Residual strength prediction of a complex structure using crack extension analyses

桁条 残余强度 材料科学 结构工程 有限元法 残余物 残余应力 强度折减 复合材料 数学 工程类 算法
作者
Ingo Scheider,W. Brocks
出处
期刊:Engineering Fracture Mechanics [Elsevier]
卷期号:75 (13): 4001-4017 被引量:14
标识
DOI:10.1016/j.engfracmech.2008.02.009
摘要

The residual strength of a flat panel (thickness 7.6 mm) with five stringers, machined from a monolithic block of Al2024-T351 material, which contained a crack that divided the central stringer, was to be predicted during a Round Robin organised by ASTM. The initial crack tips were right ahead of the stringers #2 and #4, respectively, so that crack branching along the skin and into the stringers occurred after initiation. The prediction has been achieved using finite element simulations including crack extension, for which a cohesive model was utilised. Conventional material properties, yield and ultimate strength as well as experimental results from M(T) specimens in terms of force, COD and Δa, were given. The residual strength prediction was performed in two-steps: First the crack extension parameters for the cohesive model, the cohesive strength, T0, and the cohesive energy, Γ0, were determined by numerical reproduction of the results of the M(T) specimen. With the optimised parameters, the five-stringer panel was modelled. These steps were conducted by two different finite element models: by a shell and a 3D finite element mesh. It turned out that it is possible to analyse the structure with both models. In the 3D case, the residual strength prediction was conservative and the deviation of the predicted from the experimental value was below 9%. The results of the shell simulation were even closer to the experiment (deviation approximately 3%), but the simulation was non-conservative.

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