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不同缝纫密度对2D SiC/SiC复合材料性能的影响

刘时剑 谢巍杰 陈明伟 邱海鹏 许平 蒋睿哲 景君怡 穆泉旭 加晓宇 张冰玉 赵禹良

现代技术陶瓷2025,Vol.46Issue(1):52-62,11.
现代技术陶瓷2025,Vol.46Issue(1):52-62,11.DOI:10.16253/j.cnki.37-1226/tq.2025.01.003

不同缝纫密度对2D SiC/SiC复合材料性能的影响

Effect of Different Sewing Density On Mechanical Properties of 2D SiC/SiC Composites

刘时剑 1谢巍杰 1陈明伟 1邱海鹏 1许平 2蒋睿哲 3景君怡 3穆泉旭 2加晓宇 1张冰玉 1赵禹良1

作者信息

  • 1. 中国航空制造技术研究院复材中心,北京 100024
  • 2. 中国航空工业集团公司沈阳飞机设计研究所,沈阳 110035
  • 3. 中国航空工业集团公司成都飞机设计研究所,成都 610041
  • 折叠

摘要

Abstract

with the advantages of low textile processing cost,short period and excellent in-plane mechanical properties,the 2D SiC/SiC composites has become one of the most potential structure in engineering application.In this article,base on automatic CNC sewing system and lock stitch method,the SiC fiber preform is sewed by SiC fibers with different sewing density.The sewing 2D SiC fiber preform with PyC interface is densified by polymer infiltration and pyrolysis(PIP)method.The microstructure of 2D SiC/SiC composites is characterized by micro-CT and scanning electron microscope(SEM).Specifically,for the sewing densities of 5mm,7.5mm,10mm,12.5mm,and 15mm,the average flexural strength at room temperature was 378.8 MPa,447.1 MPa,485.6 MPa,504.0 MPa,and 521.5 MPa,and the average tensile strength at room temperature was 261.6 MPa,286.4 MPa,293.8 MPa,300.5 MPa,and 306.5 MPa,respectively.The average interlayer shear strength at room temperature was 84.7 MPa,76 MPa,70.2 MPa,63 MPa and 54.4 MPa,respectively.The results show that with the increase of sewing density,the densification process is affected by the bending of the preform,which leads to the decrease of the in-plane tensile and flexural strength of the composites at room temperature,but the increase of interlaminar shear bearing fibers increases the interlaminar shear strength of the composites at room temperature.

关键词

SiC/SiC复合材料/2D/预制体/缝纫密度/自动化

Key words

SiC/SiC composites/2D/preform/sewing density/automation

分类

化学化工

引用本文复制引用

刘时剑,谢巍杰,陈明伟,邱海鹏,许平,蒋睿哲,景君怡,穆泉旭,加晓宇,张冰玉,赵禹良..不同缝纫密度对2D SiC/SiC复合材料性能的影响[J].现代技术陶瓷,2025,46(1):52-62,11.

基金项目

国防科技重点实验室(JCKYS2023213004). (JCKYS2023213004)

现代技术陶瓷

1005-1198

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