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EVALUATING FITNESS-FOR-SERVICE ASSESSMENT PROCEDURES FOR PRESSURIZED COMPONENTS SUBJECT TO LOCAL THIN AREAS NEAR STRUCTURAL DISCONTINUITIES

机译:评估适用于适用于对本地薄区域的加压组件进行健身评估程序,靠近结构不连续性

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Current minimum spacing requirements for local thin areas near structural discontinuities in pressurized components are out-lined in Part 5 of API 579-1/ASME FFS-1, Fitness-For-Service. For Level 1 and Level 2 assessments, it is recognized that the current spacing criteria can be overly conservative. This paper examines preliminary results from a Materials Properties Coun-cil Fitness-For-Service Joint Industry Project that is intended to evaluate the current spacing criteria and develop a potential methodology for new assessment procedures based on computational results. Finite element models are employed to examine the interaction of stresses between local thin areas and stiffening rings and to investigate the relationship between local thin area spacing and pressure capacity. Performance is compared for models with and without areas of local metal loss near stiffening rings to form a potential basis for an improved assessment procedure. Furthermore, a criterion for classifying stiffening rings as major axisymmetric structural discontinuities is proposed.
机译:电流薄区域附近的局部薄区域的电流最小间距要求在API 579-1 / ASME-1,健身服务的579-1 / ASME-1的第5部分中衬砌。对于1级和2级评估,据认识到当前间距标准可以过于保守。本文审查了材料属性的初步结果,这些材料属性适用于服务适用性联合行业项目,旨在评估当前的间隔标准,并根据计算结果制定新的评估程序的潜在方法。有限元模型用于检查局部薄区域和加强环之间的应力的相互作用,并研究局部薄面积间距和压力容量之间的关系。将性能与局部金属损耗附近的型号进行比较,以形成改进的评估程序的潜在基础。此外,提出了作为主要轴对称结构不连续性的分类加强环的标准。

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