Jang Nam Gyu, Linh Tran Quang, Toan Mai, Kwon Kiok, Shin Seunghan
Green Chemistry & Materials Group, Korea Institute of Industrial Technology (KITECH), Cheonan 31056, Republic of Korea.
Department of Green Process and Energy System Engineering, University of Science & Technology (UST), Daejeon 34113, Republic of Korea.
Polymers (Basel). 2025 Jan 17;17(2):231. doi: 10.3390/polym17020231.
This study explores the use of propylene oxide-modified ethylenediamine (PPO-EDA) as a novel crosslinker and chain extender in polyurethane (PU) adhesives. PPO-EDA was synthesized and compared with ,-dimethylethylenediamine (DMEDA) to assess its impact on mechanical properties and adhesion performance. Key parameters such as NCO conversion, tensile strength, and lap shear strength were thoroughly evaluated. The results demonstrated that incorporating PPO-EDA significantly improved NCO conversion and crosslink density, leading to notable enhancements in tensile strength and elastic modulus compared to DMEDA. Lap shear tests further revealed superior adhesion performance in PPO-EDA-modified PU adhesives, particularly on amine silane-treated steel substrates, where lap shear strength consistently outperformed other samples. This improved performance was attributed to PPO-EDA's dual role as a chain extender and crosslinker, which strengthened the adhesive's structural integrity. This study underscores the effectiveness of PPO-EDA as a modifier for enhancing both mechanical and adhesive properties in PU-based adhesives, offering a promising solution for optimizing high-performance adhesives in automotive and industrial applications.
本研究探索了环氧丙烷改性乙二胺(PPO-EDA)作为一种新型交联剂和扩链剂在聚氨酯(PU)胶粘剂中的应用。合成了PPO-EDA并与二甲基乙二胺(DMEDA)进行比较,以评估其对力学性能和粘合性能的影响。对诸如NCO转化率、拉伸强度和搭接剪切强度等关键参数进行了全面评估。结果表明,与DMEDA相比,加入PPO-EDA显著提高了NCO转化率和交联密度,从而使拉伸强度和弹性模量有显著提高。搭接剪切试验进一步表明,PPO-EDA改性的PU胶粘剂具有优异的粘合性能,特别是在胺硅烷处理的钢基材上,其搭接剪切强度始终优于其他样品。这种性能的提高归因于PPO-EDA作为扩链剂和交联剂的双重作用,它增强了胶粘剂的结构完整性。本研究强调了PPO-EDA作为一种改性剂在增强基于PU的胶粘剂的力学性能和粘合性能方面的有效性,为优化汽车和工业应用中的高性能胶粘剂提供了一个有前景的解决方案。