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Impact test and numerical simulation of typical sub-cargo fuselage section of civil aircraft

机译:民用飞机典型子货机身段的冲击试验与数值模拟

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This paper deals with impact test and numerical investigations on the crashworthiness of the typical sub-cargo fuselage section of a civil aircraft. The sub-cargo fuselage section with three-frame and two-span is designed and manufactured, and the 3.95 m/s impact test is conducted to research the failure modes and impact response characteristics for the upside-down sub-cargo fuselage section. The impact process is simulated by using the LS-DYNA finite element code. The impact velocity, displacement, and acceleration response are compared, and a good agreement between test results and numerical simulation results is observed. The energy absorption characteristics and impact load transfer path are further studied based on the verified finite element model (FEM). The results show that the impact phases are characterized by the bending and twisting of fuselage frames, the bending of middle stanchions and C-channel stanchions, the pull-off failure and shear failure of rivets, and the two plastic hinges formed at the joints of C-channel stanchions and fuselage frames. The fuselage frames and middle stanchions are the main energy absorption components. The impact load is transmitted along with the fuselage frames, middle stanchions, and C-channel stanchions to the cargo cross beams, and the area of middle stanchions is the most important energy absorption design area. (c) 2020 Elsevier Masson SAS. All rights reserved.
机译:本文对民用飞机典型的子货机身段的崩溃崩溃进行了影响试验和数值调查。设计和制造具有三架和两跨度的子货机身段,并进行3.95米/秒的冲击试验,以研究颠倒子货机身组的故障模式和冲击响应特性。通过使用LS-DYNA有限元码模拟影响过程。比较冲击速度,位移和加速度响应,并且观察到测试结果与数值模拟结果之间的良好一致性。进一步基于验证的有限元模型(FEM)进一步研究能量吸收特性和冲击载荷传输路径。结果表明,冲击阶段的特点是机身框架的弯曲和扭曲,中间支柱的弯曲和C沟道支柱,铆钉的下拉故障和剪切失效,以及在接头处形成的两个塑料铰链C网络支柱和机身框架。机身框架和中间支柱是主要的能量吸收成分。冲击载荷与机身框架,中间支柱和C沟道支柱一起传递给货物交叉梁,中间支柱的面积是最重要的能量吸收设计区域。 (c)2020 Elsevier Masson SAS。版权所有。

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