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Lateral Indentation and Impact Analyses on Curved Composite Shells

机译:弯曲复合壳的横向压痕和冲击分析

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In the framework of materials used for structural applications, reliability and adoption of specific materials for certain use is heavily influenced by its behavior upon impact, together with the capability of sustaining damage. Methods for measuring these features include, for example, indentation and low-velocity impact testing, which are generally performed on flat panels. However, geometry of the structure plays an important role in the impact properties of the final object [5,13]; it should then be taken into account when simulating impact and damage. For this reason, numerical analysis of indentation and low-velocity impact on curved composite shells are presented in this work. The attention is mainly focused on the dynamic effects on the curved (half cylinder) panel under lateral impact. Models are created using a Finite Element (FE) software Abaqus (Simulia, Dassault Systemes). Respectively, indentation and low-velocity impact are compared using the implicit and the explicit solvers by also considering that deformation of the composite shape upon impact induces a change in the overall mechanical response of the shell. A sensitivity analysis on the failure parameters, as defined by the Hashin criterion, is also included in the analysis to better understand the role of the different failure parameters affecting failure onset. Finally, outputs of the FE analyses such as force and displacement of the indenter are compared to experimental results obtained by using a custom-made clamping system on a simple curved composite shell, in order to better highlight the discrepancies found via simulations.
机译:在用于结构应用的材料的框架中,某些使用的特定材料的可靠性和采用受到影响的行为严重影响,以及损坏的能力。测量这些特征的方法包括,例如,压痕和低速冲击测试,其通常在平板上执行。然而,结构的几何形状在最终物体的影响特性中起重要作用[5,13];在模拟冲击和损坏时,应该考虑它。因此,在这项工作中提出了对弯曲复合壳对弯曲复合壳的压痕和低速撞击的数值分析。关注主要集中在横向冲击下弯曲(半气缸)面板上的动态效应。模型是使用ABAQUS(Simulia,Dassault Systemes)的有限元(FE)软件创建的。通过暗示复合形状的变形在撞击时,分别使用隐式和显式溶剂比较压痕和低速冲击,突出壳体的整体机械响应变化。由Hashin标准定义的失败参数的灵敏度分析也包括在分析中,以更好地理解影响失败发作的不同故障参数的作用。最后,将诸如压模的力和位移的Fe分析的输出与通过在简单的弯曲复合壳上使用定制的夹紧系统获得的实验结果进行比较,以便更好地突出通过模拟发现的差异。

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