> The cross‐linking effects of cross‐linked ethylene‐tetrafluoroethylene copolymer (XETFE)‐insulated cables at diffe'/> Study on electron beam cross‐linked ethylene‐tetrafluoroethylene copolymer‐insulated cables for aerospace applications: Mechanical performance, crystallization kinetics, and fluoride precipitation
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Study on electron beam cross‐linked ethylene‐tetrafluoroethylene copolymer‐insulated cables for aerospace applications: Mechanical performance, crystallization kinetics, and fluoride precipitation

机译:用于航空航天应用的电子束交联乙烯 - 四氟乙烯共聚物绝缘电缆的研究:机械性能,结晶动力学和氟化物沉淀

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> The cross‐linking effects of cross‐linked ethylene‐tetrafluoroethylene copolymer (XETFE)‐insulated cables at different electron beam radiation doses were analyzed in this paper. Evaluation of the mechanical performance of the cables revealed that the highest tensile and breaking elongation was achieved at a radiation dose of 8?×?10 4 ?Gy and that XETFE had a good resistance to extreme electron beam irradiation. This is attributed to the cross‐linking effects induced by electron beam irradiation, and this takes full advantage of the strength of molecular chain crosslink to each other. The crystallization kinetics of XETFE at different electron beam radiation doses were studied in detail in terms of the non‐isothermal and isothermal crystallization processes. The results indicated that the crystallinity of the XETFE domain increased with an increase in the radiation dose as a result of heterogeneous nucleation. Moreover, the highest Δ E a was obtained, indicating that XETFE absorbed some energy at a radiation dose of 8?×?10 4 ?Gy. These kinetic parameters had help in carrying out a comprehensive evaluation of the performance of XETFE‐insulated cables for aerospace applications. Moreover, the fluoride precipitation observed in this study indicated that upon electron beam irradiation, XETFE could internally produce hydrogen fluoride, which is corrosive to metals. Thus, optimizing the radiation dose was necessary to achieve the desired performance. We could believe that the improvement for properties of electron beam XETFE insulation cables would expand their range of applications in the aerospace field.
机译: >交联乙烯 - 四氟乙烯共聚物的交联效果(xetfe在本文中分析了不同电子束辐射剂量的隔音电缆。对电缆的机械性能的评价显示,在8Ω·10 4 4 4-gy的辐射剂量下实现了最高的拉伸和断裂伸长率,并且Xetfe对极端电子束照射具有良好的抵抗力。这归因于电子束照射引起的交联效果,这充分利用分子链交联彼此的强度。在非等温和等温结晶过程方面,详细研究了不同电子束辐射剂量的Xetfe的结晶动力学。结果表明,由于异质成核,XetFe结构域的结晶度随着辐射剂量的增加而增加。此外,获得了最高Δ a ,表明xetfe在8Ω×10 4 4 4 的辐射剂量中吸收了一些能量。这些动力学参数有助于对航空航天应用进行XETFE绝缘电缆的性能进行综合评价。此外,在本研究中观察到的氟化物沉淀表明,在电子束照射时,Xetfe可以在内部生产氟化氢,这对金属腐蚀性腐蚀性。因此,需要优化辐射剂量以达到所需的性能。我们可以相信电子束XETFE绝缘电缆的性能的改进将扩展其在航空航天场中的应用范围。

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