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The LICON methodology for predicting long-time uniaxial creep rupture strength of materials

机译:LICON方法预测材料的长期单轴蠕变断裂强度

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The LICON methodology is an approach for predicting the lifetime of materials under creep loading conditions. The LICON method predicts long-time uniaxial creep strength using the results from several short duration creep crack incubation (CCI) tests in conjunction with the outcome of a mechanical analysis on the testpiece. This method was first applied to creep ductile, notch insensitive materials for which a reference stress solution was appropriate (e.g. advanced 9% Cr pipe steels). The original concept for the mechanical analysis part of the methodology was therefore to adopt reference stress solutions. This study explains the challenges involved in application of the reference stress based LICON method to creep brittle, notch sensitive materials and identifies the need for a careful implementation of advanced mechanical analyses (i.e. finite element analysis, FEA) for this application. Details are presented for the consideration of FEA in the LICON methodology, and the demonstration of a successful application of the FEA based LICON method for creep life assessment of a non-reference stress material, i.e. high creep strength (HCS) 1CrMoV steel.
机译:LICON方法是一种预测蠕变载荷条件下材料寿命的方法。 LICON方法使用几次短期蠕变裂纹温育(CCI)测试的结果以及在试件上进行机械分析的结果来预测长期的单轴蠕变强度。此方法首先应用于需要参考应力解决方案的蠕变延性,缺口不敏感材料(例如,高级9%Cr钢管)。因此,该方法的机械分析部分的原始概念是采用参考应力解决方案。这项研究解释了将基于参考应力的LICON方法应用于脆性,缺口敏感材料的挑战,并确定了为此应用仔细实施高级力学分析(即有限元分析,FEA)的必要性。提出了详细信息以供LICON方法中的FEA考虑,并成功演示了基于FEA的LICON方法在非参考应力材料(即高蠕变强度(HCS)1CrMoV钢)的蠕变寿命评估中的成功应用。

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