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Crashworthiness study of a civil aircraft fuselage section

机译:民用飞机机身部分的耐撞性研究

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This paper studies the crashworthiness characteristics of a fuselage section and its improvement. A full-scale three-dimensional finite element model of the fuselage section is developed using a nonlinear finite element code, PAM-CRASH. The simulation is implemented to determine the structural deformation and impact response in terms of peak loads and acceleration peaks at the floor-level, deformation mode, energy absorption, and structural integrity, and then to assess the crashworthiness of the fuselage section. By partitioning the total energy dissipated, it is shown that the frames and the supports of the cargo floor play important roles in the process of energy dissipation. Based on the results, an effective approach to improve the crashworthiness of the fuselage section is presented. The paper also provides an in-depth analysis in the deformation mechanism of the fuselage section under a vertical crash, which will be helpful to effectively prevent the cabin floor from heavily damage and maintain the integrity of the fuselage section.
机译:本文研究了机身截面的耐撞性特性及其改进。使用非线性有限元代码PAM-CRASH开发了机身截面的全尺寸三维有限元模型。进行模拟是为了确定结构变形和冲击响应,这些冲击是在地板水平,变形模式,能量吸收和结构完整性方面的峰值载荷和加速度峰值确定的,然后评估机身的耐撞性。通过划分耗散的总能量,可以看出,货地板的框架和支撑在耗能过程中起着重要的作用。根据结果​​,提出了一种有效的方法来提高机身的耐撞性。本文还对竖向碰撞下机身部分的变形机理进行了深入的分析,这将有助于有效防止机舱地板受到严重损坏并保持机身部分的完整性。

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