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EUROPEAN PROJECT ATLAS+: STATUS OF THE WP1 RELATIVE TO THE EXPERIMENTAL PROGRAM ON PIPES AND SPECIMENS

机译:欧洲项目ATLAS +:WP1的状态相对于管道和标本的实验程序

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The 4-year European project ATLAS+ project was launched in June 2017. Its main objective is to develop advanced structural assessment tools to address the remaining technology gaps for the safe and long term operation of nuclear reactor pressure coolant boundary systems. The transferability of ductile material properties from small scale fracture mechanics specimens to large scale components is one of the topics of the project. A large experimental work is conducted in support to development and validation of advanced tools for structural integrity assessment within the framework of the work-package 1 (WP 1): Design and execution of simulation oriented experiments to validate models at different scales. The experimental work is based on a full set of fracture mechanics experiments conducted on specimens and large scale components (several pipes and one mock-up), including a full materials characterization. Three materials are considered: 1. a ferritic steel 15NiCuMoNb5 (WB 36) 2. an aged austenitic stainless steel weld 3. a VVER dissimilar metal weld (DMW) This paper presents the WP 1, the experimental programme and summarizes the first results. A companion paper [1 ] presents in more details the experimental programme on the ferritic steel.
机译:4年欧洲项目Atlas +项目于2017年6月推出。其主要目标是开发先进的结构评估工具,以解决核反应堆压力冷却液边界系统安全和长期运行的剩余技术差距。将小型骨折力学标本从小垢部件的延性材料性能的可转移性是该项目的主题之一。在工作包1(WP1)框架内,对技术完整性评估的开发和验证进行了大量实验工作:设计和执行模拟导向实验,以验证不同尺度的模型。实验性工作基于在标本和大规模组分(几个管道和一次模拟)上进行的全套裂缝力学实验,包括全部材料表征。考虑了三种材料:1。铁素体钢15nicumOnB5(WB 36)2。Aged奥氏体不锈钢焊缝3. VVER异种金属焊接(DMW)本文介绍了WP1,实验计划,并总结了第一个结果。伴侣论文[1]更详细地提供了铁素体钢的实验程序。

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