A new plastic correction for the stress intensity factor of an under-clad defect in a PWR vessel subjected to a pressurised thermal shock

被引:14
作者
Marie, S. [1 ]
Nedelec, M.
机构
[1] Ctr Etud Saclay, LSN, SEMT,CEA, DM2S,DEN, F-91191 Gif Sur Yvette, France
[2] SAMS, DSR, IRSN, Inst Radioprotect & Surete Nucl, F-92265 Fontenay Aux Roses, France
关键词
plastic correction; stress intensity factor; thermal shock; internal pressure; PTS; vessel; cladding; RPV;
D O I
10.1016/j.ijpvp.2006.09.019
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
For the assessment of an under-clad defect in a vessel subjected to a cold pressurised thermal shock, plasticity is considered through the amplification beta of the elastic stress intensity factor K, in the ferritic part of the vessel. An important effort has been made recently by CEA to improve the analytical tools in the frame of R&D activities funded by IRSN. The current solution in the French RSE-M code has been developed from fitted F.E. calculation results. A more physical solution is proposed in this paper. This takes into account two phenomena: the amplification of the elastic K, due to plasticity in the cladding and a plastic zone size correction in the ferritic part. The first correction has been established by representing the cladding plasticity by an imposed displacement on the crack faces at the interface between the cladding and the ferritic vessel. The corresponding elastic stress intensity factor is determined from the elastic plane strain asymptotic solution for the opening displacement. Plasticity in the ferritic steel is considered through a classical plastic zone size correction. The application of the solution to axisymmetric defects is first checked. The case of semi-elliptical defects is also investigated. For the correction determined at the interface between the cladding and the ferritic vessel, an amplification of the correction proposed for the deepest point is determined from a fitting of the 3D F.E. calculation results. It is also shown that the proposition of RSE-M, which consists in applying the same beta correction at the deepest point and the interface point is not suitable. The applicability to a thermal shock, eventually combined with an internal pressure has been verified. For the deepest point, the proposed correction leads to similar results to the RSE-M method, but presents an extended domain of validity (no limits on the crack length are imposed). (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:159 / 170
页数:12
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