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ANALYSIS OF HIGH TEMPERATURE CREEP ON THE NUT CONNECTION COMPONENTS OF A 600MW SUPERCRITICAL STEAM TURBINE

机译:600MW超临界汽轮机螺母连接组件高温蠕变分析

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A model of the nut connection components of a 600MW supercritical steam turbine was established by finite element analysis to investigate the influence of creep on the nut connection components. Due to the complex structure and the multi-axial loadings, Cocks-Ashby coefficients were used to depict the multi-axial creep behavior. Multi-axial creep deformation criteria (MCDC) and multi-axial creep rupture criteria (MCRC) were used to assess the structure reliability. In addition, sealing performance of the nut connection components in the creep time of 2 × 10~5 hours was numerically investigated in terms of the contact pressure and the radial contact length. The results demonstrated that the creep strength of the nut connection components after 2×10~5 hours could maintain the safety operation of the nut connection components. The contact pressure distribution and the radial contact length in circumferential could prevent the leakage steam flow from the high pressure zone to the low pressure zone.
机译:通过有限元分析,建立了600MW超临界汽轮机螺母连接组件的模型,以研究蠕变对螺母连接组件的影响。由于结构复杂和多轴载荷,使用Cocks-Ashby系数来描述多轴蠕变行为。使用多轴蠕变变形标准(MCDC)和多轴蠕变断裂标准(MCRC)来评估结构的可靠性。另外,根据接触压力和径向接触长度,数值研究了螺母连接组件在2×10〜5小时的蠕变时间内的密封性能。结果表明,螺母连接组件在2×10〜5小时后的蠕变强度可以维持螺母连接组件的安全运行。圆周上的接触压力分布和径向接触长度可以防止泄漏的蒸汽从高压区流向低压区。

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