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APPLICATION OF A CREEP DAMAGE CONSTITUTIVE MODEL FOR THE ROTOR OF A 1000 MW ULTRA-SUPERCRITICAL STEAM TURBINE

机译:蠕变损伤本构型模型在1000MW超超临界汽轮机转子转子的应用

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A damage-based creep constitutive model for a wide stress range is applied to the creep analysis of a 1000 MW ultra-supercritical steam turbine, the inlet steam of which reaches 600°C and 35 MPa. In this model, the effect of complex multi-axial stress and the nonlinear evolution of damage are considered. To this end, the model was implemented into the commercial software ABAQUS using a user-defined material subroutine code. The temperature dependent material constants were identified from the experimental data of advanced heat resistant steels using curve fitting approaches. A comparison of the simulated and the measured results showed that they reached an acceptable agreement. The results of the creep analysis illustrated that the proposed approach explains the basic features of stress redistribution and the damage evolution in the steam turbine rotor over a wide range of stresses and temperatures.
机译:宽应力范围的基于损伤的蠕变本构型模型应用于1000 MW超超临界汽轮机的蠕变分析,其入口蒸汽达到600°C和35MPa。在该模型中,考虑了复杂的多轴应力和损伤的非线性演化的影响。为此,该模型使用用户定义的材料子程序代码来实现到商业软件ABAQUS中。使用曲线配件方法从先进的耐热钢的实验数据中识别温度依赖性材料常数。模拟和测量结果的比较表明,它们达到了可接受的协议。蠕变分析的结果表明,所提出的方法解释了应力再分布的基本特征和蒸汽轮机转子在广泛的应力和温度上的损伤演化。

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