Article ID Journal Published Year Pages File Type
278687 International Journal of Solids and Structures 2010 13 Pages PDF
Abstract

In this study, the behaviour of the Jx1Jx1-integral and its components JPJP-integral and JAJA-integral is numerically investigated for 3D linear elastic cracked plates of different thicknesses loaded in tension. Unlike the path-independent Jx1Jx1-integral, the components JPJP and JAJA are shown to be path dependent in a region that coincides with the out-of-plane constrained zone due to the thickness effect, enabling the characterization of this zone with such integrals. The distribution of the out-of-plane components σ33σ33 and ε33ε33 in the vicinity of the crack front is also analyzed for different thicknesses and confronted to 2D solutions. In addition, a novel tensor concept of the stress intensity kijkij is introduced, showing a unique structure depending on KIKI irrespective of the specimen thickness. It is confirmed that a pure plane strain condition close and far from the crack front is only asymptotically reached when the specimen thickness is very large when compared to the in-plane dimensions. For thin plates, it is confirmed that the 2D plane stress condition is meaningless in the neighborhood of a 3D crack front under elastic behaviour.

Related Topics
Physical Sciences and Engineering Engineering Civil and Structural Engineering
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