Zhang Chunling, Zhang Jinrui, Xu Tianlu, Sima Haofei, Hou Jiazi
School of Materials Science and Engineering, Jilin University, Chang Chun 130022, China.
Materials (Basel). 2020 Oct 14;13(20):4570. doi: 10.3390/ma13204570.
The thermal and mechanical properties of polysiloxane foam are greatly improved by the addition of acrylolsobutyl polyhedral oligomeric silsesquioxane (MA0701, hereinafter referred to as MAPOSS), which has double bonds. The morphologies and properties of the polysiloxane composite foam were characterized. The average cell diameter of the composite foams decreased, while the cell density increased with increasing MAPOSS. Meanwhile, MAPOSS can enhance thermal conductivity and thermal stability. Thermal conductivity increased by 25%, and the temperature at the maximum weight loss rate increased from 556 °C to 599 °C. In addition, MAPOSS also promoted heterogeneous nucleation by functioning as a nucleating agent, which can increase cell density to improve the mechanical properties. The compressive strength of the composite foam increased by 170% compared with that of pure foam. In the composite, MAPOSS increased the cross-linking density by acting as a physical cross-linking point and limited the movement of the segments.
通过添加具有双键的丙烯酸异丁基多面体低聚倍半硅氧烷(MA0701,以下简称MAPOSS),聚硅氧烷泡沫的热性能和机械性能得到了极大改善。对聚硅氧烷复合泡沫的形态和性能进行了表征。随着MAPOSS含量的增加,复合泡沫的平均泡孔直径减小,泡孔密度增加。同时,MAPOSS可以提高热导率和热稳定性。热导率提高了25%,最大失重率对应的温度从556℃升高到599℃。此外,MAPOSS还作为成核剂促进了异相成核,从而可以增加泡孔密度以改善机械性能。与纯泡沫相比,复合泡沫的抗压强度提高了170%。在复合材料中,MAPOSS作为物理交联点增加了交联密度,并限制了链段的运动。