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首页> 外文期刊>Iranian polymer journal >Irradiation, thermal and mechanical properties of ethylene-tetrafluoroethylene copolymer for use in wings of unmanned aerial vehicle
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Irradiation, thermal and mechanical properties of ethylene-tetrafluoroethylene copolymer for use in wings of unmanned aerial vehicle

机译:乙烯 - 四氟乙烯共聚物中用于无人机桥翼的辐照,热和力学性能

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To study the properties of ethylene-tetrafluoroethylene (ETFE) copolymer materials in wings of unmanned aerial vehicles, electron beam irradiation was performed to prepare the corresponding irradiated ETFE for air atmosphere. All these irradiated samples were characterized by SEM, FTIR, TGA, DSC, flexural fatigue measurement and tensile test. The results revealed that the logarithm of the flexural fatigue of ETFE decreased with the irradiation dose increased, which could be explained by the growing effect of chain scission. The elongation-at-break decreased with the dose increase, while the tensile strength was kept constant. As shown in FTIR results, the scission of the macromolecular chains induced by irradiation resulted in the relative oxidation of groups, such as carbonyl groups. TGA analysis showed that the initial and maximum decomposition temperatures increased with dose increase due to the inherent cross-linking structures. Besides, the number of the crystalline regions with regular formation (such as crystallization temperature, crystallization degree and crystallization enthalpy) decreased with the dose increase as a result of the formation of unsaturated structures after the elimination of HF from the broken chains, which was confirmed by FTIR. It is expected that our findings can provide important information to promote the development of aircraft materials.
机译:为了研究无人驾驶飞行器翼的乙烯 - 四氟乙烯(ETFE)共聚物材料的性质,进行电子束照射以制备用于空气气氛的相应​​辐照的ETFE。所有这些辐照样品都是通过SEM,FTIR,TGA,DSC,抗弯疲劳测量和拉伸试验来表征。结果表明,ETFE弯曲疲劳的对数随着辐照剂量的增加,这可以通过链裂化的效果越来越多。随着剂量增加而伸长率下降,而拉伸强度保持恒定。如FTIR结果所示,辐射诱导的大分子链的调节导致基团的相对氧化,例如羰基。 TGA分析表明,由于固有的交联结构,初始和最大分解温度随剂量增加而增加。此外,由于在从破碎的链中消除HF之后,在从破碎的链中形成了不饱和结构之后,具有常规形成(例如结晶温度,结晶度和结晶焓)的结晶区域的数量随着剂量而增加,这是确认的通过FTIR。预计我们的调查结果可以提供促进飞机材料的发展的重要信息。

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