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Porous Yttrium Aluminum Garnet Fiber Coatings for Oxide Composites

机译:氧化复合材料用多孔钇铝石榴石纤维涂层

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摘要

A porous oxide fiber coating was investigated for Nextel~(TM) 610 fibers in an alumina matrix. Polymeric-solution-derived yttrium aluminum garnet (YAG, Y_3A1_5O_(12)) with a fugitive carbon phase was used to develop the porous fiber coating. Ultimate tensile strengths of tows and minicomposites following heat treatments in argon and/or air were used to evaluate the effect of the porous fiber coating. The porous YAG fiber coatings did not reduce the strength of the tows when heated in argon, and they degraded tow strength by only ~20% after heating in air at 1200℃ for 100 h. Minicomposites containing porous YAG-coated fibers were nearly twice as strong as those containing uncoated fibers. However, after heating at 1200℃ for 100 h, the porous YAG coatings densified to >90%, at which point they were ineffective at protecting the fibers, resulting in identical strengths for minicomposites with and without a fiber coating.
机译:研究了用于氧化铝基质中的Nextel TM 610纤维的多孔氧化物纤维涂层。用聚合物溶液衍生的具有短效碳相的钇铝石榴石(YAG,Y_3A1_5O_(12))来开发多孔纤维涂层。在氩气和/或空气中进行热处理后,丝束和微复合材料的极限拉伸强度用于评估多孔纤维涂层的效果。 YAG多孔纤维涂层在氩气中加热时丝束强度没有降低,在1200℃空气中加热100 h后,丝束强度仅降低约20%。包含多孔YAG涂层纤维的微型复合材料的强度几乎是包含未涂层纤维的复合材料的两倍。然而,在1200℃下加热100小时后,多孔YAG涂层的致密化程度超过90%,这时它们不能有效地保护纤维,因此无论有无纤维涂层,微型复合材料的强度都相同。

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