Creep Life Prediction Using Creep Tests and Omega Method: Practical Application to a 2.25Cr-1Mo Steel

Pierre Planques, Anthony Le Guellaut, Raphaél Goti, B. Viguier
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Abstract

In this research, creep tests were carried out on ex-service 2.25Cr-1Mo steel under conditions more severe than those of service. The specimens were tested in a temperature range of 585°C up to 650°C and in a stress range of 65 MPa up to 120 MPa, leading to strain rates values of the order of 10−5 h−1. Conventional creep rupture tests and stepped tests (isothermal and multiple load levels) were conducted. The results of these tests are presented in terms of rupture time and the Omega method parameters Ω, and ε˙0. The implementation of the Omega method, testing methods and the test conditions are then discussed together with the values of the parameters Ω and ε˙0 obtained. Those values were compared to the corresponding values from API579-1 data base [1] and the adjustment factors ΔcdΩ and ΔsrΩ. Lifetime prediction of the Omega method and the importance to identify the material scatter parameters for a given metallurgical condition are discussed.
用蠕变试验和欧米茄法预测蠕变寿命:2.25Cr-1Mo钢的实际应用
本研究对退役的2.25Cr-1Mo钢在比服役条件更苛刻的条件下进行了蠕变试验。试样在585°C ~ 650°C的温度范围和65 MPa ~ 120 MPa的应力范围内进行了测试,得到的应变速率值为10−5 h−1。进行了常规蠕变断裂试验和阶梯试验(等温和多负荷水平)。试验结果以破裂时间、Ω方法参数Ω和ε˙0为参数。讨论了Omega方法的实现、测试方法和测试条件,并得到了参数Ω和ε˙0的值。将这些值与API579-1数据库[1]中的相应值以及调整因子ΔcdΩ和ΔsrΩ进行比较。讨论了欧米伽法的寿命预测和确定特定冶金条件下材料散射参数的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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