首页> 外文期刊>International Journal of Fracture >STRESS INTENSITY FACTOR OF AN EDGE CRACK IN BONDED ORTHOTROPIC MATERIALS
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STRESS INTENSITY FACTOR OF AN EDGE CRACK IN BONDED ORTHOTROPIC MATERIALS

机译:粘接正交异性材料中边缘裂纹的应力强度因子

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The article presents the problem of an edge crack under normal point loading terminating perpendicular to the surface of an orthotropic strip of finite thickness which is bonded to another orthotropic half plane. Expressing the displacements and stresses in plane strain condition in terms of harmonic functions, the problem is reduced to a pair of simultaneous integral equations with Cauchy type singularities, which are finally been solved by the Hilbert transform technique. The analytical expression of stress intensity factor (SIF) at the crack tip for large thickness of the strip is calculated, which corresponds to the weight function of a crack under normal loading. The influences of elastic constants of two different orthotropic materials, distinct arbitrary locations of normal point loading on the crack surface and length of the crack on the dynamic SIF are depicted through graphs.
机译:该文章提出了在法向点载荷下边缘裂纹的问题,该裂纹垂直于有限厚度的正交各向异性条的表面而终止,该正交各向异性条结合到另一个正交各向异性半平面上。用谐波函数表达平面应变条件下的位移和应力,将问题简化为一对具有柯西型奇异性的联立积分方程,最后通过希尔伯特变换技术对其进行求解。计算了较大厚度带材在裂纹尖端的应力强度因子(SIF)的解析表达式,该表达式对应于正常载荷下裂纹的权重函数。通过图表描述了两种不同正交异性材料的弹性常数,裂纹表面上法向点载荷的明显任意位置以及裂纹长度对动态SIF的影响。

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