Effect of gamma and neutron irradiation on properties of boron nitride/epoxy resin composites

材料科学 抗辐射性 环氧树脂 复合材料 极限抗拉强度 中子 辐照 中子辐射 中子毒 中子温度 氮化硼 电磁屏蔽 热稳定性 辐射 化学 有机化学 核物理学 物理 量子力学
作者
Limin Jiao,Yi Wang,Zhihao Wu,Hang Shen,Hanqin Weng,Hongbing Chen,Wei Huang,Mozhen Wang,Xuewu Ge,Mingzhang Lin
出处
期刊:Polymer Degradation and Stability [Elsevier BV]
卷期号:190: 109643-109643 被引量:38
标识
DOI:10.1016/j.polymdegradstab.2021.109643
摘要

• The mechanical property and T g of the EP were improved by introducing h -BN. • The low contents of h -BN were favorable to enhance the radiation resistance of EP. • h -BN could weaken oxidative degradation of EP under γ irradiation. • h -BN endowed the EP with excellent neutron shielding by absorbing neutrons. Improving the radiation resistance of epoxy resin (EP) is pivotal for the reliability of equipment and the safety of facilities in the nuclear industry. Hexagonal boron nitride ( h -BN) is attractive in the preparation of radiation-resistant materials due to its good radiation stability and neutron shielding capability. In this work, h -BN/EP composites with enhanced radiation resistance were fabricated by solution blending. The tensile strength and thermal properties of the composites after γ-ray and neutron irradiation were investigated. The results showed that the addition of h -BN improved the mechanical property and the glassy transition temperature of the resin. The presence of low-level h -BN was favorable to enhance the radiation resistance of EP. As for composites with the 0.05% mass percentage of h -BN, the absorbed dose required to decrease relative tensile strength by 50% was about 300 kGy, which was higher than that of neat EP. The intrinsic mechanism of radiation resistance was attributed to the oxygen barrier effect as investigated by XPS and EPR. Then, benefiting from the absorbing neutrons capability of boron atoms, an addition of 0.55% h -BN to the EP resin could reduce the neutron transmittance of the resin by 5.6%. This study demonstrates that the blending with h -BN can increase the radiation-resistant property of EP resin, meanwhile augmenting the neutron shielding ability.
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