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Damage characteristics in laminated composite structures subjected to low-velocity impact

机译:低速撞击后层压复合结构中的损伤特性

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Purpose - The present study deals with the numerical modeling of the low-velocity impact damage of laminated composites which have increasingly important applications in aerospace primary structures. Such damage, generated by various sources during ground handling, substantially reduces the mechanical residual performance and the safe-service life. The purpose of this paper is to present and validate a computationally efficient approach in order to explore the effect of critical parameters on the impact damage characteristics. Design/methodology/approach - Numerical modeling is considered as one of the most efficient tool as compared to the expensive and time-consuming experimental testing. In this paper, a finite element model based on explicit dynamics formulations is adopted. Hashin criterion is applied to predict the intralaminar damage initiation and evolution. The numerical analysis is performed using the ABAQUS® programme. Findings - The employed modeling approach is validated using corresponding numerical data found in the literature and the presented results show a reasonable correlation to the available literature data. It is demonstrated that the current model can be used to capture the force-time response as well as damage parameter maps showing the intralaminar damage evolution for different impact cases with respect to the physical boundary conditions and a range of impact energies. Originality/value - Low-velocity impact damage of laminated composites is still not well understood due to the complexity and non-linearity of the damage zone. The presented model is used to predict the force-time response which is considered as one of the most important parameters influencing the structural integrity. Furthermore, it is used for capturing the damage shape evolution, exhibiting a high degree of capability as a damage assessment computational tool.
机译:目的 - 本研究涉及层压复合材料的低速冲击损伤的数值模型,其在航空航天主要结构中具有越来越重要的应用。在地面处理期间各种来源产生的这种损坏,基本上降低了机械残余性能和安全使用寿命。本文的目的是出示并验证计算有效的方法,以探讨关键参数对冲击损伤特性的影响。设计/方法/方法 - 数值建模被认为是与昂贵且耗时的实验测试相比最有效的工具之一。本文采用了一种基于显式动力学制剂的有限元模型。 Hashin标准用于预测胰鸡内损伤的启动和演化。使用ABAQUS®程序进行数值分析。结果 - 使用文献中发现的相应数值数据验证所采用的建模方法,并且所提出的结果显示与可用文献数据的合理相关性。据证明,目前的模型可用于捕获力时响应以及损伤参数图,显示不同冲击案例相对于物理边界条件和一系列冲击能量的不同影响案例的陷入困境损伤演化。由于损伤区的复杂性和非线性,叠层复合材料的最新/值 - 低速冲击损坏仍然没有很好地理解。所呈现的模型用于预测力 - 时间响应,该力是影响影响结构完整性的最重要参数之一。此外,它用于捕获损伤形状的进化,表现出高度的能力作为损伤评估计算工具。

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