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Vertical Drop Test and Simulation of a Fokker F-28 Fuselage Section

机译:FOKKER F-28机身部的垂直跌落试验和仿真

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In March 2017, a vertical drop test of a 3.048-m (10-ft) section of a Fokker F-28 aircraft was conducted as part of a joint FAA/NASA effort to investigate the performance of transport aircraft under realistic crash conditions. The section was configured with two rows of aircraft seats, in a triple-double configuration. A total of ten anthropomorphic test devices (ATDs) were secured in the seats using standard seat belt restraints. The section was also configured with luggage in the cargo hold and two hat racks, each with added ballast mass. The drop test was performed at the Landing and Impact Research facility located at NASA Langley Research Center in Hampton, Virginia. The planned impact velocity was 9.144-m/s (360-in/s) onto soil. A second objective was to assess the capabilities of finite element simulations to predict the test response. A finite element model was developed for execution in LS-DYNA, a commercial explicit nonlinear transient dynamic code. The model contained accurate representations of the airframe structure, the hat racks and hat rack masses, the floor and seat tracks, and the luggage in the cargo hold. Concentrated masses were used to represent the inertial properties of the scats, restraints, and ATD occupants. The model was executed to generate analytical predictions of airframe responses, which were compared with test data to validate the model.
机译:2017年3月,FOKKER F-28飞机的3.048米(10英尺)部分的垂直下降试验是FAA / NASA联合努力的一部分,以调查运输飞机在现实碰撞条件下的表现。该部分配置有两排飞机座椅,采用三双配置。使用标准座椅安全带限制,在座椅中固定了总共10个拟人的拟人测试装置(ATDS)。该部分还在货物举办的行李箱和两个帽子架中配置,每个帽子架增加压载物质量。下降试验是在位于弗吉尼亚州汉普顿Nasa Langley研究中心的着陆和影响研究中心进行的。计划的冲击速度为9.144-m / s(360 in / s)到土壤上。第二个目标是评估有限元模拟的能力,以预测测试响应。开发了一个有限元模型,用于在LS-DYNA中执行,是商业明确的非线性瞬态动态代码。该模型包含机身结构的准确表示,帽子架和帽子块,地板和座椅轨道以及货物持有的行李箱。浓缩质量用于表示Scats,克制和ATD占用者的惯性性质。执行该模型以生成机身响应的分析预测,与测试数据进行比较以验证模型。

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