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01-04-2025 | Original Paper

Heat-resistant adhesion performance of acrylic latex PSAs using reactive surfactants and a novel methacrylate with ethylene-urea heterocyclic group

Authors: Maoling Deng, Gang Wei, Wei Rao, Xianyao Zhang

Published in: Journal of Polymer Research | Issue 4/2025

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Abstract

The article delves into the critical need for enhancing the heat-resistant adhesion properties of acrylic latex pressure-sensitive adhesives (PSAs), which are widely used in various industries but often fall short in high-temperature applications. The research focuses on the innovative use of reactive surfactants and a novel methacrylate monomer containing an ethylene-urea heterocyclic group to improve the thermal stability and adhesion performance of PSAs. Through a series of experiments, the study examines how these modifications affect the particle size, gel content, glass transition temperature, and thermal stability of the resulting latex films. The findings reveal that the incorporation of reactive surfactants and the novel monomer significantly enhances the shear strength and heat resistance of the PSAs, while also balancing the initial tack and peel strength. This comprehensive analysis provides a deeper understanding of the mechanisms behind the improved adhesion properties and offers practical insights for developing high-performance PSAs suitable for demanding applications in high-temperature environments.

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Metadata
Title
Heat-resistant adhesion performance of acrylic latex PSAs using reactive surfactants and a novel methacrylate with ethylene-urea heterocyclic group
Authors
Maoling Deng
Gang Wei
Wei Rao
Xianyao Zhang
Publication date
01-04-2025
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 4/2025
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-025-04375-3

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