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ZrB2-SiC/(C/C)复合涂层材料微观结构与静态氧化特性
引用本文:薛朋飞,刘津生,孙建涛,解惠贞,秦淑颖,崔红.ZrB2-SiC/(C/C)复合涂层材料微观结构与静态氧化特性[J].复合材料学报,2019,36(9):2163-2168.
作者姓名:薛朋飞  刘津生  孙建涛  解惠贞  秦淑颖  崔红
作者单位:1. 西安航天复合材料研究所, 西安 710025; 2. 高性能碳纤维制造及应用国家地方联合工程研究中心, 西安 710089
摘    要:采用涂刷法在C/C复合材料表面制备了ZrB2-SiC复合涂层,采用XRD和SEM分析了涂层的相组成和微观结构,并研究了ZrB2-SiC/(C/C)复合涂层材料在1 200℃和1 500℃的静态氧化性能。结果表明:ZrB2-SiC涂层结构致密,无明显的孔洞和裂纹;涂层有效改善了材料的抗氧化性能,经1 200℃静态氧化60 min后,ZrB2-SiC/(C/C)复合涂层材料失重率仅为2.4%,1 500℃时失重率增大至15%,小于无涂层保护的C/C复合材料(~35%)。ZrB2-SiC/(C/C)复合涂层材料氧化后,形成了含有ZrO2等高熔点颗粒的玻璃态SiO2氧化膜,能够有效抑制氧的扩散,从而提高了C/C复合材料抗氧化性能。

关 键 词:C/C复合材料  ZrB2  SiC  涂层  氧化  
收稿时间:2018-12-12

Microstructure and static oxidation performance of ZrB2-SiC/(C/C) composite coating
XUE Pengfei,LIU Jinsheng,SUN Jiantao,XIE Huizhen,QIN Shuying,CUI Hong.Microstructure and static oxidation performance of ZrB2-SiC/(C/C) composite coating[J].Acta Materiae Compositae Sinica,2019,36(9):2163-2168.
Authors:XUE Pengfei  LIU Jinsheng  SUN Jiantao  XIE Huizhen  QIN Shuying  CUI Hong
Affiliation:1. Xi'an Aerospace Composites Research Institute, Xi'an 710025, China; 2. National and Local Union Engineering Research Center of High-Performance Carbon Fiber Manufacture and Application, Xi'an 710089, China
Abstract:The ZrB2-SiC composite coatings were prepared on C/C composites by slurry painting. The phase composition and microstructure of the as-prepared ZrB2-SiC/(C/C) composites were analyzed by XRD spectroscopy and SEM, and the static oxidation behavior at 1 200℃ and 1 500℃ were also investigated. The results show that the ZrB2-SiC coatings are compact and uniform without obvious pores and cracks. After static oxidizing at 1 200℃ for 60 min, the mass loss rate of the as-prepared ZrB2-SiC/(C/C) composites is only about 2.4%. At 1 500℃, the mass loss rate increases to about 15%, but it is still lower than that of C/C composites without anti-oxidation coatings(~35%). In the static oxidation process, the significantly improved oxidation resistance of the as-prepared ZrB2-SiC/(C/C) composites is attributed to the generated glassy SiO2 film containing high melting point particles such as ZrO2.
Keywords:C/C composites  ZrB2  SiC  coating  oxidation  
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