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Effects of Zirconium Silicide on the Vulcanization Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites

机译:硅化锆对可陶瓷硅橡胶复合材料的硫化机械和耐烧蚀性能的影响

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摘要

Ceramifiable silicone rubber composites play important roles in the field of thermal protection systems (TPS) for rocket motor cases due to their advantages. Ceramifiable silicone rubber composites filled with different contents of ZrSi were prepared in this paper. The fffects of ZrSi on the vulcanization, mechanical and ablation resistance properties of the composites were also investigated. The results showed that the introduction of ZrSi decreased the vulcanization time of silicone rubber. FTIR spectra showed that ZrSi did not participate in reactions of the functional groups of silicone rubber. With the increasing content of ZrSi , the tensile strength increased first and then decreased. The elongation at break decreased and the permanent deformation increased gradually. The thermal conductivity of the composite increased from 0.553 W/(m·K) to 0.694 W/(m·K) as the content of the ZrSi increased from 0 to 40 phr. In addition, the thermal conductivity of the composite decreased with the increase of temperature. Moreover, thermal analysis showed that the addition of ZrSi increased the initial decomposition temperature of the composite, but had little effect on the peak decomposition temperature in nitrogen. However, the thermal decomposition temperature of the composite in air was lower than that in nitrogen. The addition of ZrSi decreased the linear and mass ablation rate, which improved the ablative resistance of the composite. With the ZrSi content of 30 phr, the linear and mass ablation rate were 0.041 mm/s and 0.029 g/s, decreasing by 57.5% and 46.3% compared with the composite without ZrSi , respectively. Consequently, the ceramifiable silicone rubber composite filled with ZrSi is very promising for TPS.
机译:可陶瓷化的硅橡胶复合材料由于其优势,在火箭发动机外壳的热保护系统(TPS)领域中发挥着重要作用。本文制备了可充填不同ZrSi含量的可硅化硅橡胶复合材料。还研究了ZrSi对复合材料的抗硫化性能,机械性能和耐烧蚀性能的影响。结果表明,ZrSi的引入减少了硅橡胶的硫化时间。 FTIR光谱表明,ZrSi不参与硅橡胶官能团的反应。随着ZrSi含量的增加,抗拉强度先升高后降低。断裂伸长率降低,永久变形逐渐增加。随着ZrSi含量从0 phr增加到40 phr,复合材料的导热系数从0.553 W /(m·K)增加到0.694 W /(m·K)。另外,复合材料的导热系数随着温度的升高而降低。此外,热分析表明,添加ZrSi可以提高复合材料的初始分解温度,但对氮的峰值分解温度影响很小。然而,复合材料在空气中的热分解温度低于在氮气中的热分解温度。 ZrSi的添加降低了线性和整体烧蚀率,从而提高了复合材料的耐烧蚀性。 ZrSi含量为30 phr时,线性和质量烧蚀速率分别为0.041 mm / s和0.029 g / s,与不含ZrSi的复合材料相比,分别降低了57.5%和46.3%。因此,填充有ZrSi的可陶瓷化硅橡胶复合材料对TPS很有前景。

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