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Investigation on the static and dynamic structural behaviors of a regional aircraft main landing gear by a new numerical methodology

机译:新的数值方法研究支线飞机主起落架的静态和动态结构行为

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In this paper, a new methodology supporting the design of landing gears is proposed. Generally, a preliminary step is performed with simplified FE model, usually one-dimensional, to achieve the reaction forces involving each component during all aforementioned aircraft operations. Though this approach gives a valid support to the designer, it is characterized by several problems, such as the related approximations. So, it is important, by a numerical point of view, to develop an isostatic FE model equivalent to the real one. In fact, if the landing gear is modelled as hyperstatic, the static equilibrium equations are insufficient for determining the internal forces and reactions on each sub-component; so, the modelled material properties and geometries assume an increasing importance, which gets the model too approximating. The proposed methodology consists of achieving the reaction forces by means of multibody simulations, by overcoming such problems, since each component is modelled as rigid. In this paper, also a FE model for the investigation of the structural response is proposed. Aimed to Certification by Analysis purposes, the developed multibody and the FE models have been assessed against an experimental landing gear drop test carried out by Magnaghi Aeronautica S.p.A., according to the EASA CS 25 regulations.
机译:本文提出了一种支持起落架设计的新方法。通常,使用简化的有限元模型(通常是一维的)执行预备步骤,以在所有上述飞机操作过程中获得涉及每个组件的反作用力。尽管此方法为设计人员提供了有效的支持,但它具有一些问题,例如相关的近似值。因此,从数字的角度来看,开发与实际等效的有限元模型非常重要。实际上,如果将起落架建模为超静态模型,则静态平衡方程不足以确定每个子组件上的内力和反作用力。因此,建模的材料属性和几何形状越来越重要,这使模型过于近似。所提出的方法包括通过克服这种问题通过多体仿真获得反作用力,因为每个组件都被建模为刚性的。在本文中,还提出了一种用于结构响应研究的有限元模型。为了通过分析进行认证,已根据EASA CS 25法规,对由Magnaghi Aeronautica S.p.A.进行的实验起落架跌落测试进行了评估,以评估开发的多体和FE模型。

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