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首页> 外文期刊>Journal of aerospace engineering >Overview of the National Aeronautics and Space Administration Subsonic Rotary Wing Aeronautics Research Program in Rotorcraft Crashworthiness
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Overview of the National Aeronautics and Space Administration Subsonic Rotary Wing Aeronautics Research Program in Rotorcraft Crashworthiness

机译:国家航空航天局亚音速旋翼航空器研究计划概述

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This paper provides an overview of rotorcraft crashworthiness research being conducted at the National Aeronautics and Space Administration Langley Research Center under sponsorship of the Subsonic Rotary Wing aeronautics program. The research is focused in two areas: development of an externally deployable energy attenuating concept and improved prediction of rotorcraft crashworthiness. The deployable energy absorber (DEA) is a composite honeycomb structure, with a unique flexible hinge design that allows the honeycomb to be packaged and remain flat until needed for deployment. The capabilities of the DEA have been demonstrated through component crush tests and vertical drop tests of a retrofitted fuselage section onto different surfaces or terrain. The research on improved prediction of rotorcraft crashworthiness is focused in several areas including simulating occupant responses and injury risk assessment, predicting multiterrain impact, and utilizing probabilistic analysis methods. A final task is to perform a system-integrated simulation of a full-scale helicopter crash test onto a rigid surface. A brief description of each research task is provided along with a summary of recent accomplishments.
机译:本文概述了在亚音速旋翼航空项目的资助下,在美国国家航空航天局兰利研究中心进行的旋翼飞机防撞性研究。这项研究集中在两个领域:开发一种可在外部部署的能量衰减概念以及改进旋翼航空器耐撞性的预测。可展开的能量吸收器(DEA)是一种复合蜂窝结构,具有独特的柔性铰链设计,可以将蜂窝包装起来并保持扁平,直到需要展开为止。 DEA的功能已经通过改装后的机身截面在不同表面或地形上的部件压碎测试和垂直跌落测试得到了证明。改进旋翼航空器耐撞性预测的研究集中在几个领域,包括模拟乘员反应和伤害风险评估,预测多地形影响以及利用概率分析方法。最后的任务是对刚性表面上的全尺寸直升机坠毁测试执行系统集成的模拟。提供每个研究任务的简要说明以及最新成就的摘要。

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