Kruželák Ján, Hložeková Klaudia, Kvasničáková Andrea, Džuganová Michaela, Chodák Ivan, Hudec Ivan
Department of Plastics, Rubber and Fibres, Faculty of Chemical and Food Technology, Slovak University of Technology in Bratislava, Radlinského 9, 812 37 Bratislava, Slovakia.
Polymer Institute, Slovak Academy of Sciences, Dúbravská Cesta 9, 845 41 Bratislava, Slovakia.
Materials (Basel). 2023 Jan 9;16(2):635. doi: 10.3390/ma16020635.
The work deals with the application of biopolymer fillers in rubber formulations. Calcium lignosulfonate was incorporated into styrene-butadiene rubber and acrylonitrile-butadiene rubber in a constant amount of 30 phr. Glycerol in a concentration scale ranging from 5 to 20 phr was used as a plasticizer for rubber formulations. For the cross-linking of the compounds, a sulfur-based curing system was used. The study was focused on the investigation of glycerol in the curing process; the viscosity of rubber compounds; and the cross-link density, morphology, physical-mechanical, and dynamic mechanical properties of vulcanizates. The study revealed that the application of glycerol as a plasticizer resulted in a reduction in the rubber compounds' viscosity and contributed to the better dispersion and distribution of the filler within the rubber matrices. The mutual adhesion and compatibility between the filler and the rubber matrices were improved, which resulted in the significant enhancement of tensile characteristics. The main output of the work is the knowledge that the improvement of the physical-mechanical properties of biopolymer-filled vulcanizates can be easily obtained via the simple addition of a very cheap and environmentally friendly plasticizer into rubber compounds during their processing without additional treatments or procedures. The enhancement of the physical-mechanical properties of rubber compounds filled with biopolymers might contribute to the broadening of their potential applications. Moreover, the price of the final rubber articles could be reduced, and more pronounced ecological aspects could also be emphasized.
该工作涉及生物聚合物填料在橡胶配方中的应用。将木质素磺酸钙以30 phr的恒定用量加入丁苯橡胶和丁腈橡胶中。甘油以5至20 phr的浓度范围用作橡胶配方的增塑剂。对于化合物的交联,使用了硫基硫化体系。该研究聚焦于甘油在硫化过程中的作用;橡胶混合物的粘度;以及硫化胶的交联密度、形态、物理机械性能和动态机械性能。研究表明,使用甘油作为增塑剂可降低橡胶混合物的粘度,并有助于填料在橡胶基体中更好地分散和分布。填料与橡胶基体之间的相互粘附性和相容性得到改善,从而显著提高了拉伸性能。该工作的主要成果是认识到,在生物聚合物填充的硫化胶加工过程中,通过简单添加一种非常便宜且环保的增塑剂,无需额外处理或程序,就能轻松实现其物理机械性能的改善。填充生物聚合物的橡胶混合物物理机械性能的增强可能有助于拓宽其潜在应用范围。此外,最终橡胶制品的价格可以降低,并且还能更突出生态方面的优势。