首页> 外文会议>2018 IEEE 2nd International Conference on Dielectrics >Effect of Gamma-ray Irradiation on Trap Characteristics of Polyethylene Based Micro/Nanocomposites
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Effect of Gamma-ray Irradiation on Trap Characteristics of Polyethylene Based Micro/Nanocomposites

机译:γ射线辐照对聚乙烯基微纳米复合材料陷阱特性的影响

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As the main insulating material of nuclear power plant cables, polyethylene is exposed to high temperatures and irradiation and its service life is shortened. It is crucial to improve the insulating and electrical properties of irradiated polyethylene. In this study, low-density polyethylene (LDPE) based Boron Nitride $(mathrm {B}mathrm {N})/mathrm {S}mathrm {i}mathrm {O}_{2}$ Microanocomposites have been prepared to investigate the effect gamma-ray irradiation on the trap characteristics. The irradiation was carried out in air and the total dose was $0mathrm {k}mathrm {G}mathrm {y}, 100mathrm {k}mathrm {G}mathrm {y}, 500mathrm {k}mathrm {G}mathrm {y}$ and $1000~mathrm {k}mathrm {G}mathrm {y}$. The surface potential decay of gamma-irradiated composites filled with various contents of micro- and nano-sized particles was measured, and the trap distribution and the carrier mobility of composites could be obtained. It was found that the trap depth decreased as the total dose increased from $0 mathrm {k}mathrm {G}mathrm {y}$ to $1000~mathrm {k}mathrm {G}mathrm {y}.$ The trap depth of the composites containing 20 wt% micro-BN and 5 wt% nano-SiO2 did not change significantly with the growth of irradiation dose. It is considered that the addition of micro- and nano- particles plays a better role in hindering the chemical reactions such as crosslinking and oxidation.
机译:聚乙烯作为核电站电缆的主要绝缘材料,暴露于高温和辐射下会缩短其使用寿命。改善辐照聚乙烯的绝缘和电性能至关重要。在这项研究中,低密度聚乙烯(LDPE)基氮化硼$(mathrm {B} mathrm {N})/ mathrm {S} mathrm {i} mathrm {O} _ {2} $制备了微米/纳米复合材料研究γ射线辐照对陷阱特征的影响。辐照在空气中进行,总剂量为$ 0mathrm {k} mathrm {G} mathrm {y},100mathrm {k} mathrm {G} mathrm {y},500mathrm {k} mathrm {G} mathrm {y } $和$ 1000〜mathrm {k} mathrm {G} mathrm {y} $。测量了充满了各种微米和纳米尺寸颗粒的γ辐照复合材料的表面电势衰减,可以获得复合材料的陷阱分布和载流子迁移率。发现随着总剂量从$ 0 mathrm {k} mathrm {G} mathrm {y} $增加到$ 1000〜mathrm {k} mathrm {G} mathrm {y},陷阱深度减小。含有20 wt%的微BN和5 wt%的纳米SiO2的复合材料不会随辐照剂量的增加而发生显着变化。认为添加微米和纳米颗粒在阻碍诸如交联和氧化的化学反应中起更好的作用。

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