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Natural aging mechanics characteristics on fiber reinforced high altitude airship envelope composite

机译:纤维增强高空飞艇信封复合材料的自然老化力学特性

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For High altitude airship (HAA) with long time affected by space harsh environment, due to the occurrence of natural light radiation aging physical and mechanical properties, fiber-reinforced airship envelope material results in degradation of the mechanical load performance, even causing damage to the balloon airship. Based on the ground aging simulation of the airship envelope material under the natural light, the morphology of airship envelope material in the natural aging process can be observed and the specimen comparison test is carried on for its fracture strength and breaking elongation to qualify its mechanical properties. The specimens with the axial angle of 0° and 90° were respectively tested to get its mechanical properties and the comparative analysis on degradation of fracture strength and breaking elongation before and after its 720h aging is developed too. The test results shows that the mechanical properties of different specimens decrease, wherein the maximum degradation is 0 ° specimens and that of 90 ° specimens t is not very significant weakening. Natural aging characteristics of airship envelope material provide support for the design and improvement of anti-aging properties of the airship envelope material.
机译:对于高海拔飞艇(HAA)长时间受到空间恶劣环境的影响,由于自然光辐射老化的身体和力学性能,纤维增强飞艇包络材料导致机械负荷性能的降解,甚至造成损坏气球飞艇。基于自然光线的飞艇包络材料的地面老化模拟,可以观察到天然老化过程中飞艇包膜材料的形态,并进行样品比较试验,抗断裂强度和断裂伸长率,以获得其机械性能。分别测试具有0°和90°轴向角度的标本,得到其机械性能,并在720h老化之前和之后进行骨折强度和断裂伸长的比较分析。试验结果表明,不同试样的机械性能降低,其中最大劣化是0°样品,90°样品T的劣化不是很大的弱化。飞艇包络材料的天然老化特性为飞艇包络材料的抗衰老特性提供了支持,提供了支持和改进。

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