Wei Chun, Hao Xiaofei, Mao Chaoying, Zhong Fachun, Liu Zhongping
Institute of Chemical Materials, China Academy of Engineering Physics (CAEP), Mianyang 621900, China.
Polymers (Basel). 2023 Jun 16;15(12):2704. doi: 10.3390/polym15122704.
In this study, Sylgard 184 silicone rubber (SylSR) matrix composites with shear thickening fluid (STF) microcapsules (SylSR/STF) were fabricated. Their mechanical behaviors were characterized by dynamic thermo-mechanical analysis (DMA) and quasi-static compression. Their damping properties increased with the addition ofSTF into the SR in DMA tests and the SylSR/STF composites presented decreased stiffness and an obvious positive strain rate effect in the quasi-static compression test. Moreover, the impact resistance behavior of the SylSR/STF composites was tested by the drop hammer impact test. The addition of STF enhanced the impact protective performance of silicone rubber, and the impact resistance increased with the increase of STF content, which should be ascribed to the shear thickening and energy absorption of STF microcapsules in the composites. Meanwhile, in another matrix, hot vulcanized silicone rubber (HTVSR) with a mechanical strength higher than Sylgard 184, the impact resistance capacity of its composite with STF (HTVSR/STF) was also examined by the drop hammer impact test. It is interesting to note that the strength of the SR matrix obviously influenced the enhancement effect of STF on the impact resistance of SR. The stronger the strength of SR, the better the effect of STF on improving the impact protective performance of SR. This study not only provides a new method for packaging STF and improving the impact resistance behavior of SR, but is also beneficial for the design of STF-related protective functional materials and structures.
在本研究中,制备了含有剪切增稠流体(STF)微胶囊的Sylgard 184硅橡胶(SylSR)基复合材料(SylSR/STF)。通过动态热机械分析(DMA)和准静态压缩对其力学行为进行了表征。在DMA测试中,随着STF添加到硅橡胶中,其阻尼性能增强,并且在准静态压缩测试中,SylSR/STF复合材料的刚度降低且呈现出明显的正应变率效应。此外,通过落锤冲击试验测试了SylSR/STF复合材料的抗冲击性能。STF的添加增强了硅橡胶的抗冲击保护性能,并且抗冲击性随着STF含量的增加而提高,这应归因于复合材料中STF微胶囊的剪切增稠和能量吸收。同时,在另一种基体中,即机械强度高于Sylgard 184的热硫化硅橡胶(HTVSR),也通过落锤冲击试验研究了其与STF的复合材料(HTVSR/STF)的抗冲击能力。值得注意的是,硅橡胶基体的强度明显影响了STF对硅橡胶抗冲击性的增强效果。硅橡胶的强度越高,STF对提高硅橡胶抗冲击保护性能的效果越好。本研究不仅为STF的封装和改善硅橡胶的抗冲击性能提供了一种新方法,而且有利于与STF相关的防护功能材料和结构的设计。