Miranda Riccardo, Luciano Marco, Fiore Vincenzo, Valenza Antonino
Department of Engineering, University of Palermo, Viale delle Scienze, Edificio 6, 90128 Palermo, Italy.
Polymers (Basel). 2025 Jan 8;17(2):131. doi: 10.3390/polym17020131.
This paper deals with the design of novel epoxy adhesives by incorporating thermoplastic polymers such as polyetherimide (PEI) and poly(ε-caprolactone) (PCL) into a bio-based and recyclable epoxy resin, known as Polar Bear. The adhesives were characterized by their mechanical (quasi-static and dynamic) and rheological properties, thermal stability, and adhesion properties in single-lap joints tested at three different temperatures (i.e., -55 °C, 23 °C, 80 °C). The experimental results indicated that low PEI content substantially improved the mechanical performance and toughness of the adhesive, while preserving good processability. Nonetheless, exceeding 3% weight percentage adversely affected the adhesives' mechanical resistance and workability. Conversely, while PCL addition enhanced the adhesives' viscosity, it also decreased mechanical performance. However, its eco-friendliness offers potential for sustainable adhesive applications. It is worth noting that regardless of temperature, the modified adhesives consistently outperformed the commercial epoxy adhesive (DP-460), used as reference, in single-lap shear joint tests. Additionally, both PEI- and PCL-modified epoxy adhesives have demonstrated recyclability through a simple acid-based process, enabling joint disassembly and recycling of the adhesive into a thermoplastic polymer. Overall, the modified adhesives represent a promising eco-friendly, high-performance alternative for structural applications, aligning with sustainable and circular practices.
本文通过将热塑性聚合物(如聚醚酰亚胺(PEI)和聚(ε-己内酯)(PCL))掺入一种名为“北极熊”的生物基可回收环氧树脂中,来研究新型环氧胶粘剂的设计。通过在三种不同温度(即-55°C、23°C、80°C)下测试的单搭接接头中的机械性能(准静态和动态)、流变性能、热稳定性和粘附性能对胶粘剂进行了表征。实验结果表明,低PEI含量在保持良好加工性能的同时,显著提高了胶粘剂的机械性能和韧性。然而,超过3%的重量百分比会对胶粘剂的机械强度和可加工性产生不利影响。相反,虽然添加PCL提高了胶粘剂的粘度,但也降低了机械性能。然而,其环保性为可持续胶粘剂应用提供了潜力。值得注意的是,在单搭接剪切接头测试中,无论温度如何,改性胶粘剂始终优于用作参考的商业环氧胶粘剂(DP-460)。此外,PEI改性和PCL改性的环氧胶粘剂都通过简单的酸基工艺证明了可回收性,能够拆卸接头并将胶粘剂回收为热塑性聚合物。总体而言,改性胶粘剂是一种有前途的环保、高性能结构应用替代品,符合可持续和循环利用的做法。