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Study on the thermal stability and ablation properties of metallic oxide-filled silicone rubber composites using uniform design method

硅橡胶 材料科学 热重分析 复合材料 热稳定性 氧化物 硅酮 天然橡胶 陶瓷 有机硅树脂 扫描电子显微镜 化学工程 冶金 涂层 工程类
作者
Rui Li,Cheng Zhou,Lin Yu,Yang Chen,Huawei Zou,Mei Liang
出处
期刊:Journal of Polymer Engineering [De Gruyter]
卷期号:36 (8): 805-811 被引量:13
标识
DOI:10.1515/polyeng-2015-0317
摘要

Abstract The thermal stability and ablation properties of silicone rubber composites filled with Fe 2 O 3 , SnO 2 , CuO, MgO, and Al 2 O 3 were researched using thermogravimetric analysis (TGA) and the oxyacetylene torch test. The effecting laws of metallic oxide on the thermal stability and ablation properties of silicone rubber composites were analyzed by uniform design method. TGA indicated that the thermal degradation process of silicone rubber composites took a two mass loss steps. The effecting order of metallic oxide on enhancing thermal stability property of silicone rubber composites in step 1 was MgO>SnO 2 > Fe 2 O 3 >Al 2 O 3 >CuO, whereas the order in step 2 was CuO> SnO 2 >MgO>Fe 2 O 3 >Al 2 O 3 . Furthermore, Fe 2 O 3 and SnO 2 had an evident synergistic effect on enhancing the thermal stability property and residual carbon of silicone rubber composites. The oxyacetylene torch test showed that the effecting order of metallic oxide on increasing ablation resistance property of silicone rubber composites in ablation process was CuO>MgO>Fe 2 O 3 >SnO 2 >Al 2 O 3 . Moreover, the line ablation rate of specimen 2 was 0.0499, which indicated that it had the best ablation resistance among all uniform samples. Furthermore, scanning electron microscopy also showed that the porous ceramic layer became much denser after the ablation process, and this will significantly improve the ablation resistance property.
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