The role of low-molecular-weight oxidized materials in the adhesion properties of corona-treated polypropylene film

The role of low-molecular-weight oxidized materials in the adhesion properties of corona-treated polypropylene film
复制标题

DOI:
10.1163/15685610360472411
复制
发表时间:
2003-01-01
影响因子:
2.3
通讯作者:
Lyons, CS
Lyons, CS
中科院分区:
材料科学3区
文献类型:
--
作者:
Strobel, M;Lyons, CS

文献摘要

被引文献

相似文献

通过将聚酰胺油墨、气相涂层铝、合成橡胶压敏胶和丙烯酸酯基压敏胶四种不同的材料粘附在改性聚丙烯(PP)薄膜上,研究了电晕处理产生的低分子氧化材料对PP薄膜粘附性能的影响。低分子量材料增强了油墨与丙烯酸基材料的附着力,但阻碍了金属与橡胶基粘合剂的附着力。这种看似矛盾的粘附行为可以用Brewis和Briggs在20世纪80年代提出的原理来解释。
The effects of low-molecular-weight oxidized materials generated by corona treatment on the adhesion properties of polypropylene (PP) film were investigated by adhering four different materials to the modified PP: a polyamide printing ink, vapor-coated aluminum, a synthetic-rubber pressure-sensitive adhesive, and an acrylate-based pressure-sensitive adhesive. The low-molecular-weight materials enhanced the adhesion of the ink and acrylate-based material, but hindered the adhesion of the metal and the rubber-based adhesive. This seemingly contradictory adhesion behavior can be readily explained using the principles outlined by Brewis and Briggs in the 1980s.