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Design of composite stanchions for the cargo subfloor structure of a civil aircraft

机译:民用飞机货物底层结构的复合支柱设计

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The present work was performed in the frame of a national research program focused on the development of analysis method able to improve the structural response of civil aircraft subject to crash event. In particular, the aim of the program is to demonstrate the energy absorption capability of the lower lobe section of the fuselage aircraft. One of principal substructures, which is able to absorb the impact energy in a crash event, is the cargo subfloor. In this work, the results obtained by an experimental test campaign on cargo subfloor elements are presented. The test case consists in a full scale composite stanchion. The experimental results were used to provide information useful to set the numerical models. Indeed, setting and calibrating the numerical models is an important point in order to have useful tools able to improve the absorption energy capability by means of optimization analyses. The stanchion was tested under static and dynamic load conditions, at different impact energy levels.
机译:本作本作在国家研究计划的框架上进行,重点是能够改善民用飞机受崩溃事件的结构应对的分析方法的发展。特别是,该程序的目的是证明机身飞机下叶片的能量吸收能力。主要的子结构之一,能够在碰撞事件中吸收冲击能量,是货物底层。在这项工作中,提出了由货物底层元件上的实验测试运动获得的结果。测试案例在全尺度复合支柱中组成。实验结果用于提供有用的信息来设置数值模型。实际上,设置和校准数值模型是一种重要的点,以便具有能够通过优化分析提高吸收能量能力的有用工具。在静态和动态负载条件下,在不同的冲击能级下测试支柱。

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