Kam Chee Zhou, Kueh Ahmad Beng Hong
Construction Research Centre, Universiti Teknologi Malaysia (UTM-CRC), 81310 Johor Bahru, Johor, Malaysia.
ScientificWorldJournal. 2013 Nov 10;2013:350890. doi: 10.1155/2013/350890. eCollection 2013.
A laminated composite plate element with an interface description is developed using the finite element approach to investigate the bending performance of two-layer cross-ply laminated composite plates in presence of a diagonally perturbed localized interfacial degeneration between laminae. The stiffness of the laminate is expressed through the assembly of the stiffnesses of lamina sub-elements and interface element, the latter of which is formulated adopting the well-defined virtually zero-thickness concept. To account for the extent of both shear and axial weak bonding, a degeneration ratio is introduced in the interface formulation. The model has the advantage of simulating a localized weak bonding at arbitrary locations, with various degeneration areas and intensities, under the influence of numerous boundary conditions since the interfacial description is expressed discretely. Numerical results show that the bending behavior of laminate is significantly affected by the aforementioned parameters, the greatest effect of which is experienced by those with a localized total interface degeneration, representing the case of local delamination.
采用有限元方法开发了一种具有界面描述的层合复合板单元,以研究在层间存在对角扰动的局部界面退化情况下两层正交铺设层合复合板的弯曲性能。层合板的刚度通过层子单元和界面单元的刚度组装来表示,其中界面单元采用定义明确的虚拟零厚度概念来制定。为了考虑剪切和轴向弱粘结的程度,在界面公式中引入了退化率。由于界面描述是离散表达的,该模型具有在众多边界条件影响下模拟任意位置、具有各种退化区域和强度的局部弱粘结的优点。数值结果表明,层合板的弯曲行为受到上述参数的显著影响,其中局部全界面退化的情况影响最大,代表了局部脱层的情况。