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Analysis of Mode I Periodic Parallel Cracks-Tip Stress Field in an Infinite Orthotropic Plate

机译:无限正交异性板的I型周期平行裂纹-尖端应力场分析

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The mechanical behavior near crack tip for periodic parallel cracks in an orthotropic composite plate subjected to the uniformly distributed load within the cracks surface is studied. The mechanical problem is turned into the boundary value problem of partial differential equation. By using the periodicity of the hyperbolic function in the complex domain and constructing proper Westergaard stress function, the periodicity of parallel cracks can be removed. Using the complex variable function method and the undetermined coefficients method, the boundary value problem of partial differential equation can be solved with the help of boundary conditions. The analytic expressions for stress intensity factor, stress, and displacement near the crack tip of periodical parallel cracks are obtained. When the vertical distance of cracks tends to infinity, the stress intensity factor degenerates into a single central crack situation. The stress intensity factor around the crack tip of periodic parallel cracks in an orthotropic composite plate depends on the shape factor. The interaction happens between the cracks. Finally, a numerical analysis of the stress and displacement changed with the polar angle is done.
机译:研究了正交各向异性复合板在裂纹表面内均匀分布载荷作用下周期性平行裂纹在裂纹尖端附近的力学行为。力学问题变成了偏微分方程的边值问题。通过在复杂域中使用双曲函数的周期并构造适当的Westergaard应力函数,可以消除平行裂纹的周期。使用复变函数法和不确定系数法,可以借助边界条件解决偏微分方程的边值问题。得到了周期平行裂纹裂纹尖端附近的应力强度因子,应力和位移的解析表达式。当裂纹的垂直距离趋于无穷大时,应力强度因子退化为单个中心裂纹情况。正交异性复合板中周期性平行裂纹的裂纹尖端周围的应力强度因子取决于形状因子。相互作用发生在裂缝之间。最后,对随极角变化的应力和位移进行了数值分析。

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