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Stress intensity factor for orthotropic three layered material with crack under arbitrary anti-plane shear

机译:任意反平面剪切作用下带裂纹的正交各向异性三层材料的应力强度因子

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摘要

A three-layered orthotropic material with a center crack is subjected to an arbitrary anti-plane shear loading. The problem is formulated as a mixed boundary value problem by using the Fourier integral transform method. This gives a Fredholm integral equation of the second kind. The integral equation is solved numerically and anti-plane shear stress intensity factors are analyzed in terms of the product of shear modulus, material orthotropy for each layer and the thickness of the outer layer and the order of the loading polynomial.
机译:具有中心裂纹的三层正交各向异性材料要承受任意的反平面剪切载荷。通过使用傅立叶积分变换法将该问题表述为混合边值问题。这给出了第二类Fredholm积分方程。对积分方程进行数值求解,并根据剪切模量,每一层的材料正交性,外层的厚度和加载多项式的阶数的乘积分析反平面剪切应力强度因子。

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