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Analysis of Integrated Fuselage Composite Seat for Small Aircraft in Crashworthiness Applications

机译:小型飞机在崩溃应用中的集成机身复合座椅分析

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摘要

The research paper is addressed to develop and validate an aircraft seat cushion to be used for the passenger seat directly integrated in the fuselage. For very light aircraft, these systems result to be a good choice in terms of weight reduction and space optimization, but can represent a challenging problem for crashworthiness design and a key energy-absorbing function for human protection from injuries so to improve the level of the safety. The first issue was dedicated to investigate the mechanical properties of four commercial foams, diffused in different industrial applications, which present nonlinear and time-dependent viscoelastic behavior, and finally to determine whether typical seat cushion materials are rate sensitive or not. Then, numerical simulations were validated with measurements to simulate the mechanical properties of foams and to evaluate the contact pressures, stress distribution, and the dependence of stress on the strain rate in order to provide adequate levels of both comfort and energy absorption.
机译:研究论文是为了开发和验证飞机座垫,用于直接集成在机身中的乘客座椅。对于非常轻的飞机,这些系统在减肥和空间优化方面是一个不错的选择,但可以代表克雷什性设计的具有挑战性的问题,以及人类保护受伤的关键能量吸收功能,从而提高水平安全。第一个问题致力于调查四种商业泡沫的机械性能,在不同的工业应用中扩散,该行为存在非线性和时间依赖的粘弹性行为,最后确定典型的座垫材料是否是速率敏感的速率敏感。然后,用测量验证了数值模拟以模拟泡沫的机械性能并评估接触压力,应力分布和应力对应变速率的依赖性,以便提供足够的舒适度和能量吸收。

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