Journal of Guangdong University of Technology ›› 2024, Vol. 41 ›› Issue (03): 54-61.doi: 10.12052/gdutxb.230053

• Materials Science and Technology • Previous Articles     Next Articles

Effects of Prepolymer on the Cooking-resistant Properties of Solvent-free Polyurethane Adhesives

Yao Jia-chang1,2, Chen Zhi-guo2, Yue Hang-bo1   

  1. 1. School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou 510006, China;
    2. Zhongshan Kingho Chemical Co., Ltd., Zhongshan 528478, China
  • Received:2023-03-21 Online:2024-05-25 Published:2024-06-14

Abstract: A series of polyurethane prepolymers were designed and synthesized as isocyanate-terminated component for the final product: two-component solvent-free polyurethane adhesives. Structural characterization using infrared and 1H NMR spectroscopies confirmed the structure of the designed prepolymers. The effect of the isocyanate mass fraction (ωNCO) of the prepolymer, molecular weight of polyols and ratio R (molar ratio of –OH to –NCO in adhesives) on viscosity and cooking resistance of the polyurethane adhesives were investigated by a variable-control method. The results show that in the case of ωNCO=17%, the prepolymer has a low viscosity, and the prepared adhesive has a higher peel force after boiling treatment. For a constant value of ωNCO, as the molecular weight of the polyol decreases, the viscosity of the prepolymer increases, so does the peel force of the polyurethane adhesive before and after boiling. With polyols molecular weight of 1 609 g/mol, ωNCO of 17% and R of 2.5, the peel force of retort cast polypropylene (RCPP) layer before and after boiling is as high as 6.30 N and 4.37 N, respectively. A series of polyurethane adhesives were prepared by mixing this prepolymer with different B components, meeting the requirements in standard GB/T41168-2021 for cooking resistance requirements of aluminum plastic composite film.

Key words: adhesive, polyurethane prepolymer, isocyanate, molecular weight, peel force

CLC Number: 

