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Establishing a Multi-Laboratory Test Plan for Environmentally Assisted Fatigue

机译:建立一个用于环保疲劳的多实验室测试计划

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The European project INCEFA-PLUS will characterize environmental fatigue in pressurized water reactor (PWR) conditions. The aim is to develop new guidelines for assessing environmental fatigue damage susceptibility of nuclear power plant (NPP) components. The consortium consists of 16 public and private organizations from across Europe. The project is structured in two phases: The first phase is an extensive fatigue testing program; in the second phase, a procedure for estimating the environmental fatigue degradation of the materials will be formulated. During the test phase, a selection of austenitic stainless steels used in NPPs will be characterized with regard to fatigue. The test matrix will focus on the effects of mean strain, strain amplitude, hold time periods, and surface roughness on fatigue life. Sensitivities to these parameters will be tested in PWR environments with additional tests in air for reference purposes. The study of hold time effects will lead to very long testing times, limiting the total number of tests. It is therefore crucial to establish a test matrix that allows the study of the principal effects of interest while taking into account the nuisance effects, such as different specimen geometries, particular material microstructures, and other laboratory-dependent factors that may not be well-controlled. Methods and considerations for establishing a single test matrix are presented in this work.
机译:欧洲项目INCEFA-PLUS将表征压水反应堆(PWR)的条件下的环境疲劳。其目的是开发新的准则以评估核电厂(NPP)组件的环境疲劳损伤的敏感性。该财团由来自欧洲16个公共和私人组织的。该项目的结构在两个阶段:第一阶段是一个广泛的疲劳试验程序;在第二阶段,用于估计材料的环境降解疲劳的步骤进行配制。在测试阶段期间,在核电厂中使用的选择奥氏体不锈钢的将被表征关于疲劳。测试矩阵将集中在平均应变,应变振幅,保持时间周期,和表面粗糙度对疲劳寿命的效果。的敏感性,以这些参数将在PWR环境与空气中附加测试以供参考进行试验。保持时间影响的研究将导致很长的测试时间,限制测试的总数。因此,至关重要的,以建立一个测试矩阵,其允许所关注的主要影响的研究考虑到滋扰的影响,如不同的试样的几何形状,特别是材料的微结构,和其他实验室依赖性因素,可能不能很好地控制而。建立一个单一的测试矩阵方法和注意事项在此工作介绍。

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