首页> 外文期刊>Composites: mechanics, computations, applications >ON THE CALCULATION OF ENERGY RELEASE RATES IN COMPOSITE LAMINATES BY FINITE ELEMENT, BOUNDARY ELEMENT, AND ANALYTICAL METHODS
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ON THE CALCULATION OF ENERGY RELEASE RATES IN COMPOSITE LAMINATES BY FINITE ELEMENT, BOUNDARY ELEMENT, AND ANALYTICAL METHODS

机译:有限元,边界元和分析方法计算复合材料叠层板的能量释放率

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摘要

To characterize a transversal crack evolution in a cross-ply [0/90]_s fiber reinforced composite laminate, the associated energy release rate (ERR) was calculated by means of the J-integral embedded into the finite element method (FEM). The ERR values computed for the propagation of the transversal crack were correlated to the ones obtained by using the virtual crack closure technique (VCCT) embedded within the boundary element method (BEM). In addition, the results were compared with analytical values. The results correlated well except when the crack length was approximately 80% of the ply thickness. In such case, ERR values showed some discrepancies between FEM and BEM. The reason stems from the fact that in the VCCT used not all components of the stresses are considered, resulting in smaller ERR values. In addition, the results proved that transversal cracks can influence each other only at a limited distance.
机译:为了表征[0/90] s交叉纤维增强复合材料层压板中的横向裂纹扩展,通过嵌入有限元方法(FEM)的J积分计算了相关的能量释放率(ERR)。计算出的用于横向裂纹扩展的ERR值与使用边界元素方法(BEM)中嵌入的虚拟裂纹闭合技术(VCCT)获得的ERR值相关。另外,将结果与分析值进行比较。除裂纹长度约为板层厚度的80%以外,结果均具有良好的相关性。在这种情况下,ERR值表明FEM和BEM之间存在一些差异。原因是由于在VCCT中使用时并未考虑所有应力分量,从而导致ERR值较小。此外,结果证明,横向裂纹只能在有限的距离内相互影响。

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