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EFFECTS OF FLAW SHAPE (IDEALIZATION) ON THE INTERACTION OF CO-PLANAR SURFACE FLAWS

机译:瑕疵(理想)对共平面表面缺陷相互作用的影响

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Engineering Critical Assessment (ECA) guidelines contain amongst others, rules to assess flaw interaction. Major flaw dimensions (depth or height and length) are typically characterized assuming the flaws to be contained entirely within a bounding rectangle through a procedure known as flaw idealization. In (computational) fracture mechanics based calculations, flaws are often assumed to be (semi-)elliptical. This paper investigates the interaction between identical co-planar surface breaking flaws. Two flaw shapes are considered and compared: "canoe-shaped" (quarter-circular ends and constant depth elsewhere) and semi-elliptical. Especially for long shallow flaws, the canoe-shaped approximates the bounding rectangle, whereas the semi-elliptical shape only touches the bounding rectangle at three points (deepest point and two points at the surface). Several flaw dimensions and spacing distances are studied through an extensive parametric study comprising elastic and elastic-plastic finite element simulations. The results, based on Stress Intensity Factor (SIF) and J-integral analysis, show how the flaw shape can affect the degree of interaction. Notably, the inconsistency is less in linear-elastic analysis, but becomes more pronounced at higher (elastic-plastic) loading levels. This work highlights a challenge of comparing analytical and numerical based evaluations of interaction with ECA guidelines.
机译:工程批判性评估(ECA)指南在其他方面包含评估缺陷互动的规则。主要缺陷尺寸(深度或高度和长度)通常是假设缺陷通过称为缺陷理想化的过程完全包含在边界矩形内。在(计算)基于裂缝力学的计算中,通常认为缺陷是(半)椭圆形的。本文研究了相同的共平面表面断裂缺陷之间的相互作用。考虑和比较了两种缺陷形状:“独木舟形”(四分之一圆形末端和别处恒定深度)和半椭圆形。特别是对于长浅缺陷,独木舟形近似于边界矩形,而半椭圆形状仅在三个点(表面上最深点和两个点)触摸边界矩形。通过广泛的参数研究研究了几种缺陷尺寸和间距距离,包括弹性和弹性塑料有限元模拟。结果,基于应力强度因子(SIF)和J-积分分析,显示缺陷形状如何影响相互作用程度。值得注意的是,线性弹性分析中不一致较少,但在较高(弹性塑料)装载水平上变得更加明显。这项工作突出了比较与ECA指南的分析和数值基于互动的评估挑战。

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