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机构地区:[1]成都科技大学高分子研究所
出 处:《辐射研究与辐射工艺学报》1995年第1期6-11,共6页Journal of Radiation Research and Radiation Processing
基 金:四川省科委;晨光化工研究院资助
摘 要:含有不同抗氧剂的LDPE在空气中、室温下经受200kGy的电子束辐照处理后,和未加抗氧剂的试样比较,凝胶分数下降6%一30%。DSC测定表明,辐照试样的熔点和熔融热焓、结晶温度与结晶热焓比未辐照试样略有降低。相同组成的试样两次升温和降温DSC测定结果指出,熔点和结晶温度不变,但熔融和结晶热焓呈下降趋势。降温DSC分析还发现,辐照不影响所研究的LDPE试样中支链分布的嵌段性质。试样经热处理后进行的X射线衍射分析表明,辐照未引起试样晶体结构和晶粒尺寸明显的变化,但辐照试样的结晶度略低于未辐照试样。Gel fraction(%) of LDPE containing antioxidants and irradiated by fast electron beam(200 kGy) at ambient temperature and in air decreases by 6%--30% as compared with the control specimens. DSC measurement shows that the peak melting temperature Tm, enthalpy of fusion, peak crystallization temperature Tc and enthappy of crystallization of the irradiated LDPE are somewhat declined relative to that of unirradiated specimens. The second heating and cooling DSC run demonstrates that the Tm and Tc of all the samples studied in this work are not changed, but their enthalpies of fusion and crystallization tend to decrease, The cooling DSC reveals no influence of radiation on the blocky distribution of the branches in the LDPE used in this work. The X-ray diffraction analysis for the heat--treated samples demonstrates that irradiation does not cause appreciable change of the crystal structure and crystallite size of the samples, but the degree of the crystallinity of the irradiated samples is somewhat lower than that of unirradiated ones.
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