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首页> 外文期刊>Radiation Physics and Chemistry >GEL-SOL ANALYSIS OF THE EFFECT OF ELECTRON BEAM IRRADIATION ON THE MACROMOLECULAR STRUCTURE AND CROSSLINKING PARAMETERS IN LOW DENSITY POLYETHYLENE FILMS
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GEL-SOL ANALYSIS OF THE EFFECT OF ELECTRON BEAM IRRADIATION ON THE MACROMOLECULAR STRUCTURE AND CROSSLINKING PARAMETERS IN LOW DENSITY POLYETHYLENE FILMS

机译:低密度聚乙烯薄膜中电子束辐照对大分子结构和交联参数影响的Gel-sol分析

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摘要

The effect of electron beam irradiation with different current intensities on the macromolecular structure and crosslinking parameters in low density polyethylene films (LDPE) has been studied. The electron beam irradiation leads to the creation of regions with strong polymer's own elastification without using external elas tinea tors. At the same time new crystalline regions with straight chains in the intercrystalline amorphous regions are created. The sol fraction (W_s) and the dependence W_s+W_s~(1/2) =f(1/D) have different behaviour at irradiation with I_e= 1 mA and I_e = 2mA. The ratio G(Y)/2G(X), which gives the intensity of. the crosslinking and of the destruction processes, is quite different for the different current intensities and in the different dose intervals. The change of the density of the crosslinking of the macromolecular chains (υ_c) and of the number-average molecular weight of the macromolecular segments of the three dimensional network (< Mn, c >) is monotonical at irradiation with I_e = 1 mA, but at irradiation with I_e = 2 mA the same quantities show extremes at dose 16 Mrad. Although the behaviour of (υ_c) and (< Mn, c >) is different for the different current intensities, the dependence (υ_c)=f( < Mn, c > ) does not depend on the current intensity. These processes and their competing contributions in the obtaining of the new macromolecular structures enable the obtaining of various programmable changes in polymer properties even at one and the same irradiation dose.
机译:研究了不同电流强度的电子束辐照对低密度聚乙烯薄膜(LDPE)中大分子结构和交联参数的影响。电子束辐照导致产生具有强聚合物自身弹性的区域,而无需使用外部弹性体。同时,在晶间非晶区中产生了具有直链的新晶区。在I_e = 1 mA和I_e = 2mA辐照下,溶胶分数(W_s)和依赖性W_s + W_s〜(1/2)= f(1 / D)具有不同的行为。 G(Y)/ 2G(X)的比值给出强度。对于不同的电流强度和在不同的剂量间隔中,交联过程和破坏过程的差别很大。在I_e = 1 mA的辐照下,三维网络的大分子链交联密度(υ_c)和大分子链段数均分子量的变化()是单调的,但是在I_e = 2 mA的辐射下,相同的量在剂量16 Mrad时显示极端值。尽管(υ_c)和()的行为对于不同的电流强度是不同的,但依存关系(υ_c)= f()并不取决于电流强度。这些过程及其在获得新的大分子结构中的竞争贡献使得即使在相同且相同的辐照剂量下,也可以获得聚合物性质的各种可编程变化。

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