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DEVELOPMENT OF SIMPLIFIED MODEL TEST METHODS FOR CREEP-FATIGUE EVALUATION

机译:蠕变 - 疲劳评价简化模型试验方法的开发

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The Simplified Model Test (SMT) approach is an alternative creep-fatigue evaluation method that no longer requires the use of the damage interaction diagram, or D-diagram. The reason is that the combined effects of creep and fatigue are accounted for in the test data by means of a SMT specimen that is designed to replicate or bound the stress and strain redistribution that occurs in actual components when loaded in the creep regime. However, creep-fatigue experiments on SMT key feature articles are specialized and difficult to perform by the general research community. In this paper, two innovative SMT based creep-fatigue experimental methods are developed and implemented. These newly-developed SMT test methods have resolved all the critical challenges in the SMT key feature article testing and enable the potential of further development of the SMT based creep-fatigue evaluation method into a standard testing method. Scoping test results on Alloy 617 and SS 316H using the newly developed SMT methods are summarized and discussed. The concepts of the SMT methodology for creep-fatigue evaluation are explained.
机译:简化的模型测试(SMT)方法是一种替代的蠕变 - 疲劳评估方法,即不再需要使用损坏交互图或d-图。原因是蠕变和疲劳的组合效果通过SMT标本算用于测试数据,该SMT标本旨在复制或绑定在蠕变状态下在实际组件中发生的应力和应变再分配。然而,通过普通研究界专门且难以执行SMT关键特征文章的蠕变 - 疲劳实验。本文开发和实施了两种基于创新的SMT蠕变实验方法。这些新开发的SMT测试方法解决了SMT关键特征文章测试中的所有关键挑战,并使SMT的蠕变 - 疲劳评估方法进一步发展成为标准测试方法。使用新开发的SMT方法总结并讨论了在合金617和SS 316h上的测试结果。解释了蠕变疲劳评估的SMT方法的概念。

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