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DEPLOYMENT AND CHARACTERISATION OF A TELESCOPIC BOOM FOR SOUNDING ROCKETS

机译:弹箭弹体的研制与表征。

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In any sounding rocket, volume and mass are at a premium. Payload designers strive towards smaller, lighter and cheaper mechanisms which can achieve the same goals. This project aims to reduce the mass and volume for probe deployment booms and their deployment mechanisms. An experiment (Telescobe) to test a low cost novel method of boom deployment using telescopic carbon fibre poles was developed.A custom camera measurement system was also developed to measure boom length and harmonic deflection. This experiment was flown onboard the REXUS 9 sounding rocket [1] in February 2011 from Esrange space centre, Sweden. The experiment functioned as expected in all pre-flight tests. However, an unexpected malfunction in the experiment hatch door was experienced during flight which prevented the boom from being extended through the hatch. Despite this, it was found that the carbon fibre sections, all mechanisms and hardware, survived the flight and functioned as expected as far as possible. It is hoped that with a redesigned hatch, the experiment can be relaunched onboard a future REXUS rocket.
机译:在任何探空火箭中,体积和质量都非常重要。有效负载设计人员致力于实现相同目标的更小,更轻和更便宜的机制。该项目旨在减少探针部署热潮及其部署机制的质量和体积。进行了一项实验(Telescobe),该实验使用伸缩式碳纤维杆测试了低成本的新型动臂展开方法,还开发了定制的相机测量系统来测量动臂长度和谐波偏转。该实验于2011年2月从瑞典埃斯兰奇太空中心乘坐REXUS 9探空火箭[1]进行。该实验在所有飞行前测试中均按预期运行。但是,在飞行过程中,实验舱口门发生了意外故障,这导致动臂无法延伸穿过舱口。尽管如此,我们发现碳纤维部分,所有机制和硬件在飞行中幸存下来,并尽可能发挥了预期的功能。希望通过重新设计的舱口,可以在未来的REXUS火箭上重新启动该实验。

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