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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF PRESSURIZED PIPE ELBOWS UNDER STRONG CYCLIC LOADING

机译:强循环荷载作用下加压弯管的实验与数值研究

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The present work examines the behavior of pipe elbows subjected to strong cyclic in-plane bending loading in the presence of internal pressure. In the first part of this work the experimental procedure is presented in detail. The tests are conducted in a constant amplitude displacement-controlled mode resulting to failures in the low-cycle fatigue range. The overall behavior of each tested specimen, as well as the evolution and concentration of local strains are monitored throughout the testing procedure. Different internal pressure levels are used in order to examine their effect on the fatigue life of the specimens. The above experimental investigation is supported by rigorous finite element analysis. Using detailed dimensional measurements and material testing obtained prior to specimen testing, detailed numerical models are developed to simulate the conducted experiments. An advanced cyclic plasticity material model is employed for the simulation of the tests. Emphasis is given on the local strain development at the critical part of the elbow where cracking occurs. Finally, the results of the present investigation are compared with available design provisions in terms of both ultimate capacity and low-cycle fatigue.
机译:目前的作品在存在内部压力存在下,检查管肘对在存在强循环面内弯曲加载的情况下的行为。在这项工作的第一部分中,详细介绍了实验程序。测试在恒定幅度位移控制模式下进行,导致低周期疲劳范围的故障。在整个测试程序中监测每个测试样本的总体行为以及局部菌株的演化和浓度。使用不同的内部压力水平以检查它们对样本疲劳寿命的影响。上述实验研究是通过严格的有限元分析来支持。使用在试样测试之前获得的详细尺寸测量和材料测试,开发了详细的数值模型来模拟进行的实验。采用先进的循环可塑性材料模型来模拟测试。对肘部关键部分的局部应变发育给予重点,其中发生破裂。最后,将本研究结果与可用的设计规定进行了比较,以上既有终极容量和低循环疲劳。

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