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首页> 外文期刊>Arabian journal of geosciences >Investigation of energy release rate under mode II loading in a rectangular orthotropic plate with a band crack using 3D finite element analysis
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Investigation of energy release rate under mode II loading in a rectangular orthotropic plate with a band crack using 3D finite element analysis

机译:用3D有限元分析,用带裂纹的矩形正交板中的模式II加载能量释放速率研究

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摘要

A rectangular plate containing a band crack and made of orthotropic elastic material is considered and the energy release rate (ERR) component in mode II at this crack front is investigated. It is assumed that the crack's edge planes are parallel to the upper and lower face planes of the plate and the edge planes of the crack are loaded with uniformly distributed sliding forces. The corresponding boundary value problem is formulated within the scope of the three-dimensional linear theory of elasticity and the solution to this problem is found by employing 3D finite element method (3D FEM) modeling. Numerical results on the ERR for mode II and on the influence of the mechanical-orthotropic properties of the plate material are presented and discussed. In particular, it is established that the influence of the shear modulus in a plane which is simultaneously perpendicular to the crack's front and crack's plane on the ERR is more significant than that caused by the change of another modulus of the orthotropic material.
机译:考虑了包含带裂缝并由正交弹性材料制成的矩形板,并研究了该裂纹前沿的模式II中的能量释放速率(ERR)组分。假设裂缝的边缘平面平行于板的上表面和下表面平面,并且裂缝的边缘平面装满均匀分布的滑动力。相应的边值问题在弹性的三维线性理论的范围内配制,并且通过采用3D有限元方法(3D FEM)建模来发现对该问题的解决方案。呈现和讨论了模式II的误差和对板材的机械 - 正交性能影响的数值结果。特别地,建立了在错误上同时垂直于裂缝的前部和裂缝平面的平面中的剪切模量的影响比通过反向材料的另一种模量的变化引起的更显着。

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