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Testing of Flexible Ballutes in Hypersonic Wind Tunnels for Planetary Aerocapture

机译:高超音速风洞中用于航空航天的挠性球囊的测试

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摘要

Studies were conducted for the In-Space Propulsion (ISP) Ultralightweight Ballute Technology Development Program to increase the technical readiness level of inflatable decelerator systems for planetary aerocapture. The present experimental study was conducted to develop the capability for testing lightweight, flexible materials in hypersonic facilities. The primary objectives were to evaluate advanced polymer film materials in a high-temperature, high-speed flow environment and provide experimental data for comparisons with fluid-structure interaction modeling tools. Experimental testing was conducted in the Langley Aerothermodynamics Laboratory 20-Inch Hypersonic CF4 and 31-Inch Mach 10 Air blowdown wind tunnels. Quantitative flexure measurements were made for 60 degree half angle afterbody-attached ballutes, in which polyimide films (1-mil and 3- mil thick) were clamped between a 1/2-inch diameter disk and a base ring (4-inch and 6-inch diameters). Deflection measurements were made using a parallel light silhouette of the film surface through an existing schlieren optical system. The purpose of this paper is to discuss these results as well as free-flying testing techniques being developed for both an afterbody-attached and trailing toroidal ballute configuration to determine dynamic fluid-structural stability. Methods for measuring polymer film temperature were also explored using both temperature sensitive paints (for up to 370 C) and laser-etched thin-film gages.
机译:对太空推进(ISP)超轻型飞弹技术开发计划进行了研究,以提高用于行星式航空捕获的充气减速系统的技术准备水平。进行本实验研究是为了开发在超音速设施中测试轻质,柔性材料的能力。主要目的是在高温,高速流动的环境中评估先进的聚合物薄膜材料,并提供实验数据,以便与流固耦合模型工具进行比较。在Langley空气热力学实验室的20英寸Hypersonic CF4和31英寸Mach 10空气排污风洞中进行了实验测试。定量测量挠曲后附肢的半角的60度弯曲度,其中将聚酰亚胺薄膜(1密耳和3密耳厚)夹在直径1/2英寸的圆盘和基环(4英寸和6英寸)之间-英寸直径)。偏转测量是通过现有的schlieren光学系统使用胶片表面的平行光轮廓进行的。本文的目的是讨论这些结果,以及正在开发的用于后装式和尾随环形气瓶配置的自由飞行测试技术,以确定动态流体结构的稳定性。还使用温度敏感涂料(最高370 C)和激光蚀刻薄膜量规探索了测量聚合物薄膜温度的方法。

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    Buck, Gregory M.;

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  • 年度 2007
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