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首页> 外文期刊>Journal of Materials Science >Investigation of long-term hydrophobic recovery of plasma modified polypropylene
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Investigation of long-term hydrophobic recovery of plasma modified polypropylene

机译:等离子改性聚丙烯的长期疏水性回收研究

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This study concerns the surface and adhesive properties of isotactic polypropylene (iPP) modified by an electric discharge plasma and affected by long-term hydrophobic recovery of the polymer surface after modification. The investigations were focused on the change in polarity of the modified polymer expressed by the polar fraction as well as on the decrease in the surface free energy, its polar component and mechanical work of adhesion ( Am) to polyvinyl acetate. Am of modified iPP to polyvinyl acetate as a function of polar fraction can be described by a mathematical formula. It has been confirmed that the most intensive decrease in the surface and adhesive properties investigated is produced by the long-term hydrophobic recovery of the polymer appears in the course of the first 30 days after its modification. During subsequent aging the process of polymer hydrophobic recovery proceeds more slowly. It has been found that the value of surface and adhesive properties of iPP as well as the dynamics of the decrease in these properties during hydrophobic recovery of the surface after modification is, in the main, dependent on the iPP crystallinity. (C) 2004 Kluwer Academic Publishers. [References: 23]
机译:这项研究涉及通过放电等离子体改性的等规聚丙烯(iPP)的表面和粘合性能,并受到改性后聚合物表面的长期疏水性恢复的影响。研究集中在由极性分数表示的改性聚合物的极性变化上,以及在表面自由能,其极性组分的减少和对聚乙酸乙烯酯的粘附力(Am)的机械作用上。改性iPP对聚乙酸乙烯酯的Am作为极性分数的函数可以用数学公式描述。已经证实,所研究的表面和粘合性能的最强烈降低是通过在聚合物改性后的前30天内出现的聚合物的长期疏水性恢复而产生的。在随后的老化过程中,聚合物的疏水回收过程进行得更加缓慢。已经发现,iPP的表面和粘合性能的值以及改性后表面疏水恢复期间这些性能下降的动力学主要取决于iPP的结晶度。 (C)2004 Kluwer学术出版社。 [参考:23]

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