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Damage Model and Progressive Failure Analyses for Filament Wound Composite Laminates

机译:长丝缠绕复合材料层合板的损伤模型与渐进式失效分析

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摘要

Recent improvements in manufacturing processes and materials properties associated with excellent mechanical characteristics and low weight have made composite materials very attractive for application on civil aircraft structures. However, even new designs are still very conservative, because the composite failure phenomenon is very complex. Several failure criteria and theories have been developed to describe the damage process and how it evolves, but the solution of the problem is still open. Moreover, modern filament winding techniques have been used to produce a wide variety of structural shapes not only cylindrical parts, but also “flat” laminates. Therefore, this work presents the development of a damage model and its application to simulate the progressive failure of flat composite laminates made using a filament winding process. The damage model was implemented as a UMAT (User Material Subroutine), in ABAQUSTM Finite Element (FE) framework. Progressive failure analyses were carried out using FE simulation in order to simulate the failure of flat filament wound composite structures under different loading conditions. In addition, experimental tests were performed in order to identify parameters related to the material model, as well as to evaluate both the potential and the limitations of the model. The difference between numerical and the average experimental results in a four point bending set-up is only 1.6 % at maximum load amplitude. Another important issue is that the model parameters are not so complicated to be identified. This characteristic makes this model very attractive to be applied in an industrial environment.
机译:与优异的机械特性和低重量有关的制造工艺和材料性能方面的最新改进使复合材料对民用飞机结构的应用非常有吸引力。但是,即使新设计仍然非常保守,因为复合材料破坏现象非常复杂。已经开发了几种破坏准则和理论来描述破坏过程及其发展过程,但是问题的解决方案仍然是开放的。此外,现代长丝缠绕技术已被用于生产各种各样的结构形状,不仅是圆柱形零件,而且是“扁平”层压板。因此,这项工作提出了一种损伤模型的开发及其在模拟使用长丝缠绕工艺制造的扁平复合材料层压板的渐进式破坏中的应用。损坏模型在ABAQUSTM有限元(FE)框架中作为UMAT(用户材料子例程)实现。为了模拟扁丝缠绕复合材料结构在不同载荷条件下的破坏,使用有限元模拟进行了渐进式破坏分析。此外,还进行了实验测试,以识别与材料模型有关的参数,并评估模型的潜力和局限性。在最大负载振幅下,四点弯曲设置中的数值结果与平均实验结果之间的差异仅为1.6%。另一个重要的问题是模型参数的确定并不那么复杂。此特性使该模型非常有吸引力,可用于工业环境。

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