Algaily Bashir, Kaewsakul Wisut, Sarkawi Siti Salina, Kalkornsurapranee Ekwipoo
Polymer Science and Technology, Division of Physical Science, Faculty of Science, Prince of Songkla University, Hat Yai Campus, Songkhla 90110, Thailand.
Department of Physics, Faculty of Science and Technology, Al-Neelain University, Khartoum 11111, Sudan.
Polymers (Basel). 2020 Dec 24;13(1):39. doi: 10.3390/polym13010039.
The property retentions of silica-reinforced natural rubber vulcanizates with various contents of a self-healing modifier called EMZ, which is based on epoxidized natural rubber (ENR) modified with hydrolyzed maleic anhydride (HMA) as an ester crosslinking agent plus zinc acetate dihydrate (ZAD) as a transesterification catalyst, were investigated. To validate its self-healing efficiency, the molecular-scale damages were introduced to vulcanizates using a tensile stress-strain cyclic test following the Mullins effect concept. The processing characteristics, reinforcing indicators, and physicomechanical and viscoelastic properties of the compounds were evaluated to identify the influences of plausible interactions in the system. Overall results demonstrate that the property retentions are significantly enhanced with increasing EMZ content at elevated treatment temperatures, because the EMZ modifier potentially contributes to reversible linkages leading to the intermolecular reparation of rubber network. Furthermore, a thermally annealing treatment of the damaged vulcanizates at a high temperature, e.g., 120 °C, substantially enhances the property recovery degree, most likely due to an impact of the transesterification reaction of the ester crosslinks adjacent to the molecular damages. This reaction can enable bond interchanges of the ester crosslinks, resulting in the feasibly exchanged positions of the ester crosslinks between the broken rubber molecules and, thus, achievable self-reparation of the damages.
研究了以水解马来酸酐(HMA)改性的环氧化天然橡胶(ENR)为酯交联剂、二水合醋酸锌(ZAD)为酯交换催化剂的自修复改性剂EMZ不同含量的二氧化硅增强天然橡胶硫化胶的性能保持率。为了验证其自修复效率,根据穆林斯效应概念,通过拉伸应力-应变循环试验在硫化胶中引入分子尺度的损伤。对胶料的加工特性、增强指标以及物理力学和粘弹性性能进行了评估,以确定体系中可能的相互作用的影响。总体结果表明,在升高的处理温度下,随着EMZ含量的增加,性能保持率显著提高,这是因为EMZ改性剂可能有助于形成可逆键,从而实现橡胶网络的分子间修复。此外,对受损硫化胶在高温(如120℃)下进行热退火处理,可显著提高性能恢复程度,这很可能是由于分子损伤附近的酯交联发生酯交换反应的影响。该反应可使酯交联发生键交换,导致断裂橡胶分子之间酯交联的位置可行地交换,从而实现损伤的自修复。