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Evaluating graphene-enhanced materials for space-based structural applications

机译:评估石墨烯增强材料,用于基于空间的结构应用

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Since 2015, the University of Central Lancashire has helped accelerate the application of graphene-enhanced (GE) materials in the UK aerospace industry. Building upon this experience, research funded by the UK Space Agency is presented here to demonstrate the potential of employing GE materials for space-based structures. Results from a series of high altitude (up to 35km) balloon launches outline a low-cost, low-risk stepping stone to examine the possible impact on GE material following exposure to near-space or the stratosphere. Two different payload materials were investigated; (i) graphene-enhanced carbon fibre (GECF) and (ii) 3D printed graphene-enhanced polylactic acid (GEPLA) where each is compared directly to their non-graphene equivalents. Comparative mechanical analysis pre-and post-flight were undertaken. The results provide initial confidence that the GE samples appear to be unaffected by experiencing the low pressure, low temperature environment. The GECF samples have a reduction in mass up to 20% with observably similar (or improved) mechanical properties. Though the GEPLA samples are slightly heavier (about 10%), they are more flexible than the PLA also under investigation. With the potential of significant weight reduction for similar payload volumes alongside increased structural robustness, these initial investigations indicate that GE materials warrant further investigation for a range of possible space-based applications.
机译:自2015年以来,兰开夏中部大学帮助加速了石墨烯增强(GE)材料在英国航天行业的应用。根据这种经验,在此提供了由英国空间机构资助的研究,以展示采用基于空间结构的GE材料的潜力。一系列高海拔(高达35公里)气球的结果推出概述低成本,低风险的踩踏石,以检查暴露在接近空间或平流层后的GE材料的可能影响。调查了两种不同的有效载荷材料; (i)石墨烯增强的碳纤维(GECF)和(II)3D印刷石墨烯增强的聚乳酸(Gepla),其中每种聚合物直接比较其非石墨烯等同物。对比较机械分析进行预先和飞行后。结果提供了初步的信心,即GE样品似乎不受经历低压,低温环境的影响。 GECF样品的质量降低至20%,可观察相似(或改善)机械性能。虽然Gepla样品略重(约10%),但它们也比PLA更加灵活,也在调查中。随着相似有效载荷量的显着减少的潜力以及增加的结构稳健性,这些初步调查表明GE材料需要进一步调查一系列可能的基于空间的应用。

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