首页> 外文期刊>International Journal of Fracture >STRESS INTENSITY FACTORS FOR TWO PARALLEL INTERFACE CRACKS BETWEEN A NONHOMOGENEOUS BONDING LAYER AND TWO DISSIMILAR ORTHOTROPIC HALF-PLANES UNDER TENSION
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STRESS INTENSITY FACTORS FOR TWO PARALLEL INTERFACE CRACKS BETWEEN A NONHOMOGENEOUS BONDING LAYER AND TWO DISSIMILAR ORTHOTROPIC HALF-PLANES UNDER TENSION

机译:非均匀粘结层与两个正交异性半平面在张力下的两个平行界面裂纹的应力强度因子

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摘要

In composite materials, which are constructed of two dissimilar orthotropic half-planes bonded by a nonhomogeneous orthotropic layer, one interface crack is situated at the lower interface between the layer and the lower half-plane, and another crack is located at the interface between the upper half-plane and the bonding layer. The stress intensity factors are solved under uniform tension normal to the cracks. The material properties of the bonding layer vary continuously from the lower half-plane to the upper half-plane. The stress intensity factors are calculated numerically for perpendicularly bonded unidirectional glass fiber reinforced epoxy laminae.
机译:在复合材料中,该复合材料由非均质正交各向异性层粘结的两个不同的正交异性半平面构成,一个界面裂纹位于该层与下半平面之间的下界面,而另一个裂纹位于该层与下半平面之间的界面。上半平面和粘结层。在垂直于裂纹的均匀张力下求解应力强度因子。粘结层的材料性质从下半平面到上半平面连续变化。对于垂直粘结的单向玻璃纤维增​​强环氧薄片,通过数值计算应力强度因子。

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