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On the effect of an out-of-plane constraint on the three-dimensional crack front fields in a thin elastic plate

机译:关于薄弹性板三维裂纹前场的平面外约束的影响

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摘要

Two-dimensional theories of fracture are still applied widely today and provide theoretical foundations for solutions to many practical problems. These two-dimensional theories are based on the plane strain or plane stress assumption. However, strictly speaking, for a thin elastic plate with a through-thickness crack under tension, plane strain conditions can be met only at the crack front (except the corn point) and plane stress conditions exist at a distance of about one half of the plate thickness from the crack front in the mid-plane. What are the stress fields in the region where both plane strain and plane stress conditions cannot be met? In this paper, further investigations into the problem are carried out. Three-dimensional Maxwell stress functions, the principle of minimum complementary potential energy and three-dimensional J-integrals are employed to obtain an analytical solution to depict the relationship among out-of-plane constraints, three-dimensional J-integrals and stress intensity factors. Three-dimensional finite element simulations with fine meshes are carried out to verify the analytical results. Compared with the corresponding plane strain solution, the solution proposed is valid in a larger region.
机译:今天的二维理论仍然广泛应用,为许多实际问题提供了解决方案的理论基础。这些二维理论基于平面应变或平面应力假设。然而,严格来说,对于在张力下具有贯穿厚度裂缝的薄弹性板,平面应变条件只能在裂缝前(玉米点),并且平面应力条件存在于约一半的距离处板厚从中间平面裂缝前面。不能满足该区域的压力场是什么?在本文中,进行了进一步调查问题。三维麦克斯韦应力功能,采用最小互补势能和三维J-Integlats的原理来获得分析解决方案,以描绘平面外约束,三维J-积分和应力强度因子之间的关系。进行三维有限元模拟具有细网格的仿真以验证分析结果。与相应的平面应变溶液相比,提出的解决方案在更大的区域中有效。

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    《Acta Mechanica》 |2020年第7期|共19页
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  • 正文语种 eng
  • 中图分类 力学;
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