Zhang Xinyuan, Zhang Qi, Meng Xin, Ye Yuting, Feng Daoshuo, Xue Jing, Wang Hanbing, Huang Haofei, Wang Ming, Wang Jing
School of Chemistry and Chemical Engineering, Shandong University of Technology, 266 Xincun Rd., Zibo 255000, China.
Polymers (Basel). 2021 Sep 1;13(17):2975. doi: 10.3390/polym13172975.
Resin-based materials have been prevalent for dental restorations over the past few decades and have been widely used for a variety of direct and indirect procedures. Typically, resin-based dental materials are required to be flowable or moldable before setting and can provide adequate mechanical strength after setting. The setting method may include, but is not limited to, light-curing, self-curing or heating. In this review, based on different indications of resin-based dental materials (e.g., dental filling composite, dental bonding agent, resin luting cement), their rheological and mechanical properties were reviewed. Viscous and flexible properties were focused on for materials before setting, while elastic properties and mechanical strength were focused on for materials after setting. At the same time, the factors that may affect their rheological and mechanical properties were discussed. It is anticipated that the insightful information and prospections of this study will be useful to the future development and fabrication of resin-based dental restorative materials.
在过去几十年中,树脂基材料在牙科修复中颇为普遍,并已广泛应用于各种直接和间接修复程序。通常,树脂基牙科材料在固化前需要具有流动性或可模塑性,固化后能提供足够的机械强度。固化方法可包括但不限于光固化、自固化或加热。在本综述中,基于树脂基牙科材料的不同适应症(如牙科填充复合材料、牙科粘结剂、树脂粘结水门汀),对其流变学和机械性能进行了综述。对于固化前的材料,重点关注粘性和柔韧性;对于固化后的材料,则重点关注弹性性能和机械强度。同时,讨论了可能影响其流变学和机械性能的因素。预计本研究的深入信息和展望将对树脂基牙科修复材料的未来发展和制造有所帮助。