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首页> 外文期刊>Journal of Applied Polymer Science >Molecular structure and physical properties of E-beam crosslinked low-density polyethylene for wire and cable insulation applications
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Molecular structure and physical properties of E-beam crosslinked low-density polyethylene for wire and cable insulation applications

机译:电子束交联低密度聚乙烯在电线电缆绝缘中的分子结构和物理性能

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摘要

Crosslinking of homemade low-density polyethylene (LDPE) was performed by electron-beam (EB) irradiation. The gel content of the EB-exposed LDPE was determined by the solvent-extraction method. The degree of crosslinking was also evaluated by a hot set measuring test. The results obtained from both the gel-sol and the hot set methods showed that the degree of crosslinking was dependent on the deposited energy in LDPE samples. Increasing the absorbed dose increased the degree of network formation. The LDPE with higher molecular weight yielded higher efficiency of crosslinking at the same irradiation dose. The effect of irradiation dose on the molecular weight between crosslinks (M-c), glass-transition temperature, and free volume were calculated. Mechanical test results showed that the tensile strength of the samples increased with increase in the irradiation dose up to 150 kGy and then slightly decreased with further increasing the deposited energy. The elongation at break decreased with increasing the absorbed dose. The results obtained from differential scanning calorimetry exhibited a small reduction in the melting point and the degree of crystallinity of the EB-exposed LDPE samples compared to those of the untreated samples. The effect of crosslinking on the electrical properties of the irradiated samples was insignificant. The dielectric constant of the treated samples remained nearly constant within the irradiation dose range, although the dissipation factor increased slightly with increasing the absorbed dose, The results obtained from characterizing the EB-induced crosslinking of homemade polyethylene, including LH0030 and LH0075, showed the higher molecular weight polyethylene (LH0030) as a preferred option for wire and cable insulation. (C) 2002 Wiley Periodicals, Inc. [References: 18]
机译:自制的低密度聚乙烯(LDPE)的交联是通过电子束(EB)辐射进行的。 EB暴露的LDPE的凝胶含量通过溶剂萃取法确定。交联度也通过热定型试验来评价。从凝胶-溶胶和热固方法获得的结果表明,交联度取决于LDPE样品中的沉积能量。增加吸收剂量会增加网络形成的程度。在相同的照射剂量下,具有较高分子量的LDPE产生较高的交联效率。计算了辐照剂量对交联之间的分子量(M-c),玻璃化转变温度和自由体积的影响。力学测试结果表明,样品的拉伸强度随着辐照剂量的增加而增加,直至150 kGy,然后随着沉积能量的进一步增加而略有下降。断裂伸长率随着吸收剂量的增加而降低。与未经处理的样品相比,从差示扫描量热法获得的结果显示,暴露于EB的LDPE样品的熔点和结晶度有小幅下降。交联对被辐照样品电学性能的影响不明显。尽管耗散因数随吸收剂量的增加而略有增加,但处理后样品的介电常数在辐照剂量范围内几乎保持恒定。表征EB诱导的包括LH0030和LH0075的自制聚乙烯的交联所得结果表明,分子量聚乙烯(LH0030)作为电线和电缆绝缘的首选。 (C)2002 Wiley Periodicals,Inc. [参考:18]

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