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TEXTURED CALCIUM HEXALUMINATE FIBER-MATRIX INTERPHASE FOR CERAMIC-MATRIX COMPOSITES

机译:陶瓷基复合材料的纹理化六氢钙酸钙纤维基相

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摘要

The concept of an oxidation resistant fiber-matrix interphase that deflects cracks by cleavage is explored. Sols with the nominal composition CaAl_(12)O_(19) were used to coat single-crystal alumina fiber and plates and yttrium-aluminum garnet fiber. Subsequent annealing, or consolidation in a matrix, results in strong texturing of the hibonite coating with basal planes parallel to the interface. Texture development within the hibonite interphase occurs by a complex series of phase transformations and reactions. Fiber pushout tests indicate high sliding resistance; however, strain-energy release rates of hibonite-bonded alumina laminates were found to be adequate to provide for crack deflection within the interphase via cleavage. Model composites containing hibonite-coated fibers were tested and showed evidence of crack deflection within the interphase.
机译:探索了一种抗氧化的纤维-基体间相的概念,该相通过裂开来偏转裂纹。标称成分为CaAl_(12)O_(19)的溶胶用于包覆单晶氧化铝纤维,板材和钇铝石榴石纤维。随后的退火或在基体中的固结导致基面平行于界面的菱铁矿涂层的强烈纹理化。菱铁矿中间相内的织构发展是通过一系列复杂的相变和反应而发生的。纤维推出测试表明滑动阻力高;然而,人们发现,由褐铁矿粘结的氧化铝层压板的应变能释放速率足以通过分裂在相间提供裂纹偏转。测试了包含含石棉涂层纤维的模型复合材料,并显示了相间裂纹变形的迹象。

著录项

  • 来源
  • 会议地点 Berkeley CA(US)
  • 作者单位

    Wright Laboratory Materials Directorate Wright Patterson Air Force Base, OH 45433;

    Wright Laboratory Materials Directorate Wright Patterson Air Force Base, OH 45433;

    Wright Laboratory Materials Directorate Wright Patterson Air Force Base, OH 45433;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TQ174.01;
  • 关键词

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