Preparation and Properties of Composite Waterborne Polyacrylate Resin Emulsion

被引:0
|
作者
Wang L. [1 ]
Song X. [2 ]
Cheng S. [1 ]
Chen T. [1 ]
机构
[1] High & New Technology Research Center, Henan Academy of Sciences, Zhengzhou
[2] Zhejiang Center for Drug Inspection, Hangzhou
来源
Gaofenzi Cailiao Kexue Yu Gongcheng/Polymeric Materials Science and Engineering | 2024年 / 40卷 / 03期
关键词
holding power; peel strength; polyacrylate emulsion; resin aqueous dispersion; thermal lamination;
D O I
10.16865/j.cnki.1000-7555.2024.0043
中图分类号
学科分类号
摘要
The water-based acrylic resin emulsion without crosslingking agent was prepared by mixing low glass transition temperature, high molecular weight acrylic resin emulsion and high glass transition temperature, low molecular weight acrylic resin aqueous dispersion, which was used for thermal lamination process of color printing packaging paper with plastic film. Using acrylic acid, butyl acrylate, styrene and hydroxyethyl acrylate as main raw materials, the acrylic emulsion with the molecular weight of (1.48~1.84) × 105 and glass transition temperature (Tg) of -20 ~ -40 ℃ was synthesized by seeding emulsion polymerization. The solid resin with molecular weight of (1.34~1.65)×104, Tg of 20~45 ℃, softening point (SP) of 80~105 ℃ was synthesized by bulk polymerization using acrylic acid, butyl acrylate, styrene, α-methylstyrene and maleate monoester. Furthermore, a self- emulsifying method was employed to prepare the aqueous dispersion of the solid resin. Properties of the acrylic emulsion with different Tg and the aqueous dispersions were investigated. The results show that when the acrylate emulsion(Tg of -27.6 ℃) was mixed with the solid resin dispersion(Tg of 28.2 ℃) at a mass ratio of 8:2, it could be used for thermal lamination of PET film and black printing paper. The peel strength reaches 5.6 N/25 mm, and the holding power reaches 270 h, which can fully meet the performance requirements of embossed laminating materials. © 2024 Sichuan University. All rights reserved.
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页码:39 / 47
页数:8
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共 20 条
  • [1] Chen H Q, Jiang B H, Cai Z Q., Preparation and properties of paper- plastic laminating adhesive used for medical packaging materials, Polymers for Advanced Technologies, 26, pp. 1065-1069, (2015)
  • [2] Xu X F, Zhang W Y, Li X, Et al., Preparation and properties of water- based acrylic paper- plastic laminating adhesive, China Plastics Industry, 42, 2, pp. 13-16, (2014)
  • [3] Jiang L, Wu B, Lei Y, Et al., Preparation and characterization of the acrylic latex- laminating adhesives applied in BOPP/PE composite films, Polymer Bulletin, 76, pp. 4469-4483, (2019)
  • [4] Yan J F, Wang Q, Peng C C, Et al., Synthesis and adhesion properties of waterborne polyacrylate emulsions, Fine Chemicals, 35, 11, pp. 1961-1967, (2018)
  • [5] Guo J, Severtson S J., Optimizing the monomer composition of acrylic water-based pressure-sensitive adhesives to minimize their impact on recycling operations, Industrial & Engineering Chemistry Research, 46, pp. 2753-2759, (2007)
  • [6] Jiang L, Liu Z M, Hu K, Et al., Preparation and properties of environment- friendly acrylic latex laminating adhesives applied in plastic/plastic composite films, Journal of Adhesion Science and Technology, 33, pp. 2-17, (2019)
  • [7] Wang C D, Guan S, Guo J C, Et al., Preparation and properties of UV Cation initiaged self -crosslinking acrylate pressure sensitive adhesive without reactive diluent, Progress in Orgnic Coatings, 181, (2023)
  • [8] Zhang G H, Wang Y W, Zhu J F, Et al., Film-Forming properties of cross- linking acrylate emulsion with core- shell structure, Polymer Materials Science & Engineering, 25, 1, pp. 71-74, (2009)
  • [9] Yan B, Ma J, Zhang X, Et al., Recent advances in the modification of polyacrylate latexes, Journal of Materials Science, 50, pp. 6839-6863, (2015)
  • [10] Parvate S, Mahanwar P., Insights into the preparation of water-based acrylic interior decorative paint: tuning binder’s properties by self-crosslinking of allyl acetoacetate - hexamethylenediamine, Progress in Organic Coatings, 126, pp. 142-149, (2019)