造,加载过程和测试方案的相关信息。模型测试结果表明,在大多数测量点上,最大轴向应力幅度都小于允许的疲劳应力幅度,并且在经过200万次疲劳循环后,长短吊杆模型的主体和连接结构细节均未出现裂纹,疲劳性能符合要求。疲劳测试后的承载力测试结果表明,短和长吊杆模型在试验载荷的131%和119%下进入塑性状态且没有断裂。吊杆的承载能力符合设计要求。这项疲劳模型试验研究表明,新型实心圆形刚性悬挂器的设计是合理且安全的。

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