首页> 外文会议>International Conference on Impact Loading of Lightweight Structures; 20050508-12; Florianopolis(BR) >Numerical analyses of bird impact on aircraft structures undergoing large deformations and localised failures
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Numerical analyses of bird impact on aircraft structures undergoing large deformations and localised failures

机译:鸟类对飞机变形和局部破坏的撞击的数值分析

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摘要

Numerical analyses of birdstrike were performed on aircraft light structures made up in metallic, composite and polymeric materials, using the ESI/Pam-Crash solver code. The finite element models were developed calibrating the material models to take into account the different inelastic behaviours and failure modes. Three types of bird models were developed for the analyses, considering different combinations of porosity levels and shear strength of the bird materials. Adopting a Lagrangian approach featured with a numerical element elimination procedure, the computations were prosecuted also in presence of large distortions of the bird elements allowing to approximately analyse impacts with large deformations and perforations of the structures. The numerical-experimental correlations show that the developed finite element models were able to well represent the different failure mechanisms characterising the structural responses. The results also allow to evaluate how the severity of the load conditions experienced by the target in the numerical analyses depends on the porosity and the shear strength attributed to the bird material.
机译:使用ESI / Pam-Crash求解器代码对由金属,复合材料和聚合物材料制成的飞机轻型结构进行了鸟撞的数值分析。开发了校准材料模型的有限元模型,以考虑到不同的非弹性行为和破坏模式。考虑到孔隙度水平和鸟类材料的抗剪强度的不同组合,开发了三种类型的鸟类模型进行分析。采用带有数值元素消除程序的拉格朗日方法,在鸟元素变形较大的情况下也可以对计算进行起诉,从而可以近似分析结构大变形和穿孔的影响。数值实验相关性表明,开发的有限元模型能够很好地表示表征结构响应的不同破坏机制。结果还可以评估目标在数值分析中所经历的载荷条件的严重程度如何取决于归因于禽类材料的孔隙率和剪切强度。

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