设计与运行层面断裂力学分析的新需求:法国核力学规范现状

C. Faidy
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引用次数: 0

摘要

根据ASME锅炉和压力容器规范,主要的断裂力学分析仅限于1级构件的脆性断裂保护。在设计或运行阶段,所有未来电厂的运营商都必须将这些分析的范围扩大到不同的概念:-假设大缺陷的脆性和延性分析-破裂前泄漏方法-破裂排除概念-高完整性部件失效的不可思议性-制造结束时可接受的缺陷-在用检查性能-运行中可接受的标准-长期运行(LTO)所有这些要求都需要一个程序,一个具有材料特性和标准的分析方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Needs of Fracture Mechanic Analysis at Design and Operation Level: Status of French Nuclear Mechanical Codes
Based on ASME Boilers and Pressure Vessels Code the major fracture mechanic analysis is limited to protection of class 1 components to brittle fracture. All the Operators of future plants have to enlarge the scope of these analyses to different concepts, at design or operation stage: - brittle and ductile analysis of hypothetical large flaw - leak before break approach - break exclusion concept - incredibility of failure of high integrity components - end of fabrication acceptable defect - in-service inspection performance - acceptable standards in operation - Long Term Operation (LTO) All these requirements needs a procedure, an analysis method with material properties and criteria. After a short overview of each topic, the paper will present how RCC-M, RSE-M French Codes and ASME III and XI take care of all these new modern regulatory requirements.
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