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Three-dimensional stress analysis of variable angle tow composite laminate using hybrid brick elements

机译:混合砖单元可变角度拖曳复合材料层板的三维应力分析

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Variable angle tow (VAT) composites manufactured using continuous tow shearing (CTS) technique exhibits smooth thickness variation across the plane of the laminate as a function of fiber angle variation. These VAT laminates have a flat surface on one side and a curved surface on the other side resulting in asymmetric cross-section about the mid-surface of the laminate. Mostly shell-based finite elements have been used for modeling the VAT panels, and they neglect the thickness variation introduced by manufacturing in the stress analysis of laminates. In this work, the use of hybrid brick elements for three-dimensional stress analysis of VAT laminates manufactured using CTS technique is studied. A user-defined element subroutine is written for the 8-node and 27-node hybrid brick elements in the ABAQUS finite element software. The numerical performance of the hybrid brick elements in computing the stress solution of composite laminates is evaluated by studying benchmark problems and the results are compared with the displacement brick element. The influence of mesh distortion, shear locking and boundary layer effect in the stress solution evaluated by hybrid elements are studied. VAT laminate with thickness variation is modeled using the hybrid brick elements and the effect of asymmetric cross-section on the through-thickness stress field is investigated. The influence of the fiber angle distribution as well as thickness variation on the phenomenon of stress redistribution across the plane of the laminate for different VAT configuration is studied. Further, the numerical results of VAT laminate with thickness variation obtained using hybrid brick elements are compared with the experimental results available in the literature. The results from this numerical study will help the engineer in designing efficient VAT laminates fabricated using CTS technique.
机译:使用连续丝束剪切(CTS)技术制造的可变角度丝束(VAT)复合材料在层压材料的整个平面上呈现出平滑的厚度变化,该变化是纤维角度变化的函数。这些增值税层压板在一侧上具有平坦的表面,在另一侧上具有弯曲的表面,导致围绕层压板的中表面的横截面不对称。大多数情况下,基于壳的有限元已用于对VAT面板进行建模,而它们忽略了制造过程中层压板应力分析中引入的厚度变化。在这项工作中,研究了混合砖元素在使用CTS技术制造的VAT层压板的三维应力分析中的应用。在ABAQUS有限元软件中为8节点和27节点混合砖元素编写了用户定义的元素子例程。通过研究基准问题,评估了混合砖单元在计算复合材料层板应力解中的数值性能,并将结果与​​位移砖单元进行了比较。研究了网格变形,剪力锁和边界层效应对混合单元应力求解的影响。利用混合砖单元对具有厚度变化的增值税层压板进行建模,并研究不对称横截面对厚度方向应力场的影响。研究了在不同的增值税配置下,纤维角度分布以及厚度变化对层压板整个平面上应力重新分布现象的影响。此外,将使用混合砖元素获得的具有厚度变化的增值税层压板的数值结果与文献中提供的实验结果进行了比较。这项数值研究的结果将有助于工程师设计使用CTS技术制造的高效增值税层压板。

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