首页> 外文会议>ASME Pressure Vessels and Piping conference >LIMIT, SHAKEDOWN AND RATCHET ANALYSES OF DEFECTIVE PIPELINE UNDER INTERNAL PRESSURE AND CYCLIC THERMAL LOADING
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LIMIT, SHAKEDOWN AND RATCHET ANALYSES OF DEFECTIVE PIPELINE UNDER INTERNAL PRESSURE AND CYCLIC THERMAL LOADING

机译:内部压力下缺陷管道的限制,Shakedown和棘轮分析及循环热载量

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In this study, the limit load, shakedown and ratchet limit of a defective pipeline subjected to constant internal pressure and a cyclic thermal gradient are analyzed. Ratchet limit and maximum plastic strain range are solved by employing the new Linear Matching Method (LMM) for the direct evaluation of the ratchet limit. Shakedown and ratchet limit interaction diagrams of the defective pipeline identifying the regions of shakedown, reverse plasticity, ratcheting and plastic collapse mechanism are presented and parametric studies involving different types and dimensions of part-through slot in the defective pipeline are investigated. The maximum plastic strain range over the steady cycle with different cyclic loading combinations is evaluated for a low cycle fatigue assessment. The location of the initiation of a fatigue crack for the defective pipeline with different slot type is determined. The proposed linear matching method provides a general-purpose technique for the evaluation of these key design limits and the plastic strain range for the low cycle fatigue assessment. The results for the defective pipeline shown in the paper confirm the applicability of this procedure to complex 3-D structures.
机译:在该研究中,分析了经受恒定内部压力和循环热梯度的缺陷管道的极限载荷,升起和棘轮限制。通过采用新的线性匹配方法(LMM)来解决棘轮限制的新线性匹配方法(LMM)来解决棘轮限制和最大塑料应变范围。提出了识别横向,反向可塑性,棘轮和塑料塌陷机构区域的有缺陷管道的横言和棘轮限制相互作用图,并研究了涉及在缺陷管道中的不同类型和尺寸的部分通过槽的参数研究。评价具有不同循环载荷组合的稳定循环的最大塑料应变范围,以获得低循环疲劳评估。确定具有不同槽类型的缺陷管道的疲劳裂缝的启动位置。所提出的线性匹配方法提供了一种用于评估这些关键设计限制和低循环疲劳评估的塑性应变范围的通用技术。本文中所示的缺陷管道的结果证实了该过程对复杂的3-D结构的适用性。

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