轻型飞机起落架建模研究

Arif Nadia, Rosu Iulian, Lebon Fred´eric, Elias-Birembaux Helene
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引用次数: 2

摘要

轻型飞机被设计用于一个国家的发达地区和不发达地区。可能出现冲击和反弹等硬着陆情况。在这种情况下,一个好的、高效的、坚固的、易于维护的起落架是至关重要的。它的主要作用是消散撞击的能量。本文的目的是研究一种新型的轻型飞机起落架减振器。研究包括比较其与两种传统轻型飞机起落架的耗散性能:经典的平弹簧起落架和带有桑多索的起落架。这些系统的建模分三个步骤进行。首先,考虑轮胎的几何形状和材料特性,对布什轮胎进行有限元建模。其次,采用有限元与结构单元相结合的方法对不同的起落架系统进行建模。从而可以得到起落架构件内部的应力、变形和能量。最后进行了飞机滚转仿真。评估了系统在滚过坡道时的瞬态响应,以及传递给飞机的作用力和回弹位移。对各起落架的耗散效率进行了比较研究。此外,还研究了充气压力、滚转速度、跑道平整度等仿真条件的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Modeling of Light Aircraft Landing Gears
Light aircrafts are designed to be used in both developed and undeveloped areas of a country. Hard landing conditions such as shocks and rebounds may occur. In this context, a good, efficient, robust and easy to maintain landing gear is vital. Its main role is to dissipate the energy of the impact. The aim of this work is to study an innovative light aircraft landing gear equipped with a damper. The study includes comparing its dissipation performance with two traditional light aircraft landing gears: a classical flat spring landing gear and a landing gear with Sandow cords. These systems’ modeling is carried out through three steps. Firstly, Bush tire is modeled with finite elements considering tire geometry and material specificities. Secondly, combined finite elements with structural elements are used to model the different landing gear systems. Thus, stress, deformation and energy within landing gears components could be obtained. Finally, aircraft rolling simulations are conducted. Systems’ transient responses while rolling over ramp are evaluated, as well as the efforts and rebound displacements transmitted to the aircraft. A dissipation efficiency comparative study between the landing gears is conducted. In addition, the influence of simulation’ conditions such as inflation pressure, rolling velocity or runway flatness is investigated.
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