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

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(2) were prepared in this paper. The fffects of ZrSi(2) on the v...

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Autores principales: Song, Jiuqiang, Huang, Zhixiong, Qin, Yan, Wang, Honghua, Shi, Minxian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7077659/
https://www.ncbi.nlm.nih.gov/pubmed/32102451
http://dx.doi.org/10.3390/polym12020496
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author Song, Jiuqiang
Huang, Zhixiong
Qin, Yan
Wang, Honghua
Shi, Minxian
author_facet Song, Jiuqiang
Huang, Zhixiong
Qin, Yan
Wang, Honghua
Shi, Minxian
author_sort Song, Jiuqiang
collection PubMed
description 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(2) were prepared in this paper. The fffects of ZrSi(2) on the vulcanization, mechanical and ablation resistance properties of the composites were also investigated. The results showed that the introduction of ZrSi(2) decreased the vulcanization time of silicone rubber. FTIR spectra showed that ZrSi(2) did not participate in reactions of the functional groups of silicone rubber. With the increasing content of ZrSi(2), 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(2) 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(2) 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(2) decreased the linear and mass ablation rate, which improved the ablative resistance of the composite. With the ZrSi(2) 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(2), respectively. Consequently, the ceramifiable silicone rubber composite filled with ZrSi(2) is very promising for TPS.
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spelling pubmed-70776592020-03-20 Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites Song, Jiuqiang Huang, Zhixiong Qin, Yan Wang, Honghua Shi, Minxian Polymers (Basel) Article 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(2) were prepared in this paper. The fffects of ZrSi(2) on the vulcanization, mechanical and ablation resistance properties of the composites were also investigated. The results showed that the introduction of ZrSi(2) decreased the vulcanization time of silicone rubber. FTIR spectra showed that ZrSi(2) did not participate in reactions of the functional groups of silicone rubber. With the increasing content of ZrSi(2), 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(2) 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(2) 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(2) decreased the linear and mass ablation rate, which improved the ablative resistance of the composite. With the ZrSi(2) 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(2), respectively. Consequently, the ceramifiable silicone rubber composite filled with ZrSi(2) is very promising for TPS. MDPI 2020-02-24 /pmc/articles/PMC7077659/ /pubmed/32102451 http://dx.doi.org/10.3390/polym12020496 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Song, Jiuqiang
Huang, Zhixiong
Qin, Yan
Wang, Honghua
Shi, Minxian
Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites
title Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites
title_full Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites
title_fullStr Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites
title_full_unstemmed Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites
title_short Effects of Zirconium Silicide on the Vulcanization, Mechanical and Ablation Resistance Properties of Ceramifiable Silicone Rubber Composites
title_sort effects of zirconium silicide on the vulcanization, mechanical and ablation resistance properties of ceramifiable silicone rubber composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7077659/
https://www.ncbi.nlm.nih.gov/pubmed/32102451
http://dx.doi.org/10.3390/polym12020496
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