Ceramization Mechanism of Ceramizable Silicone Rubber Composites with Nano Silica at Low Temperature

材料科学 硅橡胶 复合材料 抗弯强度 微观结构 陶瓷 烧结 复合数 扫描电子显微镜 热重分析 硅酮 化学工程 工程类
作者
Penghu Li,Haiyun Jin,Shi‐Chao Wei,H. Liu,Naikui Gao,Zhongqi Shi
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:13 (17): 3708-3708 被引量:12
标识
DOI:10.3390/ma13173708
摘要

Ceramizable composite is a kind of polymer matrix composite that can turn into ceramic material at a high temperature. It can be used for the ceramic insulation of a metal conductor because of its processability. However, poor low-temperature ceramization performance is a problem of ceramizable composites. In this paper, ceramizable composites were prepared by using silicone rubber as a matrix. Ceramic samples were sintered at different temperatures no more than 1000 °C, according to thermogravimetric analysis results of the composites. The linear contraction and flexural strength of the ceramics were measured. The microstructure and crystalline phase of ceramics were analyzed using scanning electron microscope (SEM) and X-ray diffraction (XRD). The results show that the composites turned into ceramics at 800 °C, and a new crystal and continuous microstructure formed in the samples. The flexural strength of ceramics was 46.76 MPa, which was more than twice that of similar materials reported in other research sintered at 1000 °C. The maximum flexural strength was 54.56 MPa, when the sintering temperature was no more than 1000 °C. Moreover, glass frit and nano silica played important roles in the formation of the ceramic phase in this research. A proper content of nano silica could increase the strength of the ceramic samples.
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