Zhang Qian, Zhou Yufeng, Yu Fengmei, Song Lixian, Sun Sumin, Lu Zhongyuan, Lu Ai
J Nanosci Nanotechnol. 2016 Mar;16(3):2725-30. doi: 10.1166/jnn.2016.10929.
In this work thermo sensitivity was investigated with the bound rubber theory and thermoelasticity theory of the polymer-filler interface interaction between Polymethylvinylsiloxane (PMVS) and nanofillers (fumed and precipitated silica with the primary particle size of 10 nanometres). Bound rubber (the transition phase between PMVS and silica) content was measured by sol-gel analysis and swelling experiments. Results showed that the amount of bound rubber increases steadily with the increases of filler content. But the increasing rate suddenly decreased at certain silica content (between 40 and 50 phr of precipitated silica and between 30 and 40 phr of fumed silica, respectively), which was constant with the thermoelaticity experiment results. The temperature coefficients in low strain uniaxial extension are found to present sudden changing at the same silica content. This observation shows that thermo sensitivity is closely connected with the structure of polymer-filler interface.
在本研究中,运用聚合物 - 填料界面相互作用的结合橡胶理论和热弹性理论,对聚甲基乙烯基硅氧烷(PMVS)与纳米填料(原生粒径为10纳米的气相法和沉淀法二氧化硅)之间的热敏感性进行了研究。通过溶胶 - 凝胶分析和溶胀实验测定了结合橡胶(PMVS与二氧化硅之间的过渡相)含量。结果表明,结合橡胶的量随着填料含量的增加而稳步增加。但在特定的二氧化硅含量下(分别为沉淀法二氧化硅40至50 phr和气相法二氧化硅30至40 phr之间),增加速率突然下降,这与热弹性实验结果一致。发现在相同二氧化硅含量下,低应变单轴拉伸中的温度系数呈现突然变化。这一观察结果表明,热敏感性与聚合物 - 填料界面的结构密切相关。