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A HYBRID MULTIBODY MODEL FOR AIRCRAFT OCCUPANT/SEAT CUSHION CRASHWORTHINESS INVESTIGATION

机译:用于飞机乘员/座垫Crashworthity调查的混合多体模型

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Seat cushion is in the primary load path between the seat and the occupant, and the potential for injuries to an occupant in an accident highly depends on it. The seat cushion is able to dissipate the kinetic energy due to impact in a controlled manner. Wide varieties of energy absorbing materials are used in aircraft interiors for occupant safety and ergonomic purposes. Flexible polyurethane foams are one among those used in seat cushions. Although comfort and aesthetics play an important role in the seat cushion design, safety is among the top criteria. Studies on seat cushions have demonstrated that the seat cushions generally amplify the lumbar/pelvis transmitted load to the occupant, making the seat cushion design further complicated for crashworthy design. The certification of seat cushion requires that their performance be demonstrated by dynamic full scale sled testing. Due to the high costs involved in dynamic testing, a mathematical hybrid multi-body model is developed in this study to simulate the dynamic responses of a bare iron seat, the seat cushion and the occupant represented by crash test dummy. The model is utilized to predict the lumbar load sustained when subjected to the FAR Part 23 and 25 dynamic test conditions for transport and general aviation category aircraft. The model is also used to determine the relative displacement and velocity of occupant against the seat pan. The results from the dynamic model are validated with full-scale sled tests performed at the National Institute for Aviation Research (NIAR), and hence can be utilized as a design tool for the selection of proper seat cushions.
机译:座垫是在座椅和乘客,以及用于受伤在发生事故的乘员电位之间的主载荷路径高度依赖于它。座垫能够将动能耗散由于以受控的方式的影响。种类繁多的能量吸收材料,在飞机内部乘员的安全和符合人体工程学的目的。柔性聚氨酯泡沫是那些在座垫使用中的一个。虽然舒适和美观的座椅坐垫设计中扮演重要的角色,安全是首要因素之一。已经研究座垫表明,座垫通常扩增腰/骨盆发送负载给乘员,使得座垫设计进一步复杂化了防撞设计。座垫的认证要求,其性能通过动感十足的规模来证明雪橇测试。由于涉及在动态测试的高成本,数学混合多体模型在该研究中开发的,以模拟裸铁座椅,坐垫和由碰撞测试假人表示的乘员的动态响应。该模型被用于预测当经受用于运输和通用航空类飞机的FAR第23和25的动态试验条件下持续腰部负载。该模型还用于确定针对所述座椅底板的相对位移和乘客的速度。从动态模型的结果进行了验证满刻度雪橇在美国国家航空研究所(NIAR)进行,因此测试可以被用作适当的座垫的选择的设计工具。

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