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Crashworthiness Study on Fuselage Section and Struts under Cabin Floor

机译:机舱地板下机身截面和支柱的耐撞性研究

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摘要

Aircraft fuselage and struts under the cabin floor play important impact resisting roles in the crashworthiness of an aircraft. This study first investigates the performance of the struts which support floor beams in a typical fuselage section, and compares the energy absorption characteristics of two typical struts—C shape and Wide-flange shape. Then, the vertical drop numerical test of a fuselage section at a velocity of 9 m/s is conducted. The performances of the aircraft fuselage with different struts in cross section and orientation angle are compared. The results show that the specific energy of Wide-flange is higher than that of C shape when subjected to axial impact load. However, in a fuselage section, the struts are subjected to a complex loading condition, resulting in complex impact energy dissipation process in the vertical crash process. The bending rigidity of Wide-flange is greater than that of C shape, as a result that the initial acceleration peak transferred by the strut with Wide-flange shape to the seat is greater than that transferred by C shape strut. The orientation angle of the struts also affects the crashworthiness of the fuselage section.
机译:机舱地板下方的飞机机身和支柱在飞机的耐撞性中起着重要的抗冲击作用。这项研究首先研究了典型机身截面中支撑地板梁的支柱的性能,并比较了两个典型支柱(C形和宽凸缘形)的能量吸收特性。然后,以9m / s的速度进行机身截面的垂直下落数值测试。比较了具有不同支杆的飞机机身的横截面和方向角的性能。结果表明,在承受轴向冲击载荷时,宽法兰的比能高于C形。然而,在机身部分,支柱承受复杂的载荷条件,从而导致垂直碰撞过程中复杂的冲击能量耗散过程。宽法兰的弯曲刚度大于C形,因此,宽法兰形支杆传递到阀座的初始加速度峰值大于C形支撑杆传递的加速度峰值。支柱的定向角度也影响机身部分的耐撞性。

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  • 来源
    《International Journal of Protective Structures》 |2011年第4期|p.515-525|共11页
  • 作者

    P. Xue; L. Wang; C.F. Qiao;

  • 作者单位

    Northwestern Polytechnic University, Xian, R R. of China;

    Northwestern Polytechnic University, Xian, R R. of China;

    Northwestern Polytechnic University, Xian, R R. of China;

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  • 正文语种 eng
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