Cai Zhejing, Čadek Drahomír, Jindrová Michaela, Kadeřábková Alena, Kuta Antonín
Department of Polymers, University of Chemistry and Technology, Prague, Technická 5, 166 28 Praha, Czech Republic.
Materials (Basel). 2022 Oct 25;15(21):7478. doi: 10.3390/ma15217478.
The sustainable material-thermoplastic potato starch (TPS)-was blended with modified natural rubber-epoxidized natural rubber (ENR). The poor mechanical properties of the ENR/TPS blends limited the application. Sulfur vulcanization is a common and economical method to improve the mechanical properties in the rubber industry. To fully understand the relationship between vulcanization systems and ENR/TPS blends and the sustainability of the developed material, the effects of a vulcanization accelerator (N-cyclohexylbenzothiazole-2-sulphenamide (CBS), 2-mercaptobenzothiazole (MBT), N-tert-butylbenzothiazole-2-sulphenamide (TBBS)) and a system type (conventional vulcanization (CV), semi-efficient vulcanization (SEV) and efficient vulcanization (EV)) on curing characteristics, mechanical and thermal properties, water absorption and biodegradability were systematically evaluated. The results indicate that vulcanization significantly improves the mechanical properties of ENR/TPS blends. The performance optimization of the CBS-CV vulcanization system is the best for improving the mechanical properties and reducing the water absorption. The CBS-CV curing system makes ENR/TPS less biodegradable (12-56% of mass loss) than other accelerators and systems. TBBS-CV makes the material more biodegradable (18-66% of mass loss). The low rubber content enables the rapid biodegradation of the vulcanized blend. This has implications for research on sustainable materials. The material can be applied for eco-friendly packaging and agricultural films, etc. The investigation on performance by using common accelerators and systems provides ideas for industries and research.
将可持续材料热塑性马铃薯淀粉(TPS)与改性天然橡胶环氧化天然橡胶(ENR)共混。ENR/TPS共混物较差的机械性能限制了其应用。硫磺硫化是橡胶工业中提高机械性能的常用且经济的方法。为了全面了解硫化体系与ENR/TPS共混物之间的关系以及所开发材料的可持续性,系统评估了硫化促进剂(N-环己基苯并噻唑-2-次磺酰胺(CBS)、2-巯基苯并噻唑(MBT)、N-叔丁基苯并噻唑-2-次磺酰胺(TBBS))和体系类型(常规硫化(CV)、半有效硫化(SEV)和有效硫化(EV))对硫化特性、机械和热性能、吸水性和生物降解性的影响。结果表明,硫化显著提高了ENR/TPS共混物的机械性能。CBS-CV硫化体系的性能优化在改善机械性能和降低吸水性方面是最佳的。CBS-CV硫化体系使ENR/TPS的生物降解性低于其他促进剂和体系(质量损失为12-56%)。TBBS-CV使材料更具生物降解性(质量损失为18-66%)。低橡胶含量使硫化共混物能够快速生物降解。这对可持续材料的研究具有启示意义。该材料可应用于环保包装和农用薄膜等。使用常见促进剂和体系对性能进行的研究为行业和研究提供了思路。