首页> 外文会议>ASME Pressure Vessels and Piping conference >STYLE PROJECT: ASSESSMENT OF TRANSFERABILITY OF FRACTURE MATERIAL PROPERTIES FROM SPECIMENS TO LARGE COMPONENTS BY LOCAL APPROACH TO FRACTURE
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STYLE PROJECT: ASSESSMENT OF TRANSFERABILITY OF FRACTURE MATERIAL PROPERTIES FROM SPECIMENS TO LARGE COMPONENTS BY LOCAL APPROACH TO FRACTURE

机译:样式项目:通过局部断裂方法评估从标本到大型部件的断裂材料性能的可传递性

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Within the framework of the FP7 European project STYLE, a large scale experiment was performed at EDF R&D on a cladded ferritic pipe (Mock-Up 3). The objective of this experiment was to investigate the transferability of material properties from small specimens to large scale components. The large scale experiment involved applying 4-point bending under displacement control at room temperature to a clad ferritic steel pipe with an inner surface crack. The goal of the experiment was to initiate ductile crack growth and track the resulting stable crack growth until the surface flaw breaks through the wall. The pipe was representative of a surge line, consisting of a clad ferritic pipe with an outer diameter of 424 mm, and base metal wall thickness of 31 mm, with an austenitic stainless steel cladding layer 5 mm thick on the inner surface. The base metal is a low alloy 20 MnMoNi 5 5 steel (corresponding to the specifications of an SA 508 Grade 3, Class 1 steel). The pipe test was conducted in 2012 in the EDF R&D 4-point bending frame. Following the experiment, various specimens were taken from the mock-up to identify the material behavior and provide data to investigate the transferability of the material fracture properties. This paper recalls briefly the large scale experiment results and presents the main experimental results from the specimens. Then the results of the local approach finite element computations with the Rousselier model are presented and compared with the experimental results.
机译:在FP7欧洲项目风格的框架内,在包立板(模拟3)上的EDF研发中进行了大规模的实验。该实验的目的是探讨将物质性质从小标本的可转移性从小规模组成。大规模实验涉及在室温下在位移控制下施加4点弯曲,并具有内表面裂纹的包层铁素体钢管。实验的目的是引发延性裂纹生长并跟踪所产生的稳定裂纹生长,直到表面缺陷通过墙壁突破。管道代表浪涌管线,由外径为424mm的包覆铁素体管,基础金属壁厚为31mm,内表面上的奥氏体不锈钢包覆层5mm厚。基金金属是低合金20mNmoni 5 5钢(对应于SA 508级3级,1级钢的规格)。管道测试在2012年在EDF R&D 4点弯曲框架中进行。在实验之后,从模型中取出各种标本,以鉴定材料行为并提供数据以研究材料骨折性能的可转移性。本文简要回顾了大规模的实验结果,并提出了标本的主要实验结果。然后,呈现局部接近有限元计算的具有ROUSSELIER模型的有限元计算,并与实验结果进行比较。

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