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Method of Estimating the Long-term Rupture Strength of 11Cr-2W-0.4Mo-1Cu-Nb-V Steel

机译:11Cr-2W-0.4Mo-1Cu-Nb-V钢长期断裂强度的估算方法

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摘要

Long-term rupture data of 11Cr-2W-0.4Mo-1Cu-Nb-V steel were analyzed using an exponential equation for stress regarding time to rupture as a thermal activation process. The fitness was compared with the usually employed method assuming power-law creep. In the exponential method, rupture data are classified into several groups according to the thermal activation process; the activation energy, Q; the activation volume, V; then, the Larson–Miller constant, C, values are calculated, and a regression equation is obtained for each data group. The fitness level of the equation was satisfactorily high for each group. The values of Q, V, and C were unusually small for a data group where an unexpected drop in rupture strength was observed. The critical issue is how to comprehend signs of degradation within the short term. We can observe several signs at a creep time of approximately one-tenth of the times of the degradation events. The small values of Q and V indicate that completely softened regions form and creep locally, which is consistent with previous observations. From both metallurgical considerations and the variations of Q and V, it is suggested that the rate of the unexpected drop in strength is mitigated after further long-term creep.
机译:使用应力的指数方程式分析了11Cr-2W-0.4Mo-1Cu-Nb-V钢的长期断裂数据,作为热活化过程的断裂时间。将适用性与假定幂律蠕变的常用方法进行了比较。在指数方法中,根据热活化过程将破裂数据分为几类;活化能Q激活量V;然后,计算Larson-Miller常数C的值,并为每个数据组获得回归方程。对于每组,该方程的适应度水平均令人满意。对于观察到断裂强度意外降低的数据组,Q,V和C值异常小。关键问题是如何在短期内理解退化的迹象。我们可以在蠕变时间观察到一些迹象,这些蠕变时间约为降解事件的十分之一。 Q和V的较小值表明完全软化的区域在局部形成并蠕变,这与以前的观察一致。从冶金学的角度以及Q和V的变化来看,建议在进一步长期蠕变后减轻强度意外降低的速度。

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