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Multi-Terrain Vertical Drop Tests of a Composite Fuselage Section

机译:复合机体截面的多地形垂直跌落试验

摘要

A 5-ft-diameter composite fuselage section was retrofitted with four identical blocks of deployable honeycomb energy absorber and crash tested on two different surfaces: soft soil, and water. The drop tests were conducted at the 70-ft. drop tower at the Landing and Impact Research (LandIR) Facility of NASA Langley. Water drop tests were performed into a 15-ft-diameter pool of water that was approximately 42-in. deep. For the soft soil impact, a 15-ft-square container filled with fine-sifted, unpacked sand was located beneath the drop tower. All drop tests were vertical with a nominally flat attitude with respect to the impact surface. The measured impact velocities were 37.4, and 24.7-fps for soft soil and water, respectively. A fuselage section without energy absorbers was also drop tested onto water to provide a datum for comparison with the test, which included energy absorbers. In order to facilitate this type of comparison and to ensure fuselage survivability for the no-energy-absorber case, the velocity of the water impact tests was restricted to 25-fps nominal. While all tests described in this paper were limited to vertical impact velocities, the implications and design challenges of utilizing external energy absorbers during combined forward and vertical impact velocities are discussed. The design, testing and selection of a honeycomb cover, which was required in soft surface and water impacts to transmit the load into the honeycomb cell walls, is also presented.
机译:在直径为5英尺的复合机身部分上加装了四个相同的可展开蜂窝式能量吸收器块,并在两个不同的表面(软土和水)上进行了碰撞测试。跌落测试是在70英尺高的地方进行的。 NASA Langley着陆和撞击研究(LandIR)设施的自动落地塔。对直径约15英尺(约42英寸)的水池进行了水滴测试。深。为了减轻土壤的冲击,将一个15平方英尺的容器装满了经过筛选的未包装沙子,并将其放置在落塔的下方。所有跌落试验都是垂直的,相对于冲击表面名义上呈平直的姿态。对于软土和水,测得的冲击速度分别为37.4和24.7-fps。还对不带能量吸收器的机身部分进行了滴水测试,以提供与包括能量吸收器在内的测试进行比较的基准。为了简化这种比较并确保无能量吸收器的机身的生存能力,水冲击试验的速度被限制为标称25 fps。尽管本文中描述的所有测试都限于垂直冲击速度,但仍讨论了在组合向前和垂直冲击速度时使用外部能量吸收器的含义和设计挑战。还介绍了蜂窝盖的设计,测试和选择,这是在柔软的表面和水冲击中将载荷传递到蜂窝单元壁所需的。

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