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A moving crack propagating in a functionally graded magnetoelectroelastic strip under different crack face conditions

机译:在不同裂纹面条件下在功能梯度磁电弹性带中传播的运动裂纹

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摘要

An anti-plane moving crack problem in a functionally graded magnetoelectroelastic strip under magnetoelectrically impermeable or permeable conditions is investigated. Fourier cosine transforms are applied to reduce the mixed-boundary-value problem to dual integral equations and then Fredholm integral equations of the second kind. The equations can be solved numerically and field intensity factors are determined. The effects of the geometric size of the composite, the functionally graded parameter and the crack moving velocity on the field intensity factors are analyzed. Also the crack kinking phenomena under impermeable and permeable conditions are discussed. The results show that the coupled magnetoelectrical field has great effects on the stress intensity factor and the probable kinking direction will be affected by the moving velocity, the thickness of the strip as well as crack surface magneto-electrical boundary condition remarkably.
机译:研究了功能梯度磁电弹性条在磁电不可渗透或可渗透条件下的反平面运动裂纹问题。应用傅立叶余弦变换将混合边界值问题简化为对偶积分方程,然后再简化为第二类Fredholm积分方程。可以通过数值求解方程,并确定场强因子。分析了复合材料的几何尺寸,功能梯度参数和裂纹移动速度对场强因子的影响。还讨论了在不可渗透和可渗透条件下的裂缝扭结现象。结果表明,耦合的电场对应力强度因子有很大的影响,可能的弯折方向将受到移动速度,带材厚度以及裂纹表面电磁边界条件的显着影响。

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