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Full-field Modelling of Crack Tip Shielding via the 'Plastic Inclusion' Concept

机译:“塑料包涵”概念裂纹尖端屏蔽的全场建模

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This paper presents an outline of the development, verification and application of a new model of crack tip stress fields in the presence of a plastic enclave around a growing fatigue crack. The approach taken rests on capturing the effects of this 'plastic inclusion', comprising the crack tip and crack wake plastic zones, via elastic stress distributions applied at the elastic-plastic boundary. The model is therefore independent of the mechanisms of plastic deformation and potentially applicable to a variety of materials. A Muskhelishvili complex potential extension to the Williams crack tip stress field is found for four stress parameters representing a K-stress, a T-stress, a crack retardation stress and a compatibility-induced shear stress at the elastic-plastic boundary. This model is validated via full field fitting to photoelastic stress fringe patterns, obtained from epoxy resin and polycarbonate specimens. It has also been extended to the strain fields measured in digital image correlation techniques, which allows its application to metallic alloys.
机译:本文介绍了在存在疲劳裂缝周围的塑料飞机的存在下,裂缝尖端应力场的新模型的开发,验证和应用的概要。通过在弹性塑料边界处施加的弹性应力分布,捕获该“塑料夹杂物”的效果依赖于捕获这种“塑料夹杂物”的效果。因此,该模型与塑性变形的机制无关,并且可能适用于各种材料。对于威廉姆斯裂缝尖端应力场的麝香咯岛裂纹势延伸部分被发现用于表示k应力,t胁迫,裂缝延迟应力和弹性塑料边界处的相容性引起的剪切应力的四个应力参数。该模型通过完全验证的全场贴合,以从环氧树脂和聚碳酸酯样品获得的光弹性应力条纹图案。它还延伸到以数字图像相关技术测量的应变场,这允许其应用于金属合金。

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