研究论文

石英纤维及其 Mini复合材料强度及分布规律

  • 韩桂芳 ,
  • 张立同 ,
  • 成来飞
展开
  • 西北工业大学超高温结构复合材料国防科技重点实验室, 西安 710072

收稿日期: 2006-08-08

  修回日期: 2006-11-28

  网络出版日期: 2007-07-20

Strength Distribution of Silica Fiber and Its Minicomposites

  • HAN Gui-Fang ,
  • ZHANG Li-Tong ,
  • CHENG Lai-Fei
Expand
  • National Key Laboratory of Thermostructure Composite Materials, Northwestern Polytechnical University, Xi'an 710072, China

Received date: 2006-08-08

  Revised date: 2006-11-28

  Online published: 2007-07-20

摘要

针对国产石英纤维强度, 本工作采用液相浸渍法(硅溶胶、石英浆料和氮化硅浆料)制得Mini复合材料, 利用两参数Weibull分布, 对其强度及分布进行了研究, 采用Kolmogrov非参数检验对其分布进行了检验. 同时研究了热处理对纤维束强度分布的影响. 结果表明, 可用两参数Weibull分布表征纤维束及其Mini复合材料强度分布. 热处理使纤维强度急剧下降, 且强度分散性变大; 相同处理温度下, 由硅溶胶制得的Mini复合材料强度较高, 分散性较小; 而石英或氮化硅浆料制备的Mini复合材料强度较低.

本文引用格式

韩桂芳 , 张立同 , 成来飞 . 石英纤维及其 Mini复合材料强度及分布规律[J]. 无机材料学报, 2007 , 22(4) : 701 -705 . DOI: 10.3724/SP.J.1077.2007.00701

Abstract

Domestic silica fiber reinforced minicomposites were fabricated by slurry infiltration (including silica sol, silica slurry and silicon nitride slurry). And their strength distributions were analyzed with two parameter Weibull distribution. Then the goodness of fit of the strength distribution was conducted by the Kolmogorov test. Meanwhile, the strength distributions of treated silica fibers were also studied. The results show that two parameter Weibull distribution can be used to express
the strength distribution of silica fiber and its minicomposites. It also suggests that the strength of the fiber decreases sharply after heat treatment, and the dispersity of the strength is increased. With the same heat treatment conditions, the strength of minicomposites infiltrated with silica sol is higher, and the Weibull modulus is also increased, while the
strength of minicomposites infiltrated by silica or silicon nitride slurry is lower.

参考文献

[1] 韩桂芳, 陈照峰, 张立同, 等. 航空材料学报, 2003, 23 (1): 57--62.
[2] 温广武, 雷廷权, 周 玉. 材料工程, 2002, (1): 40--43.
[3] Meyer F P, Quing G D, Walck J C. Ceramic Engineering and Science Proceeding, 1985, 6 (7-8): 646--656.
[4] 齐共金, 张长瑞, 胡海峰, 等. 中国科学E辑, 2005, 35 (11): 1121--1126.
[5] 贾广耀, 陈虹, 胡利明, 等. 硅酸盐通报, 2002, (1): 3--6.
[6] Fok S L, Mitchell B C, Smart J, et al. Engineering Fracture Mechanics, 2001, 68: 1171--1179.
[7] Konstantinos G D, Marc S, Constantina F. Materials Science and Engineering, 2003, A349: 63--72.
[8] Pickering K L, Murray T L. Composites: Part A, 1999, 30: 1017--1021.
[9] Andersons J, Joffe R, Hojo M, et al. Composites Science and Technology, 2002, 62: 131--145.
[10] 吴喜之, 王兆军. 非参数统计方法[M]. 北京: 高等教育出版社, 1996. 151--167.
[11] 温广武, 雷廷权, 周 玉. 材料科学与工艺, 2001, 9 (1): 1--5.
[12] 齐共金, 张长瑞, 胡海峰, 等(QI Gong-Jin, et al). 硅酸盐学报(Journal of the Chinese Ceramic Society), 2003, 33 (5): 632--638.
文章导航

/