首页|前驱体转化陶瓷法制备Ti3SiC2陶瓷及其热稳定性研究

前驱体转化陶瓷法制备Ti3SiC2陶瓷及其热稳定性研究

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Ti3SiC2具有良好的高温稳定性,可作为改性材料来提高C/C复合材料的抗氧化性能,应用潜力巨大。本工作以钛粉和液态聚碳硅烷(Liquid Polycarbosilane,LPCS)作为原料,采用前驱体转化陶瓷(Polymer Derived Ceramics,PDC)法在1200、1300、1400、1500 ℃下制备了四种相含量的Ti3SiC2陶瓷,研究了烧结温度对其物相组成及形貌的影响,以及不同Ti3SiC2相含量对陶瓷材料的抗氧化和抗热震性能的影响。结果表明,在Ti:Si物质的量比为3:1。5,烧结温度为1300、1400、1500 ℃条件下,均有层状结构的Ti3SiC2生成。当烧结温度为1400 ℃时,陶瓷产物中Ti3SiC2质量分数达到92。10%,抗弯强度达172。68 MPa。在1300 ℃静态空气环境下氧化7 h,陶瓷氧化增重随Ti3SiC2相含量增大而逐渐降低,这是由于氧化过程中材料表面生成了以TiO2为主相的保护膜,有效延缓了氧气向内部扩散。对试样进行1300 ℃空气热震和抗弯强度测试发现,随着热震次数的增加,所有材料的残余强度均有所下降;但随着Ti3SiC2相含量增大,试样的抗热震性能和残余强度均提高。Ti3SiC2相质量分数为92。10%的试样经过30次热震后失重30。66%,残余强度为120。18 MPa,这主要归因于层状结构的Ti3SiC2大幅增加了裂纹扩展路径及其良好的抗氧化性能。
Preparation and Thermal Stability of Ti3SiC2 Ceramics by Polymer Derived Ceramics Method
Ti3SiC2 compound can enhance the oxidation resistance of C/C composites as a modifying material,thanks for its superior high-temperature stability,indicating significant potential for applications.In this work,titanium powder and liquid polycarbosilane(LPCS)were served as starting materials for producing Ti3SiC2 ceramics with four different phase contents by polymer derived ceramics(PDC)method at temperatures of 1200,1300,1400,and 1500 ℃,respectively.Effects of sintering temperature on the phase compositions and morphology of the ceramics were studied.Additionally,the impact of varying Ti3SiC2 phase contents on oxidation resistance and thermal shock resistance were also explored.The results showed that layered Ti3SiC2 formed at Ti:Si molar ratio of 3:1.5 when sintered at 1300,1400,and 1500 ℃,respectively.After sintered at 1400 ℃,the mass fraction of Ti3SiC2 in the ceramic product reached 92.10%with the bending strength of 172.68 MPa.When subjected to a static air environment of 1300 ℃ for 7 h,the oxidation weight of the ceramics obtained progressively reduction with the increase of Ti3SiC2 phase content.During the oxidation process,a protective film primarily consisted of TiO2 was formed on the surface,which effectively slowed down the oxygen diffusion into the interior.Air thermal shock tests at 1300 ℃ and flexural strength assessments demonstrated that the residual strength of all materials decreased with the increase of thermal shock times.Nevertheless,the thermal shock resistance and residual strength of the samples were enhanced with the increase of Ti3SiC2 phase content.After 30 times thermal shock,the sample with the mass fraction of Ti3SiC2 phase of 92.10%experienced 30.66%weight loss and retained residual strength of 120.18 MPa,primarily due to the layered structure of Ti3SiC2 which is significantly extends the crack propagation path and its superior oxidation resistance.

Ti3SiC2pressureless sinteringoxidation resistancethermal shock resistance

郑斌、康凯、张青、叶昉、解静、贾研、孙国栋、成来飞

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长安大学材料科学与工程学院,西安 710064

西北工业大学超高温结构复合材料重点实验室,西安 710072

Ti3SiC2 无压烧结 抗氧化性能 抗热震性能

国家自然科学基金陕西省重点研发计划陕西省自然科学基础研究计划中央高校基本科研业务费专项长安大学项目

522720342023JBGS-152020JQ-372300102313202

2024

无机材料学报
中国科学院上海硅酸盐研究所

无机材料学报

CSTPCD北大核心
影响因子:0.768
ISSN:1000-324X
年,卷(期):2024.39(6)
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