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FRACTURE MECHANICS FATIGUE EVALUATION OF A FLOWLINE CLAMP CONNECTOR USING FINITE ELEMENT MODELING OF A CRACK

机译:裂纹有限元建模的流线钳连接器断裂力学疲劳评估

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This paper presents the application of the rules from ASME Section Ⅷ, Division 3 of the ASME Boiler and Pressure Vessel Code for a fracture mechanics evaluation to determine the damage tolerance and fatigue life of a flow line clamp connector. The guidelines from API 579-1 / ASME FFS-1 Fitness-For-Service for the stress analysis of a crack-like flaw have been considered for this assessment. The crack tip is modeled using a refined mesh around the crack tip that is referred to as a focused mesh approach in API 579-1 / ASME FFS-1. The driving force method is used as an alternative to the failure assessment diagram method to account for the influence of crack tip . plasticity. The J integral is determined using elastic-plastic finite element analysis and converted to an equivalent stress intensity factor to be compared to the fracture toughness of the material. The fatigue life is calculated using the Paris Law equation and the stress intensity factor calculated from the finite element analysis. The allowable number of design cycles is determined using the safety factors required from Division 3 of the ASME Pressure Vessel Code
机译:本文介绍了ASME锅炉和压力容器规范第3部分的ASME第Ⅷ节中的规则在断裂力学评估中的应用,以确定流线夹连接器的损伤容限和疲劳寿命。此评估考虑了API 579-1 / ASME FFS-1适用性服务指南中关于裂纹状缺陷的应力分析的准则。使用围绕裂纹尖端的细化网格对裂纹尖端进行建模,在API 579-1 / ASME FFS-1中将其称为聚焦网格方法。考虑裂纹尖端的影响,用驱动力法代替了失效评估图法。可塑性。使用弹塑性有限元分析确定J积分,并将其转换为等效应力强度因子,以与材料的断裂韧性进行比较。使用巴黎定律方程计算疲劳寿命,并通过有限元分析计算应力强度因子。设计循环的允许次数是根据ASME压力容器规范第3部分中要求的安全系数确定的

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