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Influence of processing and external storage conditions on the performance of envelope materials for stratospheric airships

机译:加工和外部储存条件对平流层飞艇包络材料性能的影响

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摘要

Envelope materials are extremely vital for stratospheric airships, which are widely used in numerous applications. The influence of processing as well as the storage and utilization conditions on the performance of envelope materials has been studied systematically for the first time. Results show that the performance of envelope materials depends largely on the hot-pressing temperature and the flexing during processing. The tensile strength of samples dropped to 289.1 ± 8.0 MPa from 346.6 ± 9.3 MPa when pressed at temperature above 180°C and helium leakage appeared. The outer layers would be worn off when flexed no matter by manual or machine, resulting in dramatic increase of helium permeability and even leakage as well as varying decrease of mechanical properties. Hence, suitable hot-pressing temperature and limitation of flexing as little as possible during processing are essential to obtain products with suitable properties. Besides, the storage and utilization conditions are also critical to the properties of envelope materials. Both naturally aged samples in outdoor storage on ground and samples recovered from actual flight on stratospheric airship exhibited reduced mechanical properties and even helium leakage due to excess solar irradiation, ozone concentration and energetic particles interaction compared with those stored indoors. The weatherability of envelope materials should be further strengthened in the next few years. This research could provide a theoretical guidance for actual practice.
机译:信封材料对平面飞艇非常重要,这些飞行器广泛应用于许多应用。加工的影响以及对包络材料性能的储存和利用条件已经第一次在系统上进行了研究。结果表明,包络材料的性能主要取决于加工过程中的热压温度和弯曲。当温度高于180℃并出现氦泄漏时,样品的拉伸强度从346.6±9.3MPa下降至289.1±8.0MPa。无论手动或机器无论均匀弯曲,外层都会磨损,导致氦渗透性的显着增加,甚至泄漏以及机械性能的变化降低。因此,在加工过程中尽可能少地弯曲的适当热压温度和限制对于获得具有合适性质的产品是必要的。此外,储存和利用条件对包络材料的性质也至关重要。在地面上的室外储存中的天然老化样品和从地段飞艇上的实际飞行中恢复的样品上呈现出的机械性能降低,甚至由于过度的太阳照射,臭氧浓度和能量粒子相互作用而甚至氦泄漏与室内的那些相比。在未来几年内,应进一步加强包络材料的耐候性。该研究可以为实际做法提供理论指导。

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