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PIPE ELBOWS UNDER STRONG CYCLIC LOADING

机译:强力循环荷载下的管道弯头

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Motivated by the response of industrial piping under seismic loading conditions, the present study examines the behavior of steel process piping elbows, subjected to strong cyclic loading conditions. A set of experiments is conducted on elbow specimens subjected to constant-amplitude in-plane cyclic bending, resulting into failure in the low-cycle-fatigue range. The experimental results are used to develop a low-cycle-fatigue curve within the strain-based fatigue design framework. The experimental work is supported by finite element analyses, which account for geometrical and material nonlinearities. Using advanced plasticity models to describe the behavior of elbow material, the analysis focuses on localized deformations at the critical positions where cracking occurs. Finally, the relevant provisions of design codes (ASME B31.3 and EN 13480) for elbow design are discussed and assessed, with respect to the experimental and numerical findings.
机译:通过工业管道在地震载荷条件下的反应激励,本研究探讨了钢制工艺管道弯头的行为,经受强循环负载条件。在经过恒定幅度循环弯曲的肘部试样上进行一组实验,导致低循环疲劳范围的故障。实验结果用于在基于菌株的疲劳设计框架内发育低循环疲劳曲线。通过有限元分析支持实验性,这考虑了几何和材料非线性。使用先进的塑性模型来描述肘材料的行为,分析侧重于发生破裂的关键位置处的局部变形。最后,关于实验和数值发现,讨论并评估了肘部设计的设计代码(ASME B31.3和EN 13480)的相关规定。

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