  • TQ323.8
[1] JEYAPRIYA S, KANTALE R A. Retort packaging technology, its market and future prospective [J]. Vigyan Varta, 2022, 3(6): 65-69.
[2] KLIOPOVA-GALICKAIA I, KLIAUGAITE D. VOC emission reduction and energy efficiency in the flexible packaging printing processes: analysis and implementation [J]. Clean Technologies and Environmental Policy, 2018, 20(8): 1805-1818.
[3] HE H W, FU Y B, ZHAO Y Z, et al. Applied properties and life cycle assessment of flexible packaging lamination processes: a comparative study [J]. The International Journal of Life Cycle Assessment, 2021, 26(3): 561-574.
[4] 秦瑜, 张陆军, 刘赣东, 等. 无溶剂软包装用聚氨酯复合胶粘剂的最新研究进展[J]. 中国胶粘剂, 2021, 30(11): 784-788.
QIN Y, ZHANG L J, LIU G D, et al. The latest research progress of solvent-free polyurethane lamination adhesive for flexible packaging [J]. China Adhesive, 2021, 30(11): 784-788.
[5] 吕尚书. 软包锂离子电池铝塑膜的热封性能研究[J]. 功能材料, 2019, 50(7): 07115-07119.
LYU S S. Study on heat sealing performance of aluminum-plastic film for flexible packaging lithium ion battery [J]. Journal of Function Materials, 2019, 50(7): 07115-07119.
[6] CHEN Y C, ZHANG H, ZHU Z D, et al. High-value utilization of hydroxymethylated lignin in polyurethane adhesives [J]. International Journal of Biological Macromolecules, 2020, 152: 775-785.
[7] 沈娜, 唐君. 一种新型耐蒸煮性聚氨酯胶粘剂[J]. 中国胶粘剂, 2010, 19(4): 68.
[8] 顾嘉卫, 钟树良, 周锦君, 等. 一种无溶剂双组份聚氨酯蒸煮胶粘剂的制备方法CN107722917A [P]. 2018-02-23.
[9] 李昳, 董云哲, 李明森. 耐蒸煮双组份聚氨酯粘合剂的制备与试验[J]. 应用化工, 2019, 48(7): 1767-1769.
LI Y, DONG Y Z, LI M S. Preparation and test of bicomponent polyurethane adhesive resistant to cooking [J]. Applied Chemical Industry, 2019, 48(7): 1767-1769.
[10] ENGELS H W, PIRKL H G, ALBERS R, et al. Polyurethanes: versatile materials and sustainable problem solvers for today's challenges [J]. Angewandte Chemie-International Edition, 2013, 52(36): 9422-9441.
[11] GOUVEIA J R, DE SOUSA JUNIOR R R, RIBEIRO A O, et al. Effect of soft segment molecular weight and NCO: OH ratio on thermomechanical properties of lignin-based thermoplastic polyurethane adhesive [J]. European Polymer Journal, 2020, 131: 109690.
[12] LI R, LOONTJENS J A T, SHAN Z H. The varying mass ratios of soft and hard segments in waterborne polyurethane films: performances of thermal conductivity and adhesive properties [J]. European Polymer Journal, 2019, 112: 423-432.
[13] 李贤勇, 刘静月, 侯洪波, 等. 聚碳酸酯二元醇改性聚酯的合成及其性能研究[J]. 四川轻化工大学学报(自然科学版) , 2022, 35(6): 19-25.
LI X Y, LIU J Y, HOU H B, et al. Research on the synthesis and performance of modified polyester by polycarbonate diols [J]. Journal of Sichuan University of Science & Engineering (Natural Science Edition) , 2022, 35(6): 19-25.
[14] 王丽媛, 吴海平, 向劲松. 铝蜂窝板用双组分聚氨酯胶粘剂的开发及性能测试[J]. 中国胶粘剂, 2020, 29(5): 43-46.
WANG L Y, WU H P, XIANG J S. Development and performance test of two-component polyurethane adhesive for aluminum honeycomb panel [J]. China Adhesives, 2020, 29(5): 43-46.
[15] 冉岚, 刘少友, 唐文华, 等. 软硬段含量对水性聚氨酯微相结构与性能的影响[J]. 合成树脂及塑料, 2014, 31(1): 24-26.
RAN L, LIU S Y, TANG W H, et al. Influence of soft-hard segment content on micro-phase structure and properties of waterborne polyurethane [J]. China Synthetic Resin and Plastics, 2014, 31(1): 24-26.
[16] 潘健, 张燕飞, 张和平. 复合包装膜的热封性能判定及影响因素分析[J]. 包装与食品机械, 2020, 38(2): 70-72.
PAN J, ZHANG Y F, ZHANG H P. Determination of the heat-sealing property of the composite packaging film and the analysis of the influencing factors [J]. Packaging and Food Machinery, 2020, 38(2): 70-72.
[17] 苏丽丽, 郭映瀚, 石雅琳, 等. 室温固化双组分聚氨酯胶黏剂的研制[J]. 化学推进剂与高分子材料, 2022, 20(1): 66-68.
SU L L, GUO Y H, SHI Y L, et al. Development of two component polyurethane adhesive for curing at room temperature [J]. Chemical Propellants & Polymeric Materials, 2022, 20(1): 66-68.
[18] 谢一泽, 吴小龙, 姜志国, 等. 输送带用聚氨酯(脲) 修补胶的制备与性能研究[J]. 现代化工, 2023, 43(1): 198-200.
XIE Y Z, WU X L, JIANG Z G, et al. Preparation and properties of poly( urethane-urea) patching adhesive for conveyor belt [J]. Modern Chemical Industry, 2023, 43(1): 198-200.
[19] 王小妹, 李建明, 陈为都, 等. 无溶剂MDI型聚氨酯复膜胶粘剂的研究[J]. 粘接, 2010, 31(9): 46-49.
WANG X M, LI J M, CHEN W D, et al. Study on solvent-free MDI-based polyurethane laminating adhesive [J]. Adhesion, 2010, 31(9): 46-49.
[20] PENG S, JIN Y, SUN T B, et al. Synthesis of high solid content waterborne polyurethanes with controllable bimodal particle size distribution [J]. Journal of Applied Polymer Science, 2014, 131(12): 1-9.
[1] LI Dong-mei~(1),JIN Tong-gui~(2),LI Zhi-Sheng~(1),TAN Wan-chun~(3). The Effect of Concentration of High Molecular Weight Flocculantson Fractal Structures of Bridging Flocculated Aggregates for Sediments [J]. Journal of Guangdong University of Technology, 2006, 23(3): 40-45.
[2] LI Ming-qing,ZHOU Chang-ren. Preparation of Pressure-sensitive Adhesive Used for Polyethylene Film [J]. Journal of Guangdong University of Technology, 2005, 22(2): 6-11.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!