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A Comparative Study of Civil Aircraft Crashworthiness with Different Ground Conditions

机译:不同地面条件下民航飞机耐撞性的比较研究

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摘要

Civil aircrafl crashworthiness performance related with emergency landing is one of the most important design factors according to the aviation regulations,and it is a highly nonlinear transient dynamic problem.Rigid floor and water are the typical ground conditions,and a significant amount of aircraft crashworthiness confirmed that impact response onto water is very different from that of rigid floor.The crashworthiness of two ground conditions is compared in this paper.Finite element model of typical civil aircraft is built,and physical property including mass and inertia are kept consistent with geometry model.Rigid blocks are used to simulate the structure above the cabin floor,the mass of passenger and the seat.Vertical drop test subject to the velocity of 7m/s is adopted.Result shows that concentrated and distributed loads are respectively applied on the bottom fuselage structure for rigid floor and water.The impact behavior with water is better than that with rigid floor.Fuselage frame are the most important component,and bottom structure and strut also would dissipate part of impact kinetic energy.As expected,the fuselage skin play an important role in the energy absorbing process during water impact,while it just dissipates a little part of impact kinetic energy for rigid floor condition.
机译:根据航空法规,与紧急着陆相关的民用飞机起降落架性能是最重要的设计因素之一,并且是一个高度非线性的瞬态动力问题。刚性地板和水是典型的地面条件,并且确认了相当数量的飞机起落架性本文比较了两种地面条件的耐撞性。建立了典型民用飞机的有限元模型,其质量和惯性等物理特性与几何模型保持一致。刚性块用于模拟机舱地板上方的结构,乘客的质量和座椅的质量。采用以7m / s的速度进行垂直跌落试验,结果表明,在机身底部结构上分别施加了集中载荷和分散载荷适用于硬质地板和水。与硬质地板相比,水的冲击性能要好。框架是最重要的组成部分,底部结构和支柱也会消散一部分冲击动能。正如预期的那样,机身蒙皮在水冲击过程中的能量吸收过程中起着重要作用,而它只是消散了一点冲击力刚性地面条件下的动能。

著录项

  • 来源
  • 会议地点 Shanghai(CN)
  • 作者

    Y.REN; J.XIANG; Z.LUO; Y.YAN;

  • 作者单位

    Beihang University, Xueyuan Rd.37, Haidian Dist., Beijing 100191, China;

    Beihang University, Xueyuan Rd.37, Haidian Dist., Beijing 100191, China;

    Beihang University, Xueyuan Rd.37, Haidian Dist., Beijing 100191, China;

    Beihang University, Xueyuan Rd.37, Haidian Dist., Beijing 100191, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 非线性振动;
  • 关键词

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