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Safe life approach considering creep-fatigue interaction and Weibull statistics for crack growth evaluation based on field feedback applied to a GT first stage blade

机译:基于现场反馈的蠕变 - 疲劳相互作用和Weibull统计,基于PRES的GT第一阶段叶片

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The increased flexibility that the energy market requires makes the service condition of gas turbine (GT) components more and more critical in terms of creep-fatigue interaction. A new lifing strategy has been developed in order to evaluate the expected life of blades and vanes in this demanding service condition taking into consideration creep-fatigue interaction. The developed lifing methodology has been applied to the first stage blade of an Ansaldo Energia F-class GT and the life map has been compared with the available field feedback. With this procedure crack initiation in the base material is considered as the lifing criteria. So, the critical locations have been correctly identified and the number of predicted cycles correspond to service experience. The available field feedback has been treated by using Weibull statistics. The statistical treatment of crack size for the critical locations provides a crack initiation evaluation that is in good agreement with the lifing strategy. Moreover, the available field feedback on the first stage blade allows the correlation of the linear crack size with its depth. This relationship has been used to define the maximum allowable crack length for safe operation of this component.
机译:在蠕变 - 疲劳相互作用方面,能量市场所需的灵活性提高了能源市场所需的燃气轮机(GT)组分的服务条件。制定了一种新的提升策略,以便考虑到蠕变 - 疲劳相互作用,评估这种苛刻的服务条件中刀片和叶片的预期寿命。发达的提升方法已应用于ANSALDO Energia F级GT的第一阶段刀片,并且将寿命图与可用的现场反馈进行比较。通过该过程,基材中的裂纹引发被认为是提升标准。因此,已经正确识别了关键位置,并且预测周期的数量对应于服务体验。使用Weibull统计数据处理了可用的现场反馈。关键位置的裂缝尺寸的统计处理提供了裂缝启动评估,与提升策略很好。此外,第一级刀片上的可用场反馈允许将线性裂纹尺寸与其深度的相关性相关。这种关系已被用于定义该组件的安全操作的最大允许裂缝长度。

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