AL2O3 FIBER STRENGTH DEGRADATION IN METAL AND INTERMETALLIC MATRIX COMPOSITES

被引:26
|
作者
DRAPER, SL [1 ]
LOCCI, IE [1 ]
机构
[1] DEPT MAT SCI & ENGN,CLEVELAND,OH 44106
关键词
D O I
10.1557/JMR.1994.1397
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The mechanisms for fiber damage in single crystal Al2O3 fiber-reinforced composites were investigated. Both fiber fragmentation and fiber strength degradation were observed in composites with a variety of matrix compositions. Four mechanisms that may be contributing to the fiber strength loss have been proposed and include matrix reaction, reaction with binders, residual stress-induced damage, and pressure from hot pressing. The effect of matrix reaction was separated from the other three effects by sputter-coating the matrices on cleaned fibers and annealing with a temperature profile that simulates processing conditions. These experiments revealed that Y and Cr in FeCrAlY base alloys and Zr in NiAl alloys reacted with the fiber, and grooves and adherent particles were formed on the fiber surface which were responsible for the strength loss. The effects of the matrix reaction appeared to dominate over the other possible mechanisms, although evidence for reaction with binders was also found. Ridges on the fiber surface, which reflected the grain boundaries of the matrix, were also observed. In order for single-crystal Al2O3 to be used as a fiber in MMC's and IMC's, a matrix or protective coating which minimizes matrix reaction during processing will be necessary. Of the matrices investigated, the Thermo-span(TM) alloy was the least damaging to fiber properties.
引用
收藏
页码:1397 / 1411
页数:15
相关论文
共 50 条
  • [21] AL2O3 REINFORCED AL/NI INTERMETALLIC MATRIX COMPOSITE BY REACTIVE SINTERING
    GHOMASHCHI, MR
    JOURNAL OF MATERIALS SCIENCE, 1995, 30 (11) : 2849 - 2854
  • [22] ULTRASONIC METHOD FOR MEASURING THE FLEXURAL STRENGTH OF SIC WHISKERS AL2O3 MATRIX COMPOSITES
    PELLETIER, S
    ANGERS, R
    FISET, M
    CANADIAN CERAMICS QUARTERLY-JOURNAL OF THE CANADIAN CERAMIC SOCIETY, 1991, 60 (01): : 61 - 64
  • [23] Microstructure and Strength of Al2O3 and Carbon Fiber Reinforced 2024 Aluminum Alloy Composites
    Kaczmar, Jacek W.
    Naplocha, Krzysztof
    Morgiel, Jerzy
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2014, 23 (08) : 2801 - 2808
  • [24] Microstructure and Strength of Al2O3 and Carbon Fiber Reinforced 2024 Aluminum Alloy Composites
    Jacek W. Kaczmar
    Krzysztof Naplocha
    Jerzy Morgiel
    Journal of Materials Engineering and Performance, 2014, 23 : 2801 - 2808
  • [25] Oversea Progress in Porous-Matrix Al2O3/Al2O3 Composites for Engineering Applications
    Tian, Zhenghao
    Liu, Haitao
    Jiang, Ru
    Sun, Xun
    Deng, Guihang
    Chen, Xiaofei
    Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering, 2022, 51 (10): : 3910 - 3921
  • [26] Oversea Progress in Porous-Matrix Al2O3/Al2O3 Composites for Engineering Applications
    Tian Zhenghao
    Liu Haitao
    Jiang Ru
    Sun Xun
    Deng Guihang
    Chen Xiaofei
    RARE METAL MATERIALS AND ENGINEERING, 2022, 51 (10) : 3910 - 3921
  • [27] Effect of Al2O3 amount on microstructure and wear properties of Al–Al2O3 metal matrix composites prepared using mechanical alloying method
    D. Özyürek
    S. Tekeli
    A. Güral
    A. Meyveci
    M. Gürü
    Powder Metallurgy and Metal Ceramics, 2010, 49 : 289 - 294
  • [28] Synthesis of Al2O3 matrix composites by reactive infiltration
    Nagoya Univ, Nagoya, Japan
    J Mater Sci, 23 (6279-6282):
  • [29] Synthesis of Al2O3 matrix composites by reactive infiltration
    M Kobashi
    T Choh
    Journal of Materials Science, 1997, 32 : 6279 - 6282
  • [30] Synthesis of Al2O3 matrix composites by reactive infiltration
    Kobashi, M
    Choh, T
    JOURNAL OF MATERIALS SCIENCE, 1997, 32 (23) : 6279 - 6282