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Finite Element Simulation of Three Full-Scale Crash Tests for Cessna 172 Aircraft

机译:CESSNA 172飞机三种全尺寸碰撞测试的有限元模拟

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The NASA Emergency Locator Transmitter Survivability and Reliability (ELT-SAR) project was initiated in 2013 to assess the crash performance standards for the next generation of emergency locator transmitter (ELT) systems. Three Cessna 172 aircraft were acquired to perform crash testing at NASA Langley Research Center's Landing and Impact Research Facility. Full-scale crash tests were conducted in the summer of 2015 and each test article was subjected to severe, but survivable, impact conditions including a flare-to-stall during emergency landing, and two controlled-flight-into-terrain scenarios. Full-scale finite element analyses were performed using a commercial explicit solver, ABAQUS. The first test simulated impacting a concrete surface represented analytically by a rigid plane. Tests 2 and 3 simulated impacting a dirt surface represented analytically by an Eulerian grid of brick elements using a Mohr-Coulomb material model. The objective of this paper is to summarize the test and analysis results for the three full-scale crash tests. Simulation models of the airframe which correlate well with the tests are needed for future studies of alternate ELT mounting configurations.
机译:NASA紧急定位器发射器生存能力和可靠性(ELT-SAR)项目于2013年启动,以评估下一代紧急定位器发射器(ELT)系统的碰撞性能标准。在美国宇航局兰利研究中心的着陆和影响研究设施中获得了三款Cessna 172飞机进行撞击测试。 2015年夏季进行全规模的碰撞试验,每条试验文章受到严重但可生存的,影响条件,包括在紧急登陆期间的火炬,以及两个控制的飞行进入地形情景。使用商业明确求解器,ABAQU进行全尺寸有限元分析。第一测试模拟冲击通过刚性平面分析地表示的混凝土表面。测试2和3模拟使用Mohr-Coulomb材料模型的砖元件的欧拉栅格分析地产生分析的污垢表面。本文的目的是总结三次全规模碰撞测试的测试和分析结果。需要与测试相关的机身的仿真模型,以备将来的替代ELT安装配置的研究。

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