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Improving high-altitude UV-Vis resistance of PBO braided tendons of NASA's super pressure balloons

机译:改善NASA超压气球PBO编织筋的高空抗紫外线能力

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Super pressure balloons (SPBs) are used by the National Aeronautics and Space Administration (NASA) for ultra-long duration ballooning (ULDB) missions which carry various scientific explorations to support space and earth sciences research activities. The resistance to photo-degradation of load-bearing braided tendons of SPBs is critical to the success of ULDB missions. Recognizing the critical need to improve UV and visible light (UV-Vis) protective performance of p-phenylene-2, 6-benzobisoxazole (PBO) braids, North Carolina State University and NASA's Balloon Program collaborated to investigate the effectiveness of sheath extrusion method in improving the UV-Vis resistance of tendons. This study included two PBO tendon types - 48,000 (48k) denier tendons and 72,000 (72k) denier tendons. Using a sheath extrusion method, the tendons were covered with UV protective sheath of low-density polyethylene containing two types of UV inhibitors - TiO2 rutile nanoparticles and PolyOne PE White CC (R). Bare and sheathed tendons were subjected to artificial UVB exposure in the lab as well as to both high altitude and ground exposure during flight missions conducted by NASA. Protection against radiation exposure was evaluated by determining the loss of tensile strength after exposure. UV-Vis protection of tendons improved with an increase in sheath thickness as well as UV inhibitor content in the sheath. The results also showed that 72k denier braids had higher resistance against UV degradation compared to 48k denier braids. In-flight exposure results confirmed the comparative UV protective performance of tendons exposed to accelerated artificial UVB exposure in lab. 72k denier tendon covered with sheath containing 10% PE White CC (R) (sheath thickness of 0.37mm) experienced the lowest strength loss among all tendon samples to high-altitude exposure during flight missions. The study has also utilized UV-Vis transmittance of the sheath covering the braids as a method of evaluating the performance of the protective sheaths.
机译:美国国家航空航天局(NASA)使用超高压气球(SPB)执行超长持续时间气球飞行(ULDB)任务,该任务进行各种科学探索,以支持太空和地球科学研究活动。 SPB的承载编织筋的抗光降解性对于ULDB任务的成功至关重要。认识到提高对亚苯基2、6-苯并双恶唑(PBO)编织物的紫外线和可见光(UV-Vis)防护性能的迫切需求,北卡罗莱纳州立大学和美国国家航空航天局的气球计划合作研究了护套挤压方法在改善肌腱的抗紫外线强度。这项研究包括两种PBO肌腱类型-48,000(48k)旦尼尔的肌腱和72,000(72k)旦尼尔的肌腱。使用护套挤压法,在腱上覆盖低密度聚乙烯的紫外线防护护套,该护套包含两种类型的紫外线抑制剂-TiO2金红石纳米粒子和PolyOne PE White CC(R)。裸露的和带护套的肌腱在实验室中接受了人造UVB暴露,在NASA进行的飞行任务中也经受了高海拔和地面暴露。通过确定暴露后抗拉强度的损失来评估对辐射暴露的防护。随着护套厚度的增加以及护套中紫外线抑制剂含量的增加,对肌腱的UV-Vis保护得到改善。结果还表明,与48k旦尼尔的编织物相比,72k旦尼尔的编织物具有更高的抗紫外线降解性。飞行中的暴露结果证实了在实验室中,肌腱在加速的人工UVB暴露下具有相对的紫外线防护性能。在飞行任务期间,所有高强度暴露的肌腱样本中,覆盖有10%PE White CC(R)(护套厚度为0.37mm)的护套覆盖的72k丹尼尔肌腱的强度损失最低。该研究还利用覆盖编织物的护套的UV-Vis透射率作为评估防护护套性能的方法。

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