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首页> 外文期刊>Journal of Pressure Vessel Technology >Influence of Data Analysis Method and Allowable Stress Criterion on Allowable Stress of Gr.122 Heat Resistant Steel
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Influence of Data Analysis Method and Allowable Stress Criterion on Allowable Stress of Gr.122 Heat Resistant Steel

机译:数据分析方法和许用应力准则对Gr.122耐热钢许用应力的影响

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Long-term creep rupture life is usually evaluated from short-term data by a time-temperature parameter (TTP) method. The allowable stress of Gr.122 steel listed in the ASME code has been evaluated by this method and is recognized to be overestimated. The objective of the present study is to understand the causes of the overestimation and propose appropriate methodology for avoiding the overestimation. The apparent activation energy Q for rupture life of the steel changes from a high value of short-term creep to a low value of long-term creep. However, the decrease in Q is ignored in the conventional TTP analyses, resulting in the overestimation of rupture life. A multiregion analysis of creep rupture data is employed to avoid the overestimation; in the analysis creep rupture data are divided into a couple of regions so that the Q value is unique in each divided region. The multiregion analysis provides a good fit to the data and the lowest value of 10~5 h creep rupture strength among the three ways of data analysis examined. A half of 0.2% proof stress cannot provide an appropriate boundary for dividing data to be used in the multiregion analysis. In the 2001 edition of the ASME code an F average concept has been proposed as a substitution for the safety factor of 2/3 for average rupture stress. The allowable stress of Gr.122 steel changes significantly depending on the allowable stress criteria as well as the methods of rupture data analysis: i.e., from 74 MPa to 48 MPa.
机译:长期蠕变断裂寿命通常通过时间-温度参数(TTP)方法根据短期数据进行评估。通过这种方法评估了ASME规范中列出的Gr.122钢的许用应力,并认为该应力被高估了。本研究的目的是了解高估的原因,并提出避免高估的适当方法。钢的断裂寿命的表观活化能Q从高值的短期蠕变变为低值的长期蠕变。但是,传统的TTP分析忽略了Q的减小,导致对断裂寿命的高估。采用蠕变破裂数据的多区域分析来避免高估。在分析中,蠕变破裂数据被分为几个区域,因此Q值在每个划分的区域中都是唯一的。多区域分析提供了很好的数据拟合性,并且在三种数据分析方法中,蠕变断裂强度的最小值为10〜5 h。 0.2%屈服强度的一半无法为划分要用于多区域分析的数据提供合适的边界。在2001年版的ASME规范中,提出了F平均概念来代替平均破裂应力的安全系数2/3。 Gr.122钢的许用应力会根据许用应力标准以及破裂数据分析方法而发生显着变化:从74 MPa到48 MPa。

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