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Cyclic plasticity behaviors of steam turbine rotor subjected to cyclic thermal and mechanical loads

机译:汽轮机转子在热和机械载荷作用下的循环塑性行为

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摘要

In this paper, shakedown and ratchet analyses are performed to investigate the cyclic plasticity behaviors of the steam turbine rotor subjected to cyclic thermal and mechanical loads by employing Linear Matching Method (LMM). Traditionally, the shakedown or ratchet analysis mainly focus on the structure under general cyclic loading condition composed by constant mechanical load and cyclic thermal load, but the investigated steam turbine rotor here is subjected to cyclic mechanical load and cyclic thermal load that vary in phase and out of phase throughout the practical operation load cycle. The failure behaviours of structure under practical operation load cycle is studied and discussed. The novel shakedown and ratchet failure diagrams are plotted by calculating different combinations of cyclic mechanical load and cyclic thermal load. The innovative equation to acquire plastic strain range of the structure under steady state cycle is fitted, which is vital for low cycle fatigue (LCT) assessment. Moreover, detailed step-by-step inelastic analyses are also performed to verify the applicability and effectiveness of the limit boundaries calculated by the LMM. All the investigations demonstrate that the proposed LMM technique is capable of handling practical industrial application with complicated cyclic loads.
机译:本文通过线性匹配法(LMM)进行了摇晃和棘轮分析,以研究汽轮机转子在循环热和机械载荷作用下的循环塑性行为。传统上,摇动或棘轮分析主要关注由恒定机械载荷和周期性热载荷组成的一般循环载荷条件下的结构,但此处研究的汽轮机转子承受的是周期性变化的周期性机械载荷和周期性热载荷。整个实际运行负载周期的相位。研究并讨论了结构在实际运行荷载作用下的破坏行为。通过计算循环机械载荷和循环热载荷的不同组合,绘制了新颖的减振和棘轮破坏图。拟合了用于获取稳态循环下结构塑性应变范围的创新公式,这对于低循环疲劳(LCT)评估至关重要。此外,还进行了详细的逐步非弹性分析,以验证由LMM计算的极限边界的适用性和有效性。所有的研究表明,所提出的LMM技术能够处理具有复杂循环载荷的实际工业应用。

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