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A practical method for computation of ductile crack growth by means of finite elements and parametric 3D-modelling

机译:有限元和参数3D建模计算延性裂纹扩展的实用方法

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摘要

The present paper originates from a contribution to the safety assessment of a reactor pressure vessel (RPV). Investigations evaluating the safety against brittle fracture (exclosure of crack initiation and arrest assessments) are completed by calculations concerning ductile crack extension. Crack geometries including the expected crack extension are generated parametrically by a computer code and are used for further calculations with finite element programs. J-integrals of ductile growing cracks located between two comparative contours are determined by interpolation. The comparative contours are loaded by instationary temperature and pressure fields and are evaluated in advance. Taking the stability condition into consideration, the ductile crack extension is determined by pursuing the equilibrium between loading and crack resistance. The automatic modelling and a mathematical program processing the finite element results evaluate the crack growth of the finite element results very effectively.
机译:本文源自对反应堆压力容器(RPV)安全性评估的贡献。通过有关延性裂纹扩展的计算,完成了评估脆性断裂安全性的研究(裂纹萌生和止裂评估的公开)。包括预期裂纹扩展在内的裂纹几何形状由计算机代码以参数方式生成,并用于有限元程序的进一步计算。通过插值确定位于两个比较轮廓之间的延展性裂纹的J积分。比较轮廓由固定的温度和压力场加载,并预先进行评估。考虑到稳定性条件,通过在载荷和抗裂性之间寻求平衡来确定延性裂纹扩展。自动建模和处理有限元结果的数学程序非常有效地评估了有限元结果的裂纹扩展。

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