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首页> 外文期刊>Annals of nuclear energy >Leak-Before-Break assessment of a welded piping based on 3D finite element method
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Leak-Before-Break assessment of a welded piping based on 3D finite element method

机译:基于3D有限元法的焊接管道泄漏前评估

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The paper studies the effects of the load reduction (discrepancy between designing and real loadings), strength match of the welded piping joint (WPJ), welding width, crack size and crack tip constraint on the Leak-Before-Break (LBB) assessment of a welded piping. The 3D finite element (FE) method is used in the study of a surge line of the steam generator in a nuclear power plant. It is demonstrated that the LBB margin is dependent on the loading level and the load reduction effect should be considered. When the loading is high enough, there is a quite large deviation between the.1-integral calculated based on the real material property of WPJ and that calculated based on the engineering method, e.g. Zahoor handbook of Electric Power Research Institute (EPR1). The engineering method assumes that the whole piping is made of the unique welding material in the calculation. As the influence of the strength matching and welding width is ignored in the engineering method for J-integral calculation, the engineering method has a sufficient precision only if the width of welding is comparable to the crack depth. Narrower welding width leads to higher constraint of the plastic deformation in the welding and larger high stress areas in the base for the low strength-match WPJ. Higher strength matching of WPJs has higher crack-front constraints. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了减少载荷(设计载荷与实际载荷之间的偏差),焊接管道接头的强度匹配(WPJ),焊接宽度,裂纹尺寸和裂纹尖端约束对断裂前泄漏(LBB)评估的影响。焊接管道。 3D有限元(FE)方法用于研究核电站中蒸汽发生器的喘振线。事实证明,LBB裕度取决于负载水平,应考虑减少负载的影响。当载荷足够高时,基于WPJ的真实材料特性计算的1-积分与基于工程方法(例如,P.O。)的计算得出的1-积分之间会有相当大的偏差。 Zahoor电力研究所的手册(EPR1)。工程方法假定整个管道在计算中均由独特的焊接材料制成。由于在J积分计算的工程方法中忽略了强度匹配和焊接宽度的影响,因此仅当焊接宽度与裂纹深度相当时,工程方法才具有足够的精度。对于低强度匹配的WPJ,较窄的焊接宽度导致对焊接塑性变形的约束更大,而在基座中的较大的高应力区域更大。 WPJ的较高强度匹配具有较高的裂纹前约束。 (C)2017 Elsevier Ltd.保留所有权利。

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