首页> 外文期刊>International Journal of Fracture >Crack propagation from a pre-existing flaw at a notch root. I. Introduction and general form of the stress intensity factors at the initial crack tip
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Crack propagation from a pre-existing flaw at a notch root. I. Introduction and general form of the stress intensity factors at the initial crack tip

机译:裂纹从缺口根部预先存在的裂纹扩展。一,裂纹初期应力强度因子的介绍及一般形式

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This paper and its companion are devoted to the study of crack kinking from some small pre-existing crack originating from a notch root (the notch root radius being zero). Both the notch boundaries and the initial crack are allowed to be curved; also, the geometry of the body and the loading are totally arbitrary. The ingredients required are knowledge of the stress intensity factors at the initial crack tip and use of a suitable mixed mode propagation criterion, This paper is devoted to the first point, and more specifically to establishing the general (that is, not yet fully explicit) form of the formulae giving these stress intensity factors, The method used is based on changes of scale (homogeneity properties of the equations of elasticity) on the one hand, and on continuity of the displacement and stresses at a given, fixed point with respect to the crack length on the other hand, The formulae derived for the stress intensity factors at the tip of the small crack are of universal value: they apply to any situation, whatever the geometry of the body, the notch and the crack and whatever the loading, the stress intensity factors depending always only upon the 'stress intensity factor of the notch' (the multiplicative coefficient of the singular stress field near the notch root in the absence of the crack), the length of the crack, the aperture angle of the notch and the angle between its bisecting line and the direction of the crack,
机译:本文和它的同伴致力于研究一些源自缺口根(缺口根半径为零)的小裂纹的存在。缺口边界和初始裂纹都可以弯曲;而且,车身的几何形状和载荷完全是任意的。所需的成分是有关初始裂纹尖端处的应力强度因子的知识,以及使用合适的混合模式传播准则。本文专门针对第一点,更具体地说,是建立一般性(即,尚未完全明确)这些应力强度因子的公式形式,一方面是基于尺度变化(弹性方程的均匀性),另一方面是基于给定的固定点处位移和应力的连续性另一方面,裂纹长度的公式对于小裂纹尖端的应力强度因子而言具有通用价值:它们适用于任何情况,无论物体的几何形状,缺口和裂纹以及载荷如何,应力强度因子始终仅取决于“缺口的应力强度因子”(在不存在缺口的情况下,缺口根附近的奇异应力场的乘法系数)裂纹的长度),缺口的开口角度以及其对等线与裂纹方向之间的角度,

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