Pöschl Marek, Sathi Shibulal Gopi, Stoček Radek
Centre of Polymer Systems, Tomas Bata University in Zlín, Třida Tomáše Bati 5678, 760 01 Zlín, Czech Republic.
Polymers (Basel). 2021 Dec 10;13(24):4329. doi: 10.3390/polym13244329.
The rheometer curing curves of 50/50 blends of natural rubber (NR) and two different halogenated rubbers with a combination of conventional accelerated sulfur (CV) and 3 phr of a bismaleimide (MF) at 170 °C indicates that a co-curing reaction has been taken place between NR and the halogenated rubbers via Diels-Alder reaction. To further confirm whether the co-curing reaction has taken place in the early stage of curing, a complex test methodology was applied with the help of a rubber process analyzer. In this test, the blends with CV and with CVMF were subjected to cure at 170 °C for a predetermined time so that both the CV and CVMF cured blends will have the same magnitude of curing torque. It is then cooled down to 40 °C and the storage modulus (G') was evaluated as a function of strain from 0.5% to 100% at a constant frequency of 1 Hz. The results reveal that the blends cured with CVMF exhibit a higher G' due to the enhanced network strength because of the formation of bismaleimide crosslinks than the same cured with only the CV system. The swelling resistance and the mechanical properties of the blends cured with CVMF were significantly higher than those cured with only the CV system.
天然橡胶(NR)与两种不同卤化橡胶以50/50比例混合,并在170°C下与传统促进剂硫磺(CV)和3份双马来酰亚胺(MF)配合,流变仪固化曲线表明,NR与卤化橡胶之间通过狄尔斯-阿尔德反应发生了共固化反应。为进一步确认共固化反应是否在固化早期发生,借助橡胶加工分析仪采用了复杂的测试方法。在该测试中,将含有CV和CVMF的混合物在170°C下固化预定时间,以使CV和CVMF固化的混合物具有相同的固化扭矩大小。然后将其冷却至40°C,并在1Hz的恒定频率下,将储能模量(G')作为应变从0.5%到100%的函数进行评估。结果表明,由于双马来酰亚胺交联形成而增强了网络强度,CVMF固化的混合物比仅用CV体系固化的混合物表现出更高的G'。CVMF固化的混合物的抗溶胀性和机械性能明显高于仅用CV体系固化的混合物